]> git.uio.no Git - u/mrichter/AliRoot.git/blame - PWGJE/EMCALJetTasks/UserTasks/AliAnalysisTaskChargedJetsPA.cxx
fixing HLT CUDA Tracker build
[u/mrichter/AliRoot.git] / PWGJE / EMCALJetTasks / UserTasks / AliAnalysisTaskChargedJetsPA.cxx
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12eb4ac1 1#ifndef ALIANALYSISTASKSE_H
2#include <Riostream.h>
3#include <TROOT.h>
4#include <TFile.h>
12eb4ac1 5#include <TChain.h>
6#include <TTree.h>
7#include <TKey.h>
8#include <TProfile.h>
b95d0245 9#include <TProfile2D.h>
12eb4ac1 10#include <TH1F.h>
11#include <TH2F.h>
12#include <TCanvas.h>
13#include <TList.h>
14#include <TClonesArray.h>
15#include <TObject.h>
16#include <TMath.h>
17#include <TSystem.h>
18#include <TInterpreter.h>
19#include <TH1.h>
20#include "AliAnalysisTask.h"
21#include "AliCentrality.h"
22#include "AliStack.h"
23#include "AliESDEvent.h"
24#include "AliESDInputHandler.h"
25#include "AliAODEvent.h"
26#include "AliAODHandler.h"
27#include "AliAnalysisManager.h"
28#include "AliAnalysisTaskSE.h"
29#endif
30
90297a16 31#include "AliAnalysisDataContainer.h"
013103f5 32#include <THn.h>
33#include "TFormula.h"
34#include "AliESDtrackCuts.h"
0cb49d99 35#include <time.h>
12eb4ac1 36#include <TRandom3.h>
37#include "AliGenPythiaEventHeader.h"
b95d0245 38#include "AliAODMCHeader.h"
12eb4ac1 39#include "AliMCEvent.h"
40#include "AliLog.h"
41#include <AliEmcalJet.h>
b95d0245 42#include <AliPicoTrack.h>
12eb4ac1 43#include "AliVEventHandler.h"
44#include "AliVParticle.h"
c2b0976c 45#include "AliAODMCParticle.h"
12eb4ac1 46#include "AliAnalysisUtils.h"
06b41974 47#include "AliRhoParameter.h"
ac9c07e9 48#include "TVector3.h"
12eb4ac1 49
8628b70c 50#include "AliAnalysisTaskChargedJetsPA.h"
dc3becdd 51using std::min;
6256e5e7 52using std::cout;
53using std::endl;
c154ba90 54
8628b70c 55//TODO: FillHistogram can be done better with virtual TH1(?)
56ClassImp(AliAnalysisTaskChargedJetsPA)
57
58// ######################################################################################## DEFINE HISTOGRAMS
59void AliAnalysisTaskChargedJetsPA::Init()
60{
61 #ifdef DEBUGMODE
efb9b161 62 AliInfo("Creating histograms.");
8628b70c 63 #endif
8628b70c 64
013103f5 65 SetCurrentOutputList(0);
66
67 // Cuts
277217ca 68 TH2* tmpHisto2D = AddHistogram2D<TH2D>("hCentrality", Form("Accepted events in centrality (%s)", fCentralityType.Data()), "COLZ", 102, 0., 102., 4, 0,4,"Centrality","Cut stage","dN^{Events}");
69 tmpHisto2D->GetYaxis()->SetBinLabel(1, "Before cuts");
70 tmpHisto2D->GetYaxis()->SetBinLabel(2, "After pile up");
71 tmpHisto2D->GetYaxis()->SetBinLabel(3, "After vertex demand");
72 tmpHisto2D->GetYaxis()->SetBinLabel(4, "After vertex cuts");
73
74 TH1* tmpHisto = AddHistogram1D<TH1D>("hTrackAcceptance", "Accepted tracks (0 = before cuts, 1 = after eta, 2 = after pT)", "", 3, 0, 3, "stage","N^{Tracks}/cut");
0cb49d99 75 tmpHisto->GetXaxis()->SetBinLabel(1, "Before cuts");
76 tmpHisto->GetXaxis()->SetBinLabel(2, "After eta");
7e413f22 77 tmpHisto->GetXaxis()->SetBinLabel(3, "After p_{T}");
277217ca 78
0cb49d99 79 tmpHisto = AddHistogram1D<TH1D>("hJetAcceptance", "Accepted jets (0 = before cuts, 1 = after eta, 2 = after pT, 3 = after area)", "", 4, 0, 4, "stage","N^{Jets}/cut");
80 tmpHisto->GetXaxis()->SetBinLabel(1, "Before cuts");
81 tmpHisto->GetXaxis()->SetBinLabel(2, "After eta");
7e413f22 82 tmpHisto->GetXaxis()->SetBinLabel(3, "After p_{T}");
0cb49d99 83 tmpHisto->GetXaxis()->SetBinLabel(4, "After area");
277217ca 84
85 tmpHisto2D = AddHistogram2D<TH2D>("hJetPtCutStages", "Jets p_{T} distribution", "", 500, -50., 200., 4, 0, 4, "p_{T} (GeV/c)","Cut stage","dN^{Jets}/dp_{T}");
013103f5 86 tmpHisto2D->GetYaxis()->SetBinLabel(1, "Before cuts");
87 tmpHisto2D->GetYaxis()->SetBinLabel(2, "After eta");
88 tmpHisto2D->GetYaxis()->SetBinLabel(3, "After p_{T}");
89 tmpHisto2D->GetYaxis()->SetBinLabel(4, "After area");
90
91 AddHistogram1D<TH1D>("hVertexX", "X distribution of the vertex", "", 2000, -1., 1., "#Delta x(cm)","dN^{Events}/dx");
92 AddHistogram1D<TH1D>("hVertexY", "Y distribution of the vertex", "", 2000, -1., 1., "#Delta y(cm)","dN^{Events}/dy");
93 AddHistogram2D<TH2D>("hVertexXY", "XY distribution of the vertex", "COLZ", 500, -1., 1., 500, -1., 1.,"#Delta x(cm)", "#Delta y(cm)","dN^{Events}/dxdy");
277217ca 94 AddHistogram1D<TH1D>("hVertexZ", "Z distribution of the vertex (after std. vertex cut)", "", 200, -20., 20., "#Delta z(cm)","dN^{Events}/dz");
013103f5 95 AddHistogram1D<TH1D>("hVertexR", "R distribution of the vertex", "", 100, 0., 1., "#Delta r(cm)","dN^{Events}/dr");
96 AddHistogram1D<TH1D>("hCentralityV0M", "Centrality distribution V0M", "", fNumberOfCentralityBins, 0., 100., "Centrality","dN^{Events}");
277217ca 97 AddHistogram1D<TH1D>("hCentralityCL1", "Centrality distribution CL1", "", fNumberOfCentralityBins, 0., 100., "Centrality","dN^{Events}");
013103f5 98 AddHistogram1D<TH1D>("hCentralityV0A", "Centrality distribution V0A", "", fNumberOfCentralityBins, 0., 100., "Centrality","dN^{Events}");
99 AddHistogram1D<TH1D>("hCentralityV0C", "Centrality distribution V0C", "", fNumberOfCentralityBins, 0., 100., "Centrality","dN^{Events}");
100 AddHistogram1D<TH1D>("hCentralityZNA", "Centrality distribution ZNA", "", fNumberOfCentralityBins, 0., 100., "Centrality","dN^{Events}");
013103f5 101
102 if(fDoJetAnalysis)
8628b70c 103 {
013103f5 104 // Background corrected jet spectra
32a2b258 105 AddHistogram2D<TH2D>("hJetPtNoBgrdSubtracted", "Jets p_{T} distribution, no bgrd. subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
013103f5 106 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedExternal", "Jets p_{T} distribution, external bgrd. subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
107 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedPP", "Jets p_{T} distribution, pp background subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
da40b4cb 108 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedExternal_Phi1", "Jets p_{T} distribution, external background (Improved CMS) subtracted (1st part of azimuth)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
109 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedExternal_Phi2", "Jets p_{T} distribution, external background (Improved CMS) subtracted (2nd part of azimuth)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
013103f5 110 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTImprovedCMS", "Jets p_{T} distribution, KT background (Improved CMS) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
3691a11a 111 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTImprovedCMS_Biased_10GeV", "Jets p_{T} distribution, KT background (Improved CMS) subtracted, leading track bias 10 GeV", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
112 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTImprovedCMS_Biased_5GeV", "Jets p_{T} distribution, KT background (Improved CMS) subtracted, leading track bias 5 GeV", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
113 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTImprovedCMS_Biased_2GeV", "Jets p_{T} distribution, KT background (Improved CMS) subtracted, leading track bias 2 GeV", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
013103f5 114 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedTR", "Jets p_{T} distribution, TR background (Cone R=0.6 around jets excluded) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
115 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTPbPb", "Jets p_{T} distribution, KT background (PbPb w/o ghosts) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
116 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTPbPbWithGhosts", "Jets p_{T} distribution, KT background (PbPb w/ ghosts) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
117 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTCMS", "Jets p_{T} distribution, KT background (CMS) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
118 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTMean", "Jets p_{T} distribution, KT background (Mean) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
119 AddHistogram2D<TH2D>("hJetPtBgrdSubtractedKTTrackLike", "Jets p_{T} distribution, KT background (track-like) subtracted", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Jets}/dp_{T}");
72aa6b04 120
72aa6b04 121 AddHistogram2D<TProfile2D>("hJetPtSubtractedRhoExternal", "Mean subtracted KT (External) background from jets", "COLZ", 600, 0, 150, fNumberOfCentralityBins, 0, 100, "Jet p_{T}", "Centrality", "#rho mean");
013103f5 122 AddHistogram2D<TProfile2D>("hJetPtSubtractedRhoKTImprovedCMS", "Mean subtracted KT (CMS w/o signal) background from jets", "COLZ", 600, 0, 150, fNumberOfCentralityBins, 0, 100, "Jet p_{T}", "Centrality", "#rho mean");
72aa6b04 123 AddHistogram2D<TProfile2D>("hJetPtSubtractedRhoPP", "Mean subtracted KT (pp from Michal) background from jets", "COLZ", 600, 0, 150, fNumberOfCentralityBins, 0, 100, "Jet p_{T}", "Centrality", "#rho mean");
c2b0976c 124
013103f5 125 // Jet QA plots
32a2b258 126 AddHistogram2D<TH2D>("hJetConstituentPt0GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 0 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
127 AddHistogram2D<TH2D>("hJetConstituentPt1GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 1 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
128 AddHistogram2D<TH2D>("hJetConstituentPt2GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 2 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
129 AddHistogram2D<TH2D>("hJetConstituentPt3GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 3 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
130 AddHistogram2D<TH2D>("hJetConstituentPt4GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 4 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
131 AddHistogram2D<TH2D>("hJetConstituentPt5GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 5 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
132 AddHistogram2D<TH2D>("hJetConstituentPt7GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 7 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
133 AddHistogram2D<TH2D>("hJetConstituentPt10GeV", "Jet constituents p_{T} distribution (p_{T,jet} > 10 GeV)", "", 500, -50., 200., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
013103f5 134 AddHistogram2D<TH2D>("hJetConstituentPtVsJetPt", "Jet constituents p_{T} distribution", "", 500, -50., 200., 200, 0, 200, "#it{p}_{T} (GeV/c)","#it{p}_{T}^{jet} (GeV/c)","dN^{Tracks}/dp_{T}");
8628b70c 135 AddHistogram1D<TH1D>("hJetCountAll", "Number of Jets", "", 200, 0., 200., "N jets","dN^{Events}/dN^{Jets}");
136 AddHistogram1D<TH1D>("hJetCountAccepted", "Number of accepted Jets", "", 200, 0., 200., "N jets","dN^{Events}/dN^{Jets}");
0cb49d99 137 AddHistogram2D<TH2D>("hJetCount", "Correlation jets/accepted jets", "", 200, 0., 200., 200, 0., 200., "N jets","N jets accepted", "d^{2}N^{Events}/dN^{Jets dN^{Jets, acc}}");
138 AddHistogram1D<TH1D>("hLeadingJetPt", "Leading jet p_{T}", "", 500, -50., 200., "p_{T} (GeV/c)","dN^{Jets}/dp_{T}");
139 AddHistogram1D<TH1D>("hSecondLeadingJetPt", "Second leading jet p_{T}", "", 500, -50., 200., "p_{T} (GeV/c)","dN^{Jets}/dp_{T}");
140 AddHistogram1D<TH1D>("hCorrectedLeadingJetPt", "Corrected leading jet p_{T}", "", 500, -50., 200., "p_{T} (GeV/c)","dN^{Jets}/dp_{T}");
141 AddHistogram1D<TH1D>("hCorrectedSecondLeadingJetPt", "Corrected second leading jet p_{T}", "", 500, -50., 200., "p_{T} (GeV/c)","dN^{Jets}/dp_{T}");
12eb4ac1 142 AddHistogram1D<TH1D>("hJetDeltaPhi", "Jets combinatorial #Delta #phi", "", 250, 0., TMath::Pi(), "#Delta #phi","dN^{Jets}/d(#Delta #phi)");
143 AddHistogram1D<TH1D>("hLeadingJetDeltaPhi", "1st and 2nd leading jet #Delta #phi", "", 250, 0., TMath::Pi(), "#Delta #phi","dN^{Jets}/d(#Delta #phi)");
12eb4ac1 144
013103f5 145 // Background distributions
b896743a 146
013103f5 147 AddHistogram2D<TH2D>("hKTBackgroundExternal", "KT background density (External task)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
b896743a 148 AddHistogram2D<TH2D>("hKTBackgroundExternalVsPt", "KT background density (External task)", "LEGO2", 400, 0., 40., 200, 0, 200, "#rho (GeV/c)","Raw jet p_{T}", "dN^{Events}/d#rho");
013103f5 149 AddHistogram2D<TH2D>("hKTBackgroundExternal20GeV", "KT background density (External task, jet p_{T} > 20 GeV)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
b95d0245 150 AddHistogram2D<TH2D>("hKTBackgroundImprovedCMS", "KT background density (Improved CMS approach)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
72aa6b04 151 AddHistogram2D<TH2D>("hPPBackground", "PP background density (Michals approach)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
013103f5 152 AddHistogram2D<TH2D>("hKTBackgroundPbPb", "KT background density (PbPb approach, no ghosts)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
153 AddHistogram2D<TH2D>("hKTBackgroundPbPbWithGhosts", "KT background density (PbPb approach w/ ghosts)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
154 AddHistogram2D<TH2D>("hKTBackgroundCMS", "KT background density (CMS approach)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
155 AddHistogram2D<TH2D>("hKTBackgroundMean", "KT background density (Mean approach)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
156 AddHistogram2D<TH2D>("hKTBackgroundTrackLike", "KT background density (Track-like approach)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
157 AddHistogram2D<TH2D>("hTRBackgroundNoExcl", "TR background density (No signal excluded)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
158 AddHistogram2D<TH2D>("hTRBackgroundCone02", "TR background density (Cones R=0.2 around signal jets excluded)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
159 AddHistogram2D<TH2D>("hTRBackgroundCone04", "TR background density (Cones R=0.4 around signal jets excluded)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
160 AddHistogram2D<TH2D>("hTRBackgroundCone06", "TR background density (Cones R=0.6 around signal jets excluded)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
161 AddHistogram2D<TH2D>("hTRBackgroundCone08", "TR background density (Cones R=0.8 around signal jets excluded)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
162 AddHistogram2D<TH2D>("hTRBackgroundExact", "TR background density (signal jets exactly excluded)", "LEGO2", 400, 0., 40., fNumberOfCentralityBins, 0, 100, "#rho (GeV/c)","Centrality", "dN^{Events}/d#rho");
163
164 // Delta pt distributions
277217ca 165 AddHistogram2D<TH2D>("hDeltaPtPP", "Background fluctuations #delta p_{T} (PP approach)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
f4c770c3 166 AddHistogram2D<TH2D>("hDeltaPtExternalBgrd", "Background fluctuations #delta p_{T} (KT, External)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
167 AddHistogram2D<TH2D>("hDeltaPtExternalBgrdVsPt", "Background fluctuations #delta p_{T} (KT, External, in p_{T} bins)", "", 1801, -40.0, 80.0, 200, 0, 200, "#delta p_{T} (GeV/c)","Raw jet p_{T}","dN^{Jets}/d#delta p_{T}");
b896743a 168 AddHistogram2D<TH2D>("hDeltaPtExternalBgrdPartialExclusion", "Background fluctuations #delta p_{T} (KT, External, partial jet exclusion)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
f4c770c3 169 AddHistogram2D<TH2D>("hDeltaPtKTImprovedCMS", "Background fluctuations #delta p_{T} (KT, Improved CMS-like)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
f4c770c3 170 AddHistogram2D<TH2D>("hDeltaPtNoBackground", "Background fluctuations #delta p_{T} (No background)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
013103f5 171 AddHistogram2D<TH2D>("hDeltaPtKTPbPb", "Background fluctuations #delta p_{T} (KT, PbPb w/o ghosts)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
172 AddHistogram2D<TH2D>("hDeltaPtKTPbPbWithGhosts", "Background fluctuations #delta p_{T} (KT, PbPb w/ ghosts)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
173 AddHistogram2D<TH2D>("hDeltaPtKTCMS", "Background fluctuations #delta p_{T} (KT, CMS-like)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
174 AddHistogram2D<TH2D>("hDeltaPtKTMean", "Background fluctuations #delta p_{T} (KT, Mean)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
175 AddHistogram2D<TH2D>("hDeltaPtKTTrackLike", "Background fluctuations #delta p_{T} (KT, track-like)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
176 AddHistogram2D<TH2D>("hDeltaPtTR", "Background fluctuations #delta p_{T} (TR, cone R=0.6)", "", 1801, -40.0, 80.0, fNumberOfCentralityBins, 0, 100, "#delta p_{T} (GeV/c)","Centrality","dN^{Jets}/d#delta p_{T}");
177
178 // Track QA plots
392aa819 179 AddHistogram2D<TH2D>("hTrackCountAcc", "Number of tracks in acceptance vs. centrality", "LEGO2", 750, 0., 750., fNumberOfCentralityBins, 0, 100, "N tracks","Centrality", "dN^{Events}/dN^{Tracks}");
180 AddHistogram2D<TH2D>("hTrackPt", "Tracks p_{T} distribution", "", 1000, 0., 250., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)", "Centrality", "dN^{Tracks}/dp_{T}");
181 AddHistogram2D<TH2D>("hTrackPtNegEta", "Tracks p_{T} distribution (negative #eta)", "", 1000, 0., 250., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
182 AddHistogram2D<TH2D>("hTrackPtPosEta", "Tracks p_{T} distribution (positive #eta)", "", 1000, 0., 250., fNumberOfCentralityBins, 0, 100, "p_{T} (GeV/c)","Centrality","dN^{Tracks}/dp_{T}");
b95d0245 183 AddHistogram1D<TH1D>("hTrackCharge", "Charge", "", 11, -5, 5, "Charge (e)","dN^{Tracks}/dq");
184 AddHistogram1D<TH1D>("hTrackPhi", "Track #phi distribution", "", 360, 0, TMath::TwoPi(), "#phi","dN^{Tracks}/d#phi");
185 AddHistogram2D<TH2D>("hTrackPhiEta", "Track angular distribution", "LEGO2", 100, 0., 2*TMath::Pi(),100, -2.5, 2.5, "#phi","#eta","dN^{Tracks}/(d#phi d#eta)");
3dff28bc 186 AddHistogram2D<TH2D>("hTrackPtPhiEta", "Track p_{T} angular distribution", "LEGO2", 100, 0., 2*TMath::Pi(),100, -2.5, 2.5, "#phi","#eta","dp_{T}^{Tracks}/(d#phi d#eta)");
392aa819 187 AddHistogram2D<TH2D>("hTrackPhiPtCut", "Track #phi distribution for different pT cuts", "LEGO2", 360, 0, TMath::TwoPi(), 20, 0, 20, "#phi", "p_{T} lower cut", "dN^{Tracks}/d#phi dp_{T}");
0cb49d99 188 AddHistogram2D<TH2D>("hTrackPhiTrackType", "Track #phi distribution for different track types", "LEGO2", 360, 0, TMath::TwoPi(), 3, 0, 3, "#phi", "Label", "dN^{Tracks}/d#phi");
3c6bb668 189 AddHistogram2D<TH2D>("hTrackPtTrackType", "Track p_{T} distribution for different track types", "LEGO2", 1000, 0., 250., 3, 0, 3, "p_{T} (GeV/c)", "Label", "dN^{Tracks}/dp_{T}");
b836a932 190 AddHistogram2D<TH2D>("hTrackEta", "Track #eta distribution", "COLZ", 180, fMinEta, fMaxEta, fNumberOfCentralityBins, 0., 100., "#eta", "Centrality", "dN^{Tracks}/d#eta");
013103f5 191
192 // Jet QA plots
193 AddHistogram1D<TH1D>("hRawJetArea", "Jets area distribution w/o area cut", "", 200, 0., 2., "Area","dN^{Jets}/dA");
194 AddHistogram2D<TH2D>("hJetArea", "Jets area distribution", "COLZ", 200, 0., 2., 500, -50., 200, "Area","Jet p_{T}","dN^{Jets}/dA");
195 AddHistogram2D<TH2D>("hRawJetPhiEta", "Raw Jets angular distribution w/o #eta cut", "LEGO2", 360, 0., 2*TMath::Pi(),100, -1.0, 1.0, "#phi","#eta","dN^{Jets}/(d#phi d#eta)");
196 AddHistogram2D<TH2D>("hJetEta", "Jets #eta distribution", "COLZ", 180, fMinEta, fMaxEta, fNumberOfCentralityBins, 0., 100., "#eta", "Centrality", "dN^{Jets}/d#eta");
197 AddHistogram2D<TH2D>("hJetEta2GeVTracks", "Jets #eta distribution, track p_{T} > 2 GeV", "COLZ", 180, fMinEta, fMaxEta, fNumberOfCentralityBins, 0., 100., "#eta", "Centrality", "dN^{Jets}/d#eta");
198 AddHistogram2D<TH2D>("hJetEta4GeVTracks", "Jets #eta distribution, track p_{T} > 4 GeV", "COLZ", 180, fMinEta, fMaxEta, fNumberOfCentralityBins, 0., 100., "#eta", "Centrality", "dN^{Jets}/d#eta");
199 AddHistogram2D<TH2D>("hJetPhiEta", "Jets angular distribution", "LEGO2", 360, 0., 2*TMath::Pi(),100, -1.0, 1.0, "#phi","#eta","dN^{Jets}/(d#phi d#eta)");
200 AddHistogram2D<TH2D>("hJetPtPhiEta", "Jets p_{T} angular distribution", "LEGO2", 360, 0., 2*TMath::Pi(),100, -1.0, 1.0, "#phi","#eta","dp_{T}^{Jets}/(d#phi d#eta)");
201 AddHistogram2D<TH2D>("hJetPtVsConstituentCount", "Jets number of constituents vs. jet p_{T}", "COLZ", 400, 0., 200., 100, 0., 100., "p_{T}","N^{Tracks}","dN^{Jets}/(dp_{T} dN^{tracks})");
202
a8b7cbf6 203 // ######## Jet constituent analysis
204
90297a16 205 if(fAnalyzeJetConstituents)
a8b7cbf6 206 {
90297a16 207 {
208 // jet pt, const pT, const count, RC const count, PC const count
209 Int_t bins [5] = { 30, 50, 30, 30, 30};
210 Double_t minEdges[5] = { 0, 0.1, 0, 0, 0};
211 Double_t maxEdges[5] = { 150, 150, 30, 30, 30};
212 TString axisName[5] = {"jet p_{T}","Constituent p_{T}", "Constituent count","RC constituent count","PC constituent count"};
213 TString axisTitle[5] = {"jet p_{T}","Constituent p_{T}", "Constituent count","RC constituent count","PC constituent count"};
214 THnF * histJetConstituents = new THnF("hJetConstituents", "Jet constituent count/p_{T} in jet, RC, and PC", 5, bins, minEdges, maxEdges);
215 BinLogAxis(histJetConstituents,1);
216 for (Int_t iaxis=0; iaxis<5;iaxis++){
217 histJetConstituents->GetAxis(iaxis)->SetName(axisName[iaxis]);
218 histJetConstituents->GetAxis(iaxis)->SetTitle(axisTitle[iaxis]);
219 }
220 fCurrentOutputList->Add(histJetConstituents);
a8b7cbf6 221 }
a8b7cbf6 222
90297a16 223 {
224 // jet pt, const pt, const count distance
225 Int_t bins [4] = { 30, 50, 30, 50};
226 Double_t minEdges[4] = { 0, 0.1, 0, 0};
227 Double_t maxEdges[4] = { 150, 150, 30, 0.5};
228 TString axisName[4] = {"jet p_{T}","Constituent p_{T}","Constituent count","Distance from jet axis"};
229 TString axisTitle[4] = {"jet p_{T}","Constituent p_{T}","Constituent count","Distance from jet axis"};
230 THnF * histJetConstituentDistance = new THnF("hJetConstituentDistance", "Jet constituent distance vs. jet and constituent p_{T}", 4, bins, minEdges, maxEdges);
231 BinLogAxis(histJetConstituentDistance,1);
232 for (Int_t iaxis=0; iaxis<4;iaxis++){
233 histJetConstituentDistance->GetAxis(iaxis)->SetName(axisName[iaxis]);
234 histJetConstituentDistance->GetAxis(iaxis)->SetTitle(axisTitle[iaxis]);
235 }
236 fCurrentOutputList->Add(histJetConstituentDistance);
a8b7cbf6 237 }
a8b7cbf6 238 }
239
013103f5 240 // ######## Jet profiles
241 if(fAnalyzeJetProfile)
b95d0245 242 {
013103f5 243 SetCurrentOutputList(1);
244 AddHistogram2D<TH2D>("hJetProfile10GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 10 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
245 AddHistogram2D<TH2D>("hJetProfile20GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 20 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
246 AddHistogram2D<TH2D>("hJetProfile30GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 30 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
247 AddHistogram2D<TH2D>("hJetProfile40GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 40 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
248 AddHistogram2D<TH2D>("hJetProfile50GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 50 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
249 AddHistogram2D<TH2D>("hJetProfile60GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 60 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
250 AddHistogram2D<TH2D>("hJetProfile70GeV", "Jet profile, cone p_{T}/jet p_{T} vs. jet radius, jet p_{T} > 70 GeV", "", 12, 0, 0.6,200, 0., 2., "Cone radius","dN^{Jets}/dR", "Ratio");
251 SetCurrentOutputList(0);
b95d0245 252 }
253 }
013103f5 254 // ######## Jet track cuts
255 if(fAnalyzeTrackcuts)
256 {
257 SetCurrentOutputList(2);
258
259 AddCutHistogram("hCutsNumberClusters", "Trackcut histogram: Number of clusters", "Number of clusters", 40, 20, 160);
260 AddCutHistogram("hCutsChi2TPC", "Trackcut histogram: #chi^{2} per TPC cluster", "#chi^{2}", 40, 0, 8);
261 AddCutHistogram("hCutsChi2ITS", "Trackcut histogram: #chi^{2} per ITS cluster", "#chi^{2}", 25, 0., 50);
262 AddCutHistogram("hCutsChi2Constrained", "Trackcut histogram: #chi^{2} for global constrained tracks", "#chi^{2}", 60, 0, 60);
e3ed0600 263 AddCutHistogram("hCutsDCAXY", "Trackcut histogram: Max. DCA xy for prim. vertex", "DCA xy", 20, 0, 4);
013103f5 264 AddCutHistogram("hCutsDCAZ", "Trackcut histogram: Max. DCA z for prim. vertex", "DCA z", 20, 0, 4);
265 AddCutHistogram("hCutsSPDHit", "Trackcut histogram: Hit in SPD layer", "Hit or not", 2, -0.5, 1.5);
266 AddCutHistogram("hCutsNumberCrossedRows", "Trackcut histogram: Number of crossed rows", "Number of crossed rows", 40, 20, 160);
267 AddCutHistogram("hCutsNumberCrossedRowsOverFindableClusters", "Trackcut histogram: Number of crossed rows over findable clusters", "Number of crossed rows over findable clusters", 26, 0.4, 1.8);
268 AddCutHistogram("hCutsSharedTPC", "Trackcut histogram: Shared TPC clusters", "Shared fraction", 40, 0, 1);
269 AddCutHistogram("hCutsTPCRefit", "Trackcut histogram: TPC refit", "Has TPC refit", 2, -0.5, 1.5);
90297a16 270 AddCutHistogram("hCutsAcceptKinks", "Trackcut histogram: Kink in track", "Kink in track", 2, -0.5, 1.5);
013103f5 271 AddCutHistogram("hCutsTPCLength", "Trackcut histogram: TPC length", "TPC length", 40, 0, 170);
272 AddCutHistogram("hCutsTrackConstrained", "Trackcut histogram: Tracks constrained to vertex", "Track is constrained", 2, -0.5, 1.5);
0cf2a402 273 AddCutHistogram("hCutsTPCITSMatching", "Trackcut histogram: TPC-ITS matching", "Track is matched", 2, -0.5, 1.5);
e3ed0600 274 AddCutHistogram("hCutsClustersPtDependence", "Trackcut histogram: pT dependence for number of clusters/crossed rows cut.", "Value at 20 GeV: 90, 100, 110, or 120", 4, -0.5, 3.5);
013103f5 275
bf5ee641 276 const int nbPt=100;
277 const double ptMax=50;
0cf2a402 278 AddHistogram2D<TH2D>("hCutsITSTPC_NMatch", "Number matches", "", nbPt,0,ptMax,kMaxMatch+1,-0.5,kMaxMatch+0.5, "p_{T}","N matches");
279 AddHistogram2D<TH2D>("hCutsITSTPC_BestMatch", "Best match chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
280 AddHistogram2D<TH2D>("hCutsITSTPC_BestMatch_cuts", "Best match chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
281 AddHistogram2D<TH2D>("hCutsITSTPC_AllMatch", "All matches chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
282 AddHistogram2D<TH2D>("hCutsITSTPC_AllMatchGlo", "All matches chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
283 AddHistogram2D<TH2D>("hCutsITSTPC_PtCorr_ITSTPC", "PtCorr", "", nbPt,0,ptMax,nbPt,0,ptMax, "p_{T}","p_{T}");
284 AddHistogram2D<TH2D>("hCutsITSTPC_dPtRel_ITSTPC", "dPt/pt", "", nbPt,0,ptMax,2*nbPt+1,-0.4*ptMax,0.4*ptMax, "p_{T}","1/pt");
285 AddHistogram2D<TH2D>("hCutsITSTPC_dInvPtRel_ITSTPC", "pt*dPt^{-1}", "", nbPt,0,ptMax,2*nbPt+1,-0.4*ptMax,0.4*ptMax, "p_{T}","1/pt");
286
287 AddHistogram2D<TH2D>("hCutsITSTPC_NMatchBg", "Number matches", "", nbPt,0,ptMax,kMaxMatch+1,-0.5,kMaxMatch+0.5, "p_{T}","N matches");
288 AddHistogram2D<TH2D>("hCutsITSTPC_BestMatchBg", "Best match chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
289 AddHistogram2D<TH2D>("hCutsITSTPC_BestMatchBg_cuts", "Best match chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
290 AddHistogram2D<TH2D>("hCutsITSTPC_AllMatchBg", "All matches chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
291 AddHistogram2D<TH2D>("hCutsITSTPC_AllMatchGloBg", "All matches chi2", "", nbPt,0,ptMax,2*int(TMath::Max(1.1,kMaxChi2)),0,kMaxChi2, "p_{T}","chi2");
292 AddHistogram2D<TH2D>("hCutsITSTPC_PtCorrBg_ITSTPC", "PtCorr", "", nbPt,0,ptMax,nbPt,0,ptMax, "p_{T}","p_{T}");
293 AddHistogram2D<TH2D>("hCutsITSTPC_dPtRelBg_ITSTPC", "dPt/pt", "", nbPt,0,ptMax,2*nbPt+1,-0.4*ptMax,0.4*ptMax, "p_{T}","1/pt");
294 AddHistogram2D<TH2D>("hCutsITSTPC_dInvPtRelBg_ITSTPC", "pt*dPt^{-1}", "", nbPt,0,ptMax,2*nbPt+1,-0.4*ptMax,0.4*ptMax, "p_{T}","1/pt");
295
013103f5 296 SetCurrentOutputList(0);
297 }
b95d0245 298
013103f5 299 PostData(1, fOutputLists[0]);
300 if(fAnalyzeJetProfile)
301 PostData(2, fOutputLists[1]);
302 if(fAnalyzeTrackcuts)
8628b70c 303 {
013103f5 304 if(fAnalyzeJetProfile)
305 PostData(3, fOutputLists[2]);
306 else
307 PostData(2, fOutputLists[1]);
8628b70c 308 }
8628b70c 309
310}
311
12eb4ac1 312//________________________________________________________________________
06f60f31 313AliAnalysisTaskChargedJetsPA::AliAnalysisTaskChargedJetsPA(const char *name, const char* trackArrayName, const char* jetArrayName, const char* backgroundJetArrayName, Bool_t analyzeJetProfile, Bool_t analyzeTrackcuts) : AliAnalysisTaskSE(name), fOutputLists(), fCurrentOutputList(0), fDoJetAnalysis(1), fAnalyzeJetProfile(0), fAnalyzeTrackcuts(0), fAnalyzeJetConstituents(1), fParticleLevel(0), fUseDefaultVertexCut(1), fUsePileUpCut(1), fSetCentralityToOne(0), fNoExternalBackground(0), fBackgroundForJetProfile(0), fPartialAnalysisNParts(1), fPartialAnalysisIndex(0), fJetArray(0), fTrackArray(0), fBackgroundJetArray(0), fJetArrayName(), fTrackArrayName(), fBackgroundJetArrayName(), fRhoTaskName(), fRandConeRadius(0.4), fRandConeNumber(10), fSignalJetRadius(0.4), fBackgroundJetRadius(0.4), fNumberExcludedJets(-1), fMinEta(-0.9), fMaxEta(0.9), fMinJetEta(-0.5), fMaxJetEta(0.5), fMinTrackPt(0.150), fMinJetPt(5.0), fMinJetArea(0.5), fMinBackgroundJetPt(0.0), fMinNCrossedRows(70), fUsePtDepCrossedRowsCut(0), fNumberOfCentralityBins(20), fCentralityType("V0A"), fMatchTr(), fMatchChi(), fPrimaryVertex(0), fFirstLeadingJet(0), fSecondLeadingJet(0), fFirstLeadingKTJet(0), fSecondLeadingKTJet(0), fNumberSignalJets(0), fNumberSignalJetsAbove5GeV(0), fRandom(0), fHelperClass(0), fInitialized(0), fTaskInstanceCounter(0), fIsDEBUG(0), fIsPA(1), fNoTerminate(1), fEventCounter(0), fTempExcludedRCs(0), fTempAllRCs(1), fTempOverlapCounter(0), fTempMeanExclusionProbability(0), fHybridESDtrackCuts(0), fHybridESDtrackCuts_variedPtDep(0), fHybridESDtrackCuts_variedPtDep2(0)
8628b70c 314{
315 #ifdef DEBUGMODE
efb9b161 316 AliInfo("Calling constructor.");
8628b70c 317 #endif
318
8628b70c 319 // Every instance of this task gets his own number
320 static Int_t instance = 0;
321 fTaskInstanceCounter = instance;
322 instance++;
323
013103f5 324 fAnalyzeJetProfile = analyzeJetProfile;
325 fAnalyzeTrackcuts = analyzeTrackcuts;
8628b70c 326
013103f5 327 // Save the observables array names
328 fTrackArrayName = trackArrayName;
329 fJetArrayName = jetArrayName;
330 fBackgroundJetArrayName = backgroundJetArrayName;
8628b70c 331
013103f5 332 if (fTrackArrayName.Contains("MCParticles") || fTrackArrayName.Contains("mcparticles"))
333 fParticleLevel = kTRUE;
b95d0245 334
013103f5 335 DefineOutput(1, TList::Class());
336 if(fAnalyzeJetProfile)
337 DefineOutput(2, TList::Class());
338 if(fAnalyzeTrackcuts)
339 {
340 if(fAnalyzeJetProfile)
341 DefineOutput(3, TList::Class());
342 else
343 DefineOutput(2, TList::Class());
344 }
392aa819 345
8628b70c 346 #ifdef DEBUGMODE
efb9b161 347 AliInfo("Constructor done.");
8628b70c 348 #endif
8628b70c 349}
350
351//________________________________________________________________________
013103f5 352void AliAnalysisTaskChargedJetsPA::InitializeTrackcuts()
8628b70c 353{
013103f5 354 AliESDtrackCuts* commonTrackCuts = new AliESDtrackCuts;
355 commonTrackCuts->SetMaxChi2PerClusterTPC(4);
356 commonTrackCuts->SetMaxChi2PerClusterITS(36);
357 commonTrackCuts->SetAcceptKinkDaughters(kFALSE);
358 commonTrackCuts->SetRequireTPCRefit(kTRUE);
359 commonTrackCuts->SetRequireITSRefit(kTRUE);
360 commonTrackCuts->SetRequireSigmaToVertex(kFALSE);
361 commonTrackCuts->SetMaxDCAToVertexXY(2.4);
362 commonTrackCuts->SetMaxDCAToVertexZ(3.2);
363 commonTrackCuts->SetDCAToVertex2D(kTRUE);
364 commonTrackCuts->SetMaxFractionSharedTPCClusters(0.4);
365 commonTrackCuts->SetMaxChi2TPCConstrainedGlobal(36);
366 commonTrackCuts->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kAny);
367
368 AliESDtrackCuts* fTrackCutsPA_global = NULL;
369 AliESDtrackCuts* fTrackCutsPA_complementary = NULL;
370 AliESDtrackCuts* fTrackCutsPP_global = NULL;
371 AliESDtrackCuts* fTrackCutsPP_complementary = NULL;
e3ed0600 372 AliESDtrackCuts* fTrackCutsPP_global_variedPtDep = NULL;
373 AliESDtrackCuts* fTrackCutsPP_complementary_variedPtDep = NULL;
374 AliESDtrackCuts* fTrackCutsPP_global_variedPtDep2 = NULL;
375 AliESDtrackCuts* fTrackCutsPP_complementary_variedPtDep2 = NULL;
013103f5 376
377 //pPb
378 fTrackCutsPA_global = static_cast<AliESDtrackCuts*>(commonTrackCuts->Clone("fTrackCutsPA_global"));
2d6ed1a3 379 fTrackCutsPA_global->SetMinNCrossedRowsTPC(fMinNCrossedRows);
013103f5 380 fTrackCutsPA_global->SetMinRatioCrossedRowsOverFindableClustersTPC(0.8);
381 fTrackCutsPA_complementary = static_cast<AliESDtrackCuts*>(fTrackCutsPA_global->Clone("fTrackCutsPA_complementary"));
382 fTrackCutsPA_complementary->SetRequireITSRefit(kFALSE);
383 fTrackCutsPA_complementary->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kOff);
384
385 //pp
386 fTrackCutsPP_global = static_cast<AliESDtrackCuts*>(commonTrackCuts->Clone("fTrackCutsPP_global"));
387 TFormula *f1NClustersTPCLinearPtDep = new TFormula("f1NClustersTPCLinearPtDep","70.+30./20.*x");
388 fTrackCutsPP_global->SetMinNClustersTPCPtDep(f1NClustersTPCLinearPtDep,20.);
389 fTrackCutsPP_global->SetMinNClustersTPC(70);
390 fTrackCutsPP_global->SetRequireTPCStandAlone(kTRUE); //cut on NClustersTPC and chi2TPC Iter1
391 fTrackCutsPP_global->SetEtaRange(-0.9,0.9);
392 fTrackCutsPP_global->SetPtRange(0.15, 1e15);
393 fTrackCutsPP_complementary = static_cast<AliESDtrackCuts*>(fTrackCutsPP_global->Clone("fTrackCutsPP_complementary"));
394 fTrackCutsPP_complementary->SetRequireITSRefit(kFALSE);
395 fTrackCutsPP_complementary->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kOff);
396
e3ed0600 397 //pp, different pT dependence of number clusters cut, No. I
398
399 fTrackCutsPP_global_variedPtDep = static_cast<AliESDtrackCuts*>(commonTrackCuts->Clone("fTrackCutsPP_global_variedPtDep"));
ec718fe3 400 TFormula *f1NClustersTPCLinearPtDep2 = new TFormula("f1NClustersTPCLinearPtDep2","70.+15./20.*x");
e3ed0600 401 fTrackCutsPP_global_variedPtDep->SetMinNClustersTPCPtDep(f1NClustersTPCLinearPtDep2,20.);
402 fTrackCutsPP_global_variedPtDep->SetMinNClustersTPC(70);
403 fTrackCutsPP_global_variedPtDep->SetRequireTPCStandAlone(kTRUE); //cut on NClustersTPC and chi2TPC Iter1
404 fTrackCutsPP_global_variedPtDep->SetEtaRange(-0.9,0.9);
405 fTrackCutsPP_global_variedPtDep->SetPtRange(0.15, 1e15);
406 fTrackCutsPP_complementary_variedPtDep = static_cast<AliESDtrackCuts*>(fTrackCutsPP_global_variedPtDep->Clone("fTrackCutsPP_complementary_variedPtDep"));
407 fTrackCutsPP_complementary_variedPtDep->SetRequireITSRefit(kFALSE);
408 fTrackCutsPP_complementary_variedPtDep->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kOff);
409
410 //pp, different pT dependence of number clusters cut, No. II
411
412 fTrackCutsPP_global_variedPtDep2 = static_cast<AliESDtrackCuts*>(commonTrackCuts->Clone("fTrackCutsPP_global_variedPtDep2"));
ec718fe3 413 TFormula *f1NClustersTPCLinearPtDep3 = new TFormula("f1NClustersTPCLinearPtDep3","70.+45./20.*x");
e3ed0600 414 fTrackCutsPP_global_variedPtDep2->SetMinNClustersTPCPtDep(f1NClustersTPCLinearPtDep3,20.);
415 fTrackCutsPP_global_variedPtDep2->SetMinNClustersTPC(70);
416 fTrackCutsPP_global_variedPtDep2->SetRequireTPCStandAlone(kTRUE); //cut on NClustersTPC and chi2TPC Iter1
417 fTrackCutsPP_global_variedPtDep2->SetEtaRange(-0.9,0.9);
418 fTrackCutsPP_global_variedPtDep2->SetPtRange(0.15, 1e15);
419 fTrackCutsPP_complementary_variedPtDep2 = static_cast<AliESDtrackCuts*>(fTrackCutsPP_global_variedPtDep2->Clone("fTrackCutsPP_complementary_variedPtDep2"));
420 fTrackCutsPP_complementary_variedPtDep2->SetRequireITSRefit(kFALSE);
421 fTrackCutsPP_complementary_variedPtDep2->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kOff);
013103f5 422
423 fHybridESDtrackCuts = new AliESDHybridTrackcuts();
013103f5 424 if(fIsPA)
8628b70c 425 {
013103f5 426 fHybridESDtrackCuts->SetMainCuts(fTrackCutsPA_global);
427 fHybridESDtrackCuts->SetAdditionalCuts(fTrackCutsPA_complementary);
8628b70c 428 }
013103f5 429 else
430 {
e3ed0600 431 fHybridESDtrackCuts_variedPtDep = new AliESDHybridTrackcuts();
432 fHybridESDtrackCuts_variedPtDep2 = new AliESDHybridTrackcuts();
433
013103f5 434 fHybridESDtrackCuts->SetMainCuts(fTrackCutsPP_global);
435 fHybridESDtrackCuts->SetAdditionalCuts(fTrackCutsPP_complementary);
e3ed0600 436 fHybridESDtrackCuts_variedPtDep->SetMainCuts(fTrackCutsPP_global_variedPtDep);
437 fHybridESDtrackCuts_variedPtDep->SetAdditionalCuts(fTrackCutsPP_complementary_variedPtDep);
438 fHybridESDtrackCuts_variedPtDep2->SetMainCuts(fTrackCutsPP_global_variedPtDep2);
439 fHybridESDtrackCuts_variedPtDep2->SetAdditionalCuts(fTrackCutsPP_complementary_variedPtDep2);
013103f5 440 }
441
442 delete commonTrackCuts;
8628b70c 443}
444
271cbc5d 445//________________________________________________________________________
013103f5 446void AliAnalysisTaskChargedJetsPA::CreateCutHistograms()
271cbc5d 447{
271cbc5d 448
013103f5 449 AliESDEvent* fESD = dynamic_cast<AliESDEvent*>( InputEvent() );
450 if (!fESD)
271cbc5d 451 {
013103f5 452 AliError("For cut analysis, ESDs must be processed!");
453 return;
271cbc5d 454 }
271cbc5d 455
565f94c4 456 SetCurrentOutputList(2);
12eb4ac1 457
013103f5 458 Float_t dca[2], cov[3]; // dca_xy, dca_z, sigma_xy, sigma_xy_z, sigma_z for the vertex cut
459 for (Int_t i=0;i < fESD->GetNumberOfTracks(); i++)
460 {
461 AliESDtrack* track = fESD->GetTrack(i);
462
463 // Basics kinematic variables
464 Double_t pT = track->Pt();
465 Double_t eta = track->Eta();
466 Double_t phi = track->Phi();
467
468 // Number of clusters
013103f5 469 Double_t nclsITS = track->GetITSclusters(0);
470
471 // Crossed rows
472 Double_t ncrTPC = track->GetTPCCrossedRows();
473 Double_t nCRoverFC = 0;
474 if(track->GetTPCNclsF())
475 nCRoverFC = track->GetTPCCrossedRows()/track->GetTPCNclsF();
476
477 // Chi2 of tracks
478 Double_t chi2ITS = 999.;
479 if (nclsITS)
ec718fe3 480 chi2ITS = track->GetITSchi2()/nclsITS;
013103f5 481 Double_t chi2TPC = 999.;
013103f5 482 Double_t chi2TPCConstrained = track->GetChi2TPCConstrainedVsGlobal(static_cast<const AliESDVertex*>(fPrimaryVertex));
483
484 // Misc
485 Double_t SharedTPCClusters = 999.;
486 Double_t nClustersTPC = 0;
ec718fe3 487
488 if(fHybridESDtrackCuts->GetMainCuts()->GetRequireTPCStandAlone())
489 {
013103f5 490 nClustersTPC = track->GetTPCNclsIter1();
ec718fe3 491 if(nClustersTPC)
492 chi2TPC = track->GetTPCchi2Iter1()/nClustersTPC;
013103f5 493 }
ec718fe3 494 else
495 {
013103f5 496 nClustersTPC = track->GetTPCclusters(0);
ec718fe3 497 if(nClustersTPC)
498 chi2TPC = track->GetTPCchi2()/nClustersTPC;
013103f5 499 }
8628b70c 500
ec718fe3 501 if(nClustersTPC)
013103f5 502 SharedTPCClusters = static_cast<Double_t>(track->GetTPCnclsS())/static_cast<Double_t>(nClustersTPC);
ec718fe3 503
504
013103f5 505 Double_t tpcLength = 0.;
506 if (track->GetInnerParam() && track->GetESDEvent()) {
507 tpcLength = track->GetLengthInActiveZone(1, 1.8, 220, track->GetESDEvent()->GetMagneticField());
392aa819 508 }
013103f5 509 track->GetImpactParameters(dca, cov);
392aa819 510
013103f5 511 // Basic kinematic cuts
512 if((pT<0.15) || (TMath::Abs(eta)>0.9))
513 continue;
392aa819 514
013103f5 515 Int_t trackType = 0;
392aa819 516
e3ed0600 517 // ################################################################
518 // ################################################################
519
520 if(fIsPA)
521 {
522 trackType = fHybridESDtrackCuts->AcceptTrack(track);
523 Double_t tmpThreshold90 = 70. + 20./20. * pT;
524 Double_t tmpThreshold100 = 70. + 30./20. * pT;
525 Double_t tmpThreshold110 = 70. + 40./20. * pT;
526 Double_t tmpThreshold120 = 70. + 50./20. * pT;
527
528 if(pT>20.)
529 {
530 tmpThreshold90 = 70. + 20.;
531 tmpThreshold100 = 70. + 30.;
532 tmpThreshold110 = 70. + 40.;
533 tmpThreshold120 = 70. + 50.;
534 }
535
536 if (trackType)
537 {
538 if(ncrTPC>=tmpThreshold90)
539 FillCutHistogram("hCutsClustersPtDependence", 0, pT, eta, phi, trackType-1);
540 if(ncrTPC>=tmpThreshold100)
541 FillCutHistogram("hCutsClustersPtDependence", 1, pT, eta, phi, trackType-1);
542 if(ncrTPC>=tmpThreshold110)
543 FillCutHistogram("hCutsClustersPtDependence", 2, pT, eta, phi, trackType-1);
544 if(ncrTPC>=tmpThreshold120)
545 FillCutHistogram("hCutsClustersPtDependence", 3, pT, eta, phi, trackType-1);
546 }
547
548 if(fUsePtDepCrossedRowsCut && (ncrTPC<tmpThreshold100)) // pT dep crossed rows cut is not fulfilled
549 continue; // next track
550 }
551 else
552 {
553 trackType = fHybridESDtrackCuts_variedPtDep->AcceptTrack(track);
554 if (trackType)
555 FillCutHistogram("hCutsClustersPtDependence", 0, pT, eta, phi, trackType-1);
556
557 trackType = fHybridESDtrackCuts->AcceptTrack(track);
558 if (trackType)
559 FillCutHistogram("hCutsClustersPtDependence", 1, pT, eta, phi, trackType-1);
560
561 trackType = fHybridESDtrackCuts_variedPtDep2->AcceptTrack(track);
562 if (trackType)
563 FillCutHistogram("hCutsClustersPtDependence", 2, pT, eta, phi, trackType-1);
564 }
565
013103f5 566 // ################################################################
567 // ################################################################
568 Int_t minNclsTPC = fHybridESDtrackCuts->GetMainCuts()->GetMinNClusterTPC();
569 Int_t minNclsTPC_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMinNClusterTPC();
570 fHybridESDtrackCuts->GetMainCuts()->SetMinNClustersTPC(0);
571 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinNClustersTPC(0);
e3ed0600 572
013103f5 573 trackType = fHybridESDtrackCuts->AcceptTrack(track);
574 if (trackType)
ec718fe3 575 FillCutHistogram("hCutsNumberClusters", nClustersTPC, pT, eta, phi, trackType-1);
013103f5 576
577 fHybridESDtrackCuts->GetMainCuts()->SetMinNClustersTPC(minNclsTPC);
578 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinNClustersTPC(minNclsTPC_Additional);
579 // ################################################################
580 // ################################################################
581 Float_t maxChi2 = fHybridESDtrackCuts->GetMainCuts()->GetMaxChi2PerClusterTPC();
582 Float_t maxChi2_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxChi2PerClusterTPC();
583 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2PerClusterTPC(999.);
584 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2PerClusterTPC(999.);
585
586 trackType = fHybridESDtrackCuts->AcceptTrack(track);
587 if (trackType)
588 FillCutHistogram("hCutsChi2TPC", chi2TPC, pT, eta, phi, trackType-1);
589
590 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2PerClusterTPC(maxChi2);
591 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2PerClusterTPC(maxChi2_Additional);
592
593 // ################################################################
594 // ################################################################
595 Float_t maxChi2TPCConstrained = fHybridESDtrackCuts->GetMainCuts()->GetMaxChi2TPCConstrainedGlobal();
596 Float_t maxChi2TPCConstrained_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxChi2TPCConstrainedGlobal();
597 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2TPCConstrainedGlobal(999.);
598 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2TPCConstrainedGlobal(999.);
599
600 trackType = fHybridESDtrackCuts->AcceptTrack(track);
601 if (trackType)
602 FillCutHistogram("hCutsChi2Constrained", chi2TPCConstrained, pT, eta, phi, trackType-1);
603
604 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2TPCConstrainedGlobal(maxChi2TPCConstrained);
605 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2TPCConstrainedGlobal(maxChi2TPCConstrained_Additional);
606
607 // ################################################################
608 // ################################################################
609 Float_t maxDcaZ = fHybridESDtrackCuts->GetMainCuts()->GetMaxDCAToVertexZ();
610 Float_t maxDcaZ_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxDCAToVertexZ();
611 fHybridESDtrackCuts->GetMainCuts()->SetMaxDCAToVertexZ(999.);
612 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxDCAToVertexZ(999.);
613
614 trackType = fHybridESDtrackCuts->AcceptTrack(track);
615 if (trackType)
616 FillCutHistogram("hCutsDCAZ", TMath::Abs(dca[1]), pT, eta, phi, trackType-1);
617
618 fHybridESDtrackCuts->GetMainCuts()->SetMaxDCAToVertexZ(maxDcaZ);
619 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxDCAToVertexZ(maxDcaZ_Additional);
e3ed0600 620
621 // ################################################################
622 // ################################################################
623 Float_t maxDcaXY = fHybridESDtrackCuts->GetMainCuts()->GetMaxDCAToVertexXY();
624 Float_t maxDcaXY_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxDCAToVertexXY();
625 fHybridESDtrackCuts->GetMainCuts()->SetMaxDCAToVertexXY(999.);
626 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxDCAToVertexXY(999.);
627
628 trackType = fHybridESDtrackCuts->AcceptTrack(track);
629 if (trackType)
630 FillCutHistogram("hCutsDCAXY", TMath::Abs(dca[0]), pT, eta, phi, trackType-1);
631
632 fHybridESDtrackCuts->GetMainCuts()->SetMaxDCAToVertexXY(maxDcaXY);
633 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxDCAToVertexXY(maxDcaXY_Additional);
634
013103f5 635 // ################################################################
636 // ################################################################
637 AliESDtrackCuts::ITSClusterRequirement clusterReq = fHybridESDtrackCuts->GetMainCuts()->GetClusterRequirementITS(AliESDtrackCuts::kSPD);
638 AliESDtrackCuts::ITSClusterRequirement clusterReq_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetClusterRequirementITS(AliESDtrackCuts::kSPD);
639 fHybridESDtrackCuts->GetMainCuts()->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kOff);
640 fHybridESDtrackCuts->GetAdditionalCuts()->SetClusterRequirementITS(AliESDtrackCuts::kSPD, AliESDtrackCuts::kOff);
641
642 Int_t hasPoint = 0;
643 if (track->HasPointOnITSLayer(0) || track->HasPointOnITSLayer(1)) hasPoint = 1;
644 trackType = fHybridESDtrackCuts->AcceptTrack(track);
645 if (trackType)
646 FillCutHistogram("hCutsSPDHit", hasPoint, pT, eta, phi, trackType-1);
647
648 fHybridESDtrackCuts->GetMainCuts()->SetClusterRequirementITS(AliESDtrackCuts::kSPD, clusterReq);
649 fHybridESDtrackCuts->GetAdditionalCuts()->SetClusterRequirementITS(AliESDtrackCuts::kSPD, clusterReq_Additional);
650
651 // ################################################################
652 // ################################################################
653 Float_t minNcrTPC = fHybridESDtrackCuts->GetMainCuts()->GetMinNCrossedRowsTPC();
654 Float_t minNcrTPC_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMinNCrossedRowsTPC();
655 fHybridESDtrackCuts->GetMainCuts()->SetMinNCrossedRowsTPC(0);
656 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinNCrossedRowsTPC(0);
657
658 trackType = fHybridESDtrackCuts->AcceptTrack(track);
659 if (trackType)
660 FillCutHistogram("hCutsNumberCrossedRows", ncrTPC, pT, eta, phi, trackType-1);
661
662 fHybridESDtrackCuts->GetMainCuts()->SetMinNCrossedRowsTPC(minNcrTPC);
663 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinNCrossedRowsTPC(minNcrTPC_Additional);
664
665 // ################################################################
666 // ################################################################
667 Float_t minCRoverFC = fHybridESDtrackCuts->GetMainCuts()->GetMinRatioCrossedRowsOverFindableClustersTPC();
668 Float_t minCRoverFC_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMinRatioCrossedRowsOverFindableClustersTPC();
669 fHybridESDtrackCuts->GetMainCuts()->SetMinRatioCrossedRowsOverFindableClustersTPC(0.);
670 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinRatioCrossedRowsOverFindableClustersTPC(0.);
671
672 trackType = fHybridESDtrackCuts->AcceptTrack(track);
673 if (trackType)
674 FillCutHistogram("hCutsNumberCrossedRowsOverFindableClusters", nCRoverFC, pT, eta, phi, trackType-1);
675
676 fHybridESDtrackCuts->GetMainCuts()->SetMinRatioCrossedRowsOverFindableClustersTPC(minCRoverFC);
677 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinRatioCrossedRowsOverFindableClustersTPC(minCRoverFC_Additional);
678
679 // ################################################################
680 // ################################################################
681 Float_t maxSharedTPC = fHybridESDtrackCuts->GetMainCuts()->GetMaxFractionSharedTPCClusters();
682 Float_t maxSharedTPC_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxFractionSharedTPCClusters();
683 fHybridESDtrackCuts->GetMainCuts()->SetMaxFractionSharedTPCClusters(999.);
684 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxFractionSharedTPCClusters(999.);
685
686 trackType = fHybridESDtrackCuts->AcceptTrack(track);
687 if (trackType)
688 FillCutHistogram("hCutsSharedTPC", SharedTPCClusters, pT, eta, phi, trackType-1);
689
690 fHybridESDtrackCuts->GetMainCuts()->SetMaxFractionSharedTPCClusters(maxSharedTPC);
691 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxFractionSharedTPCClusters(maxSharedTPC_Additional);
692
693 // ################################################################
694 // ################################################################
695 Bool_t reqTPCRefit = fHybridESDtrackCuts->GetMainCuts()->GetRequireTPCRefit();
696 Bool_t reqTPCRefit_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetRequireTPCRefit();
697
698 fHybridESDtrackCuts->GetMainCuts()->SetRequireTPCRefit(1);
699 fHybridESDtrackCuts->GetAdditionalCuts()->SetRequireTPCRefit(1);
700 trackType = fHybridESDtrackCuts->AcceptTrack(track);
701 if (trackType)
702 FillCutHistogram("hCutsTPCRefit", 1, pT, eta, phi, trackType-1);
703 else // track is not accepted as global hybrid with TPC refit requirement
b95d0245 704 {
013103f5 705 fHybridESDtrackCuts->GetMainCuts()->SetRequireTPCRefit(0);
706 fHybridESDtrackCuts->GetAdditionalCuts()->SetRequireTPCRefit(0);
707 trackType = fHybridESDtrackCuts->AcceptTrack(track);
708 if (trackType)
709 FillCutHistogram("hCutsTPCRefit", 0, pT, eta, phi, trackType-1);
b95d0245 710 }
013103f5 711 fHybridESDtrackCuts->GetMainCuts()->SetRequireTPCRefit(reqTPCRefit);
712 fHybridESDtrackCuts->GetAdditionalCuts()->SetRequireTPCRefit(reqTPCRefit_Additional);
392aa819 713
90297a16 714 // ################################################################
715 // ################################################################
716 Bool_t accKinks = fHybridESDtrackCuts->GetMainCuts()->GetAcceptKinkDaughters();
717 Bool_t accKinks_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetAcceptKinkDaughters();
718
719 fHybridESDtrackCuts->GetMainCuts()->SetAcceptKinkDaughters(0);
720 fHybridESDtrackCuts->GetAdditionalCuts()->SetAcceptKinkDaughters(0);
721 trackType = fHybridESDtrackCuts->AcceptTrack(track);
722 if (trackType) // A passing track has no kinks
723 FillCutHistogram("hCutsAcceptKinks", 0, pT, eta, phi, trackType-1);
724 else
725 {
726 fHybridESDtrackCuts->GetMainCuts()->SetAcceptKinkDaughters(1);
727 fHybridESDtrackCuts->GetAdditionalCuts()->SetAcceptKinkDaughters(1);
728 trackType = fHybridESDtrackCuts->AcceptTrack(track);
729 if (trackType) // A passing track has kinks
730 FillCutHistogram("hCutsAcceptKinks", 1, pT, eta, phi, trackType-1);
731 }
732 fHybridESDtrackCuts->GetMainCuts()->SetAcceptKinkDaughters(accKinks);
733 fHybridESDtrackCuts->GetAdditionalCuts()->SetAcceptKinkDaughters(accKinks_Additional);
734
013103f5 735 // ################################################################
736 // ################################################################
737 Float_t maxChi2ITS = fHybridESDtrackCuts->GetMainCuts()->GetMaxChi2PerClusterITS();
738 Float_t maxChi2ITS_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxChi2PerClusterITS();
739 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2PerClusterITS(999.);
740 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2PerClusterITS(999.);
392aa819 741
013103f5 742 trackType = fHybridESDtrackCuts->AcceptTrack(track);
743 if (trackType)
744 FillCutHistogram("hCutsChi2ITS", chi2ITS, pT, eta, phi, trackType-1);
8628b70c 745
013103f5 746 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2PerClusterITS(maxChi2ITS);
747 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2PerClusterITS(maxChi2ITS_Additional);
12eb4ac1 748
013103f5 749 // ################################################################
750 // ################################################################
751 Float_t minTpcLength = fHybridESDtrackCuts->GetMainCuts()->GetMinLengthActiveVolumeTPC(); // Active length TPC
752 Float_t minTpcLength_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMinLengthActiveVolumeTPC();
753 fHybridESDtrackCuts->GetMainCuts()->SetMinLengthActiveVolumeTPC(0);
754 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinLengthActiveVolumeTPC(0);
392aa819 755
013103f5 756 trackType = fHybridESDtrackCuts->AcceptTrack(track);
757 if (trackType)
758 FillCutHistogram("hCutsTPCLength", tpcLength, pT, eta, phi, trackType-1);
8628b70c 759
013103f5 760 fHybridESDtrackCuts->GetMainCuts()->SetMinLengthActiveVolumeTPC(minTpcLength);
761 fHybridESDtrackCuts->GetAdditionalCuts()->SetMinLengthActiveVolumeTPC(minTpcLength_Additional);
8628b70c 762
0cf2a402 763 // ################################################################
764 // ################################################################
765 Bool_t isMatched = kFALSE;
766 Float_t chi2tpc = fHybridESDtrackCuts->GetMainCuts()->GetMaxChi2TPCConstrainedGlobal();
767 Float_t chi2its = fHybridESDtrackCuts->GetMainCuts()->GetMaxChi2PerClusterITS();
768 Float_t chi2tpc_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxChi2TPCConstrainedGlobal();
769 Float_t chi2its_Additional = fHybridESDtrackCuts->GetAdditionalCuts()->GetMaxChi2PerClusterITS();
770
771 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2TPCConstrainedGlobal(99999.);
772 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2PerClusterITS(999999.);
773 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2TPCConstrainedGlobal(99999.);
774 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2PerClusterITS(999999.);
775
776 trackType = fHybridESDtrackCuts->AcceptTrack(track);
777 if (trackType)
778 FillCutHistogram("hCutsTPCITSMatching", isMatched, pT, eta, phi, trackType-1);
779
780 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2TPCConstrainedGlobal(chi2tpc);
781 fHybridESDtrackCuts->GetMainCuts()->SetMaxChi2PerClusterITS(chi2its);
782 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2TPCConstrainedGlobal(chi2tpc_Additional);
783 fHybridESDtrackCuts->GetAdditionalCuts()->SetMaxChi2PerClusterITS(chi2its_Additional);
784
785 isMatched=kTRUE;
786 trackType = fHybridESDtrackCuts->AcceptTrack(track);
787 if (trackType)
788 FillCutHistogram("hCutsTPCITSMatching", isMatched, pT, eta, phi, trackType-1);
789
013103f5 790 // ################################################################
791 // ################################################################
792 if((fHybridESDtrackCuts->GetMainCuts()->GetClusterRequirementITS(AliESDtrackCuts::kSPD) == AliESDtrackCuts::kOff)
793 || (fHybridESDtrackCuts->GetAdditionalCuts() && (fHybridESDtrackCuts->GetAdditionalCuts()->GetClusterRequirementITS(AliESDtrackCuts::kSPD) == AliESDtrackCuts::kOff)))
794 {
795 Bool_t isConstrainedWithITSRefit = static_cast<Bool_t>(track->GetConstrainedParam()) && ((track->GetStatus())&AliESDtrack::kITSrefit);
796 if (trackType)
797 FillCutHistogram("hCutsTrackConstrained", isConstrainedWithITSRefit, pT, eta, phi, trackType-1);
798 }
0cf2a402 799
013103f5 800 }
801
0cf2a402 802 CreateITSTPCMatchingHistograms();
013103f5 803 SetCurrentOutputList(0);
8628b70c 804}
805
0cf2a402 806//________________________________________________________________________
807void AliAnalysisTaskChargedJetsPA::CreateITSTPCMatchingHistograms()
808{
809 //
810 // check how many its-sa tracks get matched to TPC
811 //
812 Bool_t fExcludeMomFromChi2ITSTPC = kFALSE; // ITS->TPC : exclude momentum from matching chi2 calculation
813
814 AliESDEvent* fESD = dynamic_cast<AliESDEvent*>( InputEvent() );
815 if (!fESD)
816 {
817 AliError("For cut analysis, ESDs must be processed!");
818 return;
819 }
820
821 int ntr = fESD->GetNumberOfTracks();
822 //
823 // initialize histograms
824 //
825 TH2D * hNMatch = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_NMatch");
826 TH2D * hBestMatch = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_BestMatch");
827 TH2D * hBestMatch_cuts = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_BestMatch_cuts");
828 TH2D * hAllMatch = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_AllMatch");
829 TH2D * hAllMatchGlo = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_AllMatchGlo");
830 TH2D * hPtCorr_ITSTPC = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_PtCorr_ITSTPC");
831 TH2D * hdPtRel_ITSTPC = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_dPtRel_ITSTPC");
832 TH2D * hdInvPtRel_ITSTPC = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_dInvPtRel_ITSTPC");
833
834 //
835 TH2D * hNMatchBg = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_NMatchBg");
836 TH2D * hBestMatchBg = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_BestMatchBg");
837 TH2D * hBestMatchBg_cuts = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_BestMatchBg_cuts");
838 TH2D * hAllMatchBg = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_AllMatchBg");
839 TH2D * hAllMatchGloBg = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_AllMatchGloBg");
840 TH2D * hdPtRelBg_ITSTPC = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_dPtRelBg_ITSTPC");
841 TH2D * hdInvPtRelBg_ITSTPC = (TH2D*) fCurrentOutputList->FindObject("hCutsITSTPC_dInvPtRelBg_ITSTPC");
842
565f94c4 843 if(!(hNMatch && hBestMatch && hBestMatch_cuts && hAllMatch && hAllMatchGlo && hPtCorr_ITSTPC && hdPtRel_ITSTPC && hdInvPtRel_ITSTPC && hNMatchBg && hBestMatchBg && hBestMatchBg_cuts && hAllMatchBg && hAllMatchGloBg && hdPtRelBg_ITSTPC && hdInvPtRelBg_ITSTPC))
844 {
845 cout << " === ERROR: At least one of the ITSTPC histograms not found! ===\n";
846 cout << Form(" === Details: %p-%p-%p-%p-%p-%p-%p-%p-%p-%p-%p-%p-%p-%p-%p", hNMatch, hBestMatch, hBestMatch_cuts, hAllMatch, hAllMatchGlo, hPtCorr_ITSTPC, hdPtRel_ITSTPC, hdInvPtRel_ITSTPC, hNMatchBg, hBestMatchBg, hBestMatchBg_cuts, hAllMatchBg, hAllMatchGloBg, hdPtRelBg_ITSTPC, hdInvPtRelBg_ITSTPC) << endl;
847 fCurrentOutputList->Print();
848 return;
849 }
0cf2a402 850 //
851 for (int it=0;it<ntr;it++) {
852 AliESDtrack* trSA = fESD->GetTrack(it);
853 if (!trSA->IsOn(AliESDtrack::kITSpureSA) || !trSA->IsOn(AliESDtrack::kITSrefit)) continue;
854 double pt = trSA->Pt();
855
856 // OB - fiducial eta and pt cuts
857 Double_t etaSA = trSA->Eta();
858
859 if(TMath::Abs(etaSA)>0.8) continue;
860
861 //
862 Int_t nmatch = 0;
863 for (int i=kMaxMatch;i--;) {fMatchChi[i]=0; fMatchTr[i]=0;}
864 for (int it1=0;it1<ntr;it1++){
865 if (it1==it) continue;
866
867 AliESDtrack* trESD = fESD->GetTrack(it1);
868 if (!trESD->IsOn(AliESDtrack::kTPCrefit)) continue;
3691a11a 869
0cf2a402 870 Match(trSA,trESD, nmatch, fExcludeMomFromChi2ITSTPC);
871 }
872 //
873
874 hNMatch->Fill(pt,nmatch);
3691a11a 875
0cf2a402 876 if (nmatch>0){
877 hBestMatch->Fill(pt,fMatchChi[0]);
878 hPtCorr_ITSTPC->Fill(pt,fMatchTr[0]->Pt());
879 hdPtRel_ITSTPC->Fill(pt,(pt-fMatchTr[0]->Pt())/pt);
880 hdInvPtRel_ITSTPC->Fill(pt,pt*( 1/pt - (1/fMatchTr[0]->Pt()) ));
881 }
882
883 if (nmatch>0 && fHybridESDtrackCuts){
884
885 if(fHybridESDtrackCuts->AcceptTrack(fMatchTr[0])){
3691a11a 886 hBestMatch_cuts->Fill(pt,fMatchChi[0]);
0cf2a402 887 }
888 }
889
890 //
891 for (int imt=nmatch;imt--;) {
892 hAllMatch->Fill(pt,fMatchChi[imt]);
893 if (fMatchTr[imt]->IsOn(AliESDtrack::kITSrefit)) hAllMatchGlo->Fill(pt,fMatchChi[imt]);
894 }
895 //
896 nmatch = 0;
897 for (int i=kMaxMatch;i--;) {fMatchChi[i]=0; fMatchTr[i]=0;}
898 for (int it1=0;it1<ntr;it1++) {
899 if (it1==it) continue;
900 AliESDtrack* trESD = fESD->GetTrack(it1);
901 if (!trESD->IsOn(AliESDtrack::kTPCrefit)) continue;
3691a11a 902
0cf2a402 903 Match(trSA,trESD, nmatch, fExcludeMomFromChi2ITSTPC, TMath::Pi());
904 }
905 //
3691a11a 906
0cf2a402 907 hNMatchBg->Fill(pt,nmatch);
3691a11a 908
0cf2a402 909 if (nmatch>0){
910 hBestMatchBg->Fill(pt,fMatchChi[0]);
911 hdPtRelBg_ITSTPC->Fill(pt,(pt-fMatchTr[0]->Pt())/pt);
912 hdInvPtRelBg_ITSTPC->Fill(pt,pt*( 1/pt - (1/fMatchTr[0]->Pt()) ));
913 }
914
915 if (nmatch>0 && fHybridESDtrackCuts){
916 if(fHybridESDtrackCuts->AcceptTrack(fMatchTr[0])){
3691a11a 917 hBestMatchBg_cuts->Fill(pt,fMatchChi[0]);
0cf2a402 918 }
919 }
920
921 for (int imt=nmatch;imt--;) {
922 hAllMatchBg->Fill(pt,fMatchChi[imt]);
923 if (fMatchTr[imt]->IsOn(AliESDtrack::kITSrefit)) hAllMatchGloBg->Fill(pt,fMatchChi[imt]);
924 }
925 //
926 }
927}
928
929//________________________________________________________________________
930void AliAnalysisTaskChargedJetsPA::Match(AliESDtrack* tr0, AliESDtrack* tr1, Int_t& nmatch, Bool_t excludeMom, Double_t rotate)
931{
932 //
933 // check if two tracks are matching, possible rotation for combinatoric backgr.
934 //
935 AliESDEvent* fESD = dynamic_cast<AliESDEvent*>( InputEvent() );
936 if (!fESD)
937 {
938 AliError("For cut analysis, ESDs must be processed!");
939 return;
940 }
941
0cf2a402 942 Float_t bField = fESD->GetMagneticField();
943 //
944 const AliExternalTrackParam* trtpc0 = tr1->GetInnerParam();
945 if (!trtpc0) return;
946 AliExternalTrackParam trtpc(*trtpc0);
947 //
948 if (TMath::Abs(rotate)>1e-5) {
949 const double *par = trtpc.GetParameter();
950 const double *cov = trtpc.GetCovariance();
951 double alp = trtpc.GetAlpha() + rotate;
952 trtpc.Set(trtpc.GetX(),alp,par,cov);
953 }
954 //
955 if (!trtpc.Rotate(tr0->GetAlpha())) return;
956 if (!trtpc.PropagateTo(tr0->GetX(),bField)) return;
957 double chi2 = tr0->GetPredictedChi2(&trtpc);
958
959 //std::cout<<" in Match, nmatch "<<nmatch<<" par[4] before "<<trtpc.GetParameter()[4]<<" chi2 "<<chi2<<endl;
960
961 // OB chi2 excluding pt
962 if(excludeMom){
963 ((double*)trtpc.GetParameter())[4] = tr0->GetParameter()[4]; // set ITS mom equal TPC mom
964 chi2 = tr0->GetPredictedChi2(&trtpc);
965
966 //std::cout<<" in Match, nmatch "<<nmatch<<" par[4] after "<<trtpc.GetParameter()[4]<<" tr0 mom "<<tr0->GetParameter()[4]
3691a11a 967 // <<" chi2 "<<chi2<<std::endl;
0cf2a402 968 }
969
970
971 if (chi2>kMaxChi2) return;
972
973 // std::cout<<" found good match, tr1 "<<tr1<<" chi2 "<<chi2<<std::endl;
974 // std::cout<<" before: fMatchChi[0] "<<fMatchChi[0]<<" [1] "<<fMatchChi[1]
3691a11a 975 // <<" [2] "<<fMatchChi[2]<<" [3] "<<fMatchChi[3]
976 // <<" [4] "<<fMatchChi[4]<<std::endl;
0cf2a402 977
978 // std::cout<<" before: fMatchTr[0] "<<fMatchTr[0]<<" [1] "<<fMatchTr[1]
3691a11a 979 // <<" [2] "<<fMatchTr[2]<<" [3] "<<fMatchTr[3]
980 // <<" [4] "<<fMatchTr[4]<<std::endl;
0cf2a402 981
982 //
983 int ins;
984 for (ins=0;ins<nmatch;ins++) if (chi2<fMatchChi[ins]) break;
985 if (ins>=kMaxMatch) return;
986
987 for (int imv=nmatch;imv>ins;imv--) {
988 if (imv>=kMaxMatch) continue;
989 fMatchTr[imv] = fMatchTr[imv-1];
990 fMatchChi[imv] = fMatchChi[imv-1];
991 }
992 fMatchTr[ins] = tr1;
993 fMatchChi[ins] = chi2;
994 nmatch++;
995 if (nmatch>=kMaxMatch) nmatch = kMaxMatch;
996 //
997}
013103f5 998
06b41974 999//________________________________________________________________________
1000Double_t AliAnalysisTaskChargedJetsPA::GetExternalRho()
1001{
1002 // Get rho from event.
1003 AliRhoParameter *rho = 0;
1004 if (!fRhoTaskName.IsNull()) {
1005 rho = dynamic_cast<AliRhoParameter*>(InputEvent()->FindListObject(fRhoTaskName.Data()));
1006 if (!rho) {
1007 AliWarning(Form("%s: Could not retrieve rho with name %s!", GetName(), fRhoTaskName.Data()));
1008 return 0;
1009 }
1010 }
1011 else
1012 return 0;
1013
1014 return (rho->GetVal());
1015}
1016
0cb49d99 1017//________________________________________________________________________
1018inline Bool_t AliAnalysisTaskChargedJetsPA::IsEventInAcceptance(AliVEvent* event)
1019{
1020 if (!event)
1021 return kFALSE;
1022
277217ca 1023 // ### Get centrality values
1024
1025 AliCentrality* tmpCentrality = event->GetCentrality();
1026 Double_t centralityPercentile = -1.0;
1027 if (tmpCentrality != NULL)
1028 centralityPercentile = tmpCentrality->GetCentralityPercentile(fCentralityType.Data());
1029 FillHistogram("hCentrality",centralityPercentile);
1030
1031 if(fSetCentralityToOne)
1032 centralityPercentile = 1.0;
1033
1034 if((centralityPercentile < 0.0) || (centralityPercentile > 101.0))
1035 AliWarning(Form("Centrality value not valid (c=%E)",centralityPercentile));
1036
1037 FillHistogram("hCentrality", centralityPercentile, 0.5); // before any cuts
1038
1039 // ### CUT STAGE 1: Pile-up events (only holds for pPb)
c2b0976c 1040 if(fUsePileUpCut)
1041 if(fHelperClass->IsPileUpEvent(event))
1042 return kFALSE;
0cb49d99 1043
277217ca 1044 FillHistogram("hCentrality", centralityPercentile, 1.5); // after pileup cut
0cb49d99 1045
277217ca 1046 // ### CUT STAGE 2: Existence of primary vertex
013103f5 1047 fPrimaryVertex = event->GetPrimaryVertex();
1048
2a82f637 1049 if(fUseDefaultVertexCut)
1050 {
277217ca 1051 fHelperClass->SetMaxVtxZ(10000.);
c2b0976c 1052 if(!fHelperClass->IsVertexSelected2013pA(event))
277217ca 1053 {
1054 fHelperClass->SetMaxVtxZ(10.);
1055 return kFALSE;
1056 }
1057 fHelperClass->SetMaxVtxZ(10.);
2a82f637 1058 }
277217ca 1059 else // Vertex cut for pp
2a82f637 1060 {
277217ca 1061 if(!fPrimaryVertex || (fPrimaryVertex->GetNContributors()<2) || (TMath::Sqrt(fPrimaryVertex->GetX()*fPrimaryVertex->GetX() + fPrimaryVertex->GetY()*fPrimaryVertex->GetY()) > 1.0))
2a82f637 1062 return kFALSE;
1063 }
1064
277217ca 1065 FillHistogram("hVertexZ",fPrimaryVertex->GetZ());
1066 FillHistogram("hCentrality", centralityPercentile, 2.5); // after vertex existance cut
013103f5 1067
277217ca 1068 // ### CUT STAGE 3: Position of primary vertex
1069 if((TMath::Abs(fPrimaryVertex->GetZ()) > 10.0))
1070 return kFALSE;
2a82f637 1071
277217ca 1072 FillHistogram("hCentrality", centralityPercentile, 3.5); // after vertex position cut
0cb49d99 1073
1074 return kTRUE;
1075}
1076
1077//________________________________________________________________________
1078inline Bool_t AliAnalysisTaskChargedJetsPA::IsTrackInAcceptance(AliVParticle* track)
1079{
1080 FillHistogram("hTrackAcceptance", 0.5);
1081 if (track != 0)
c2b0976c 1082 {
6fe2264d 1083 if ((track->Eta() < fMaxEta) && (track->Eta() >= fMinEta))
0cb49d99 1084 {
1085 FillHistogram("hTrackAcceptance", 1.5);
1086 if (track->Pt() >= fMinTrackPt)
1087 {
1088 FillHistogram("hTrackAcceptance", 2.5);
1089 return kTRUE;
1090 }
1091 }
c2b0976c 1092 }
0cb49d99 1093 return kFALSE;
1094}
b95d0245 1095
8628b70c 1096//________________________________________________________________________
1097inline Bool_t AliAnalysisTaskChargedJetsPA::IsBackgroundJetInAcceptance(AliEmcalJet *jet)
1098{
1099 if (jet != 0)
013103f5 1100 if ((jet->Eta() >= fMinJetEta) && (jet->Eta() < fMaxJetEta))
8628b70c 1101 if (jet->Pt() >= fMinBackgroundJetPt)
1102 return kTRUE;
1103
1104 return kFALSE;
1105}
1106
1107//________________________________________________________________________
ec676623 1108inline Bool_t AliAnalysisTaskChargedJetsPA::IsSignalJetInAcceptance(AliEmcalJet *jet, Bool_t usePtCut)
1109{
1110 Bool_t acceptedWithPtCut = kFALSE;
1111 Bool_t acceptedWithoutPtCut = kFALSE;
1112
0cb49d99 1113 FillHistogram("hJetAcceptance", 0.5);
8628b70c 1114 if (jet != 0)
b836a932 1115 if ((jet->Eta() >= fMinJetEta) && (jet->Eta() < fMaxJetEta))
0cb49d99 1116 {
1117 FillHistogram("hJetAcceptance", 1.5);
ec676623 1118 if (jet->Pt() >= fMinJetPt) // jet fulfills pt cut
0cb49d99 1119 {
1120 FillHistogram("hJetAcceptance", 2.5);
8628b70c 1121 if (jet->Area() >= fMinJetArea)
0cb49d99 1122 {
1123 FillHistogram("hJetAcceptance", 3.5);
ec676623 1124 acceptedWithPtCut = kTRUE;
0cb49d99 1125 }
1126 }
ec676623 1127 else if(!usePtCut) // jet does not fulfill pt cut
1128 {
1129 if (jet->Area() >= fMinJetArea)
1130 acceptedWithoutPtCut = kTRUE;
1131 }
0cb49d99 1132 }
ec676623 1133
1134 if(usePtCut)
1135 return (acceptedWithPtCut);
1136 else
1137 return (acceptedWithPtCut || acceptedWithoutPtCut);
8628b70c 1138}
1139
1140//________________________________________________________________________
1141void AliAnalysisTaskChargedJetsPA::ExecOnce()
1142{
1143 #ifdef DEBUGMODE
efb9b161 1144 AliInfo("Starting ExecOnce.");
8628b70c 1145 #endif
1146 fInitialized = kTRUE;
1147
1148 // Check for track array
013103f5 1149 if (strcmp(fTrackArrayName.Data(), "") != 0)
8628b70c 1150 {
013103f5 1151 fTrackArray = dynamic_cast<TClonesArray*>(InputEvent()->FindListObject(fTrackArrayName.Data()));
8628b70c 1152 if (!fTrackArray)
013103f5 1153 AliWarning(Form("%s: Could not retrieve tracks %s!", GetName(), fTrackArrayName.Data()));
8628b70c 1154 else
1155 {
1156 TClass *cl = fTrackArray->GetClass();
1157 if (!cl->GetBaseClass("AliVParticle"))
1158 {
013103f5 1159 AliError(Form("%s: Collection %s does not contain AliVParticle objects!", GetName(), fTrackArrayName.Data()));
1160 fTrackArray = 0;
8628b70c 1161 }
1162 }
1163 }
8628b70c 1164
1165 // Check for jet array
013103f5 1166 if (strcmp(fJetArrayName.Data(), "") != 0)
8628b70c 1167 {
013103f5 1168 fJetArray = dynamic_cast<TClonesArray*>(InputEvent()->FindListObject(fJetArrayName.Data()));
8628b70c 1169 if (!fJetArray)
013103f5 1170 AliWarning(Form("%s: Could not retrieve jets %s!", GetName(), fJetArrayName.Data()));
8628b70c 1171 else
1172 {
1173 if (!fJetArray->GetClass()->GetBaseClass("AliEmcalJet"))
1174 {
013103f5 1175 AliError(Form("%s: Collection %s does not contain AliEmcalJet objects!", GetName(), fJetArrayName.Data()));
8628b70c 1176 fJetArray = 0;
8628b70c 1177 }
1178 }
1179 }
1180
1181 // Check for background object
013103f5 1182 if (strcmp(fBackgroundJetArrayName.Data(), "") != 0)
8628b70c 1183 {
013103f5 1184 fBackgroundJetArray = dynamic_cast<TClonesArray*>(InputEvent()->FindListObject(fBackgroundJetArrayName.Data()));
8628b70c 1185 if (!fBackgroundJetArray)
013103f5 1186 AliInfo(Form("%s: Could not retrieve background jets %s!", GetName(), fBackgroundJetArrayName.Data()));
8628b70c 1187 }
1188
06b41974 1189 // Initialize helper class (for vertex selection & pile up correction)
3fa9cde0 1190 fHelperClass = new AliAnalysisUtils();
06b41974 1191 fHelperClass->SetCutOnZVertexSPD(kFALSE);
8628b70c 1192 // Histogram init
1193 Init();
013103f5 1194 // Trackcut initialization
1195 InitializeTrackcuts();
8628b70c 1196
1197 #ifdef DEBUGMODE
efb9b161 1198 AliInfo("ExecOnce done.");
8628b70c 1199 #endif
1200
1201}
1202
1203//________________________________________________________________________
013103f5 1204void AliAnalysisTaskChargedJetsPA::GetLeadingJets()
8628b70c 1205{
1206 // Reset vars
1207 fFirstLeadingJet = NULL;
1208 fSecondLeadingJet = NULL;
013103f5 1209 fFirstLeadingKTJet = NULL;
1210 fSecondLeadingKTJet = NULL;
1211
8628b70c 1212 fNumberSignalJets = 0;
013103f5 1213 fNumberSignalJetsAbove5GeV = 0;
1214
1215 Int_t jetIDArray[] = {-1, -1};
1216 Float_t maxJetPts[] = {0, 0};
1217 jetIDArray[0] = -1;
1218 jetIDArray[1] = -1;
8628b70c 1219
013103f5 1220 Int_t jetIDArrayKT[] = {-1, -1};
1221 Float_t maxJetPtsKT[] = {0, 0};
1222 jetIDArrayKT[0] = -1;
1223 jetIDArrayKT[1] = -1;
1224
1225 // Find leading signal jets
b95d0245 1226 for (Int_t i = 0; i < fJetArray->GetEntries(); i++)
8628b70c 1227 {
1228 AliEmcalJet* jet = static_cast<AliEmcalJet*>(fJetArray->At(i));
013103f5 1229 if (!jet)
8628b70c 1230 {
1231 AliError(Form("%s: Could not receive jet %d", GetName(), i));
1232 continue;
1233 }
1234
013103f5 1235 if (!IsSignalJetInAcceptance(jet)) continue;
b95d0245 1236
013103f5 1237 if (jet->Pt() > maxJetPts[0])
1238 {
1239 maxJetPts[1] = maxJetPts[0];
1240 jetIDArray[1] = jetIDArray[0];
1241 maxJetPts[0] = jet->Pt();
1242 jetIDArray[0] = i;
8628b70c 1243 }
013103f5 1244 else if (jet->Pt() > maxJetPts[1])
1245 {
1246 maxJetPts[1] = jet->Pt();
1247 jetIDArray[1] = i;
1248 }
1249 fNumberSignalJets++;
1250 if(jet->Pt() >= 5.)
1251 fNumberSignalJetsAbove5GeV++;
b95d0245 1252 }
1253
013103f5 1254 // Find leading background jets
1255 for (Int_t i = 0; i < fBackgroundJetArray->GetEntries(); i++)
b95d0245 1256 {
013103f5 1257 AliEmcalJet* jet = static_cast<AliEmcalJet*>(fBackgroundJetArray->At(i));
1258 if (!jet)
1259 {
1260 AliError(Form("%s: Could not receive jet %d", GetName(), i));
1261 continue;
1262 }
1263
1264 if (!IsBackgroundJetInAcceptance(jet)) continue;
1265
1266 if (jet->Pt() > maxJetPtsKT[0])
1267 {
1268 maxJetPtsKT[1] = maxJetPtsKT[0];
1269 jetIDArrayKT[1] = jetIDArrayKT[0];
1270 maxJetPtsKT[0] = jet->Pt();
1271 jetIDArrayKT[0] = i;
1272 }
1273 else if (jet->Pt() > maxJetPtsKT[1])
1274 {
1275 maxJetPtsKT[1] = jet->Pt();
1276 jetIDArrayKT[1] = i;
1277 }
8628b70c 1278 }
8628b70c 1279
013103f5 1280 if (jetIDArray[0] > -1)
1281 fFirstLeadingJet = static_cast<AliEmcalJet*>(fJetArray->At(jetIDArray[0]));
1282 if (jetIDArray[1] > -1)
1283 fSecondLeadingJet = static_cast<AliEmcalJet*>(fJetArray->At(jetIDArray[1]));
1284 if (jetIDArrayKT[0] > -1)
1285 fFirstLeadingKTJet = static_cast<AliEmcalJet*>(fBackgroundJetArray->At(jetIDArrayKT[0]));
1286 if (jetIDArrayKT[1] > -1)
1287 fSecondLeadingKTJet = static_cast<AliEmcalJet*>(fBackgroundJetArray->At(jetIDArrayKT[1]));
8628b70c 1288}
1289
1290//________________________________________________________________________
013103f5 1291inline Double_t AliAnalysisTaskChargedJetsPA::GetConePt(Double_t eta, Double_t phi, Double_t radius)
8628b70c 1292{
013103f5 1293 Double_t tmpConePt = 0.0;
8628b70c 1294
013103f5 1295 for (Int_t i = 0; i < fTrackArray->GetEntries(); i++)
8628b70c 1296 {
013103f5 1297 AliVTrack* tmpTrack = static_cast<AliVTrack*>(fTrackArray->At(i));
1298 if (IsTrackInAcceptance(tmpTrack))
1299 if(IsTrackInCone(tmpTrack, eta, phi, radius))
1300 tmpConePt = tmpConePt + tmpTrack->Pt();
8628b70c 1301 }
013103f5 1302 return tmpConePt;
1303}
8628b70c 1304
013103f5 1305//________________________________________________________________________
1306inline Double_t AliAnalysisTaskChargedJetsPA::GetCorrectedConePt(Double_t eta, Double_t phi, Double_t radius, Double_t background)
1307{
1308 Double_t tmpConePt = 0.0;
8628b70c 1309
013103f5 1310 for (Int_t i = 0; i < fTrackArray->GetEntries(); i++)
8628b70c 1311 {
013103f5 1312 AliVTrack* tmpTrack = static_cast<AliVTrack*>(fTrackArray->At(i));
1313 if (IsTrackInAcceptance(tmpTrack))
1314 if(IsTrackInCone(tmpTrack, eta, phi, radius))
1315 tmpConePt = tmpConePt + tmpTrack->Pt();
1316 }
1317 Double_t realConeArea = (1.0*(fMaxEta-fMinEta)) * TMath::TwoPi() * MCGetOverlapCircleRectancle(eta, phi, radius, fMinEta, fMaxEta, 0., TMath::TwoPi());
1318 tmpConePt -= background * realConeArea; // subtract background
8628b70c 1319
013103f5 1320 return tmpConePt;
1321}
8628b70c 1322
a8b7cbf6 1323//________________________________________________________________________
1324inline Int_t AliAnalysisTaskChargedJetsPA::GetConeConstituentCount(Double_t eta, Double_t phi, Double_t radius)
1325{
1326 Int_t tmpConeCount = 0.0;
1327
1328 for (Int_t i = 0; i < fTrackArray->GetEntries(); i++)
1329 {
1330 AliVTrack* tmpTrack = static_cast<AliVTrack*>(fTrackArray->At(i));
1331 if (IsTrackInAcceptance(tmpTrack))
1332 if(IsTrackInCone(tmpTrack, eta, phi, radius))
1333 tmpConeCount++;
1334 }
1335
1336 return tmpConeCount;
1337}
1338
013103f5 1339//________________________________________________________________________
1340inline Bool_t AliAnalysisTaskChargedJetsPA::IsTrackInCone(AliVTrack* track, Double_t eta, Double_t phi, Double_t radius)
1341{
1342 // This is to use a full cone in phi even at the edges of phi (2pi -> 0) (0 -> 2pi)
1343 Double_t trackPhi = 0.0;
1344 if (track->Phi() > (TMath::TwoPi() - (radius-phi)))
1345 trackPhi = track->Phi() - TMath::TwoPi();
1346 else if (track->Phi() < (phi+radius - TMath::TwoPi()))
1347 trackPhi = track->Phi() + TMath::TwoPi();
1348 else
1349 trackPhi = track->Phi();
1350
1351 if ( TMath::Abs(trackPhi-phi)*TMath::Abs(trackPhi-phi) + TMath::Abs(track->Eta()-eta)*TMath::Abs(track->Eta()-eta) <= radius*radius)
1352 return kTRUE;
1353
1354 return kFALSE;
1355}
1356
1357//________________________________________________________________________
1358inline Bool_t AliAnalysisTaskChargedJetsPA::IsTrackInJet(AliEmcalJet* jet, Int_t trackIndex)
1359{
1360 for (Int_t i = 0; i < jet->GetNumberOfTracks(); ++i)
1361 {
1362 Int_t jetTrack = jet->TrackAt(i);
1363 if (jetTrack == trackIndex)
1364 return kTRUE;
1365 }
1366 return kFALSE;
1367}
1368
1369//________________________________________________________________________
1370inline Bool_t AliAnalysisTaskChargedJetsPA::IsJetOverlapping(AliEmcalJet* jet1, AliEmcalJet* jet2)
1371{
1372 for (Int_t i = 0; i < jet1->GetNumberOfTracks(); ++i)
1373 {
1374 Int_t jet1Track = jet1->TrackAt(i);
1375 for (Int_t j = 0; j < jet2->GetNumberOfTracks(); ++j)
8628b70c 1376 {
013103f5 1377 Int_t jet2Track = jet2->TrackAt(j);
1378 if (jet1Track == jet2Track)
1379 return kTRUE;
8628b70c 1380 }
8628b70c 1381 }
013103f5 1382 return kFALSE;
8628b70c 1383}
12eb4ac1 1384
12eb4ac1 1385//________________________________________________________________________
e8df4140 1386Double_t AliAnalysisTaskChargedJetsPA::GetCorrectedJetPt(AliEmcalJet* jet, Double_t background)
8628b70c 1387{
1388 #ifdef DEBUGMODE
efb9b161 1389 AliInfo("Getting corrected jet spectra.");
8628b70c 1390 #endif
1391
8628b70c 1392 Double_t correctedPt = -1.0;
0983dd5b 1393 // if the passed background is not valid, do not subtract it
1394 if(background < 0)
1395 background = 0;
8628b70c 1396
8628b70c 1397 // Subtract background
e8df4140 1398 correctedPt = jet->Pt() - background * jet->Area();
8628b70c 1399
1400 #ifdef DEBUGMODE
efb9b161 1401 AliInfo("Got corrected jet spectra.");
8628b70c 1402 #endif
1403
1404 return correctedPt;
1405}
1406
1407
12eb4ac1 1408
8628b70c 1409//________________________________________________________________________
b896743a 1410Double_t AliAnalysisTaskChargedJetsPA::GetDeltaPt(Double_t rho, Double_t overlappingJetExclusionProbability)
8628b70c 1411{
1412 #ifdef DEBUGMODE
efb9b161 1413 AliInfo("Getting Delta Pt.");
8628b70c 1414 #endif
1415
12eb4ac1 1416 // Define an invalid delta pt
0cb49d99 1417 Double_t deltaPt = -10000.0;
8628b70c 1418
06f60f31 1419 // Define the ratio of excluded RCs over all RCs
1420 Double_t ratioExcludedRCs = static_cast<Double_t>(fTempExcludedRCs)/fTempAllRCs;
b896743a 1421
12eb4ac1 1422 // Define eta range
8628b70c 1423 Double_t etaMin, etaMax;
b836a932 1424 etaMin = fMinEta+fRandConeRadius;
1425 etaMax = fMaxEta-fRandConeRadius;
8628b70c 1426
12eb4ac1 1427 // Define random cone
1428 Bool_t coneValid = kTRUE;
0983dd5b 1429 Double_t tmpRandConeEta = etaMin + fRandom->Rndm()*(etaMax-etaMin);
1430 Double_t tmpRandConePhi = fRandom->Rndm()*TMath::TwoPi();
8628b70c 1431
b896743a 1432 // Check if a signal jet is overlapping with random cone
1433 if(overlappingJetExclusionProbability)
8628b70c 1434 {
b896743a 1435 // Calculate the mean exclusion probability
06f60f31 1436 fTempOverlapCounter++;
1437 fTempMeanExclusionProbability += overlappingJetExclusionProbability;
b896743a 1438 // For all jets, check overlap
1439 for (Int_t i = 0; i<fJetArray->GetEntries(); i++)
8628b70c 1440 {
392aa819 1441 AliEmcalJet* tmpJet = static_cast<AliEmcalJet*>(fJetArray->At(i));
b896743a 1442 if (!IsSignalJetInAcceptance(tmpJet, kTRUE)) continue;
e8df4140 1443
b896743a 1444 // Check overlap
1445 Double_t tmpDeltaPhi = GetDeltaPhi(tmpRandConePhi, tmpJet->Phi());
1446 if ( tmpDeltaPhi*tmpDeltaPhi + (tmpRandConeEta-tmpJet->Eta())*(tmpRandConeEta-tmpJet->Eta()) <= fRandConeRadius*fRandConeRadius )
0cb49d99 1447 {
06f60f31 1448 fTempAllRCs++;
b896743a 1449 // If an overlap is given, discard or accept it according to the exclusion prob.
06f60f31 1450 if(ratioExcludedRCs < fTempMeanExclusionProbability/fTempOverlapCounter) // to few RCs excluded -> exclude this one
b896743a 1451 {
0cb49d99 1452 coneValid = kFALSE;
06f60f31 1453 fTempExcludedRCs++;
b896743a 1454 }
1455 else // to many RCs excluded -> take this one
1456 coneValid = kTRUE;
0cb49d99 1457 }
8628b70c 1458 }
1459 }
1460
b896743a 1461
8628b70c 1462 // Get the cones' pt and calculate delta pt
1463 if (coneValid)
1464 deltaPt = GetConePt(tmpRandConeEta,tmpRandConePhi,fRandConeRadius) - (rho*fRandConeRadius*fRandConeRadius*TMath::Pi());
12eb4ac1 1465
8628b70c 1466 #ifdef DEBUGMODE
efb9b161 1467 AliInfo("Got Delta Pt.");
8628b70c 1468 #endif
a8b7cbf6 1469 return deltaPt;
8628b70c 1470}
1471
1472//________________________________________________________________________
0cb49d99 1473void AliAnalysisTaskChargedJetsPA::GetKTBackgroundDensityAll(Int_t numberExcludeLeadingJets, Double_t& rhoPbPb, Double_t& rhoPbPbWithGhosts, Double_t& rhoCMS, Double_t& rhoImprovedCMS, Double_t& rhoMean, Double_t& rhoTrackLike)
8628b70c 1474{
1475 #ifdef DEBUGMODE
0cb49d99 1476 AliInfo("Getting ALL KT background density.");
8628b70c 1477 #endif
1478
b95d0245 1479 static Double_t tmpRhoPbPb[1024];
1480 static Double_t tmpRhoPbPbWithGhosts[1024];
1481 static Double_t tmpRhoMean[1024];
1482 static Double_t tmpRhoCMS[1024];
1483 static Double_t tmpRhoImprovedCMS[1024];
1484 Double_t tmpCoveredArea = 0.0;
1485 Double_t tmpSummedArea = 0.0;
1486 Double_t tmpPtTrackLike = 0.0;
1487 Double_t tmpAreaTrackLike = 0.0;
8628b70c 1488
1489 // Setting invalid values
b95d0245 1490 rhoPbPb = 0.0;
1491 rhoPbPbWithGhosts = 0.0;
1492 rhoCMS = 0.0;
1493 rhoImprovedCMS = 0.0;
1494 rhoMean = 0.0;
1495 rhoTrackLike = 0.0;
8628b70c 1496
b95d0245 1497 Int_t rhoPbPbJetCount = 0;
1498 Int_t rhoPbPbWithGhostsJetCount = 0;
1499 Int_t rhoCMSJetCount = 0;
1500 Int_t rhoImprovedCMSJetCount = 0;
1501 Int_t rhoMeanJetCount = 0;
e8df4140 1502
e8df4140 1503
b95d0245 1504 // Exclude UP TO numberExcludeLeadingJets
1505 if(numberExcludeLeadingJets==-1)
1506 numberExcludeLeadingJets = fNumberSignalJets;
1507 if (fNumberSignalJets < numberExcludeLeadingJets)
1508 numberExcludeLeadingJets = fNumberSignalJets;
8628b70c 1509
e8df4140 1510 for (Int_t i = 0; i < fBackgroundJetArray->GetEntries(); i++)
8628b70c 1511 {
e8df4140 1512 AliEmcalJet* backgroundJet = static_cast<AliEmcalJet*>(fBackgroundJetArray->At(i));
b95d0245 1513
e8df4140 1514 if (!backgroundJet)
8628b70c 1515 {
1516 AliError(Form("%s: Could not receive jet %d", GetName(), i));
1517 continue;
1518 }
1519
271cbc5d 1520 tmpSummedArea += backgroundJet->Area();
1521 if(backgroundJet->Pt() > 0.150)
1522 tmpCoveredArea += backgroundJet->Area();
1523
2a82f637 1524 if (!IsBackgroundJetInAcceptance(backgroundJet))
1525 continue;
1526
b95d0245 1527 // Search for overlap with signal jets
1528 Bool_t isOverlapping = kFALSE;
1529 for(Int_t j=0;j<numberExcludeLeadingJets;j++)
e8df4140 1530 {
013103f5 1531 AliEmcalJet* signalJet = fFirstLeadingJet;
1532 if(j==1)
1533 signalJet = fSecondLeadingJet;
c2b0976c 1534
013103f5 1535 if(signalJet->Pt() < 5.0)
1536 continue;
e8df4140 1537
013103f5 1538 if(IsJetOverlapping(signalJet, backgroundJet))
b95d0245 1539 {
013103f5 1540 isOverlapping = kTRUE;
1541 break;
b95d0245 1542 }
1543 }
1544
013103f5 1545 Double_t tmpRho = 0.0;
1546 if(backgroundJet->Area())
1547 tmpRho = backgroundJet->Pt() / backgroundJet->Area();
0cb49d99 1548
013103f5 1549 // PbPb approach (take ghosts into account)
1550 if((backgroundJet != fFirstLeadingKTJet) || (backgroundJet != fSecondLeadingKTJet))
0cb49d99 1551 {
013103f5 1552 tmpRhoPbPbWithGhosts[rhoPbPbWithGhostsJetCount] = tmpRho;
1553 rhoPbPbWithGhostsJetCount++;
0cb49d99 1554 }
1555
0cb49d99 1556 if(backgroundJet->Pt() > 0.150)
013103f5 1557 {
1558 // CMS approach: don't take ghosts into acount
1559 tmpRhoCMS[rhoCMSJetCount] = tmpRho;
1560 rhoCMSJetCount++;
0cb49d99 1561
013103f5 1562 // Improved CMS approach: like CMS but excluding signal
1563 if((backgroundJet != fFirstLeadingKTJet) || (backgroundJet != fSecondLeadingKTJet))
0cb49d99 1564 {
1565 tmpRhoImprovedCMS[rhoImprovedCMSJetCount] = tmpRho;
1566 rhoImprovedCMSJetCount++;
1567 }
013103f5 1568
1569 // PbPb w/o ghosts approach (just neglect ghosts)
1570 if((backgroundJet != fFirstLeadingKTJet) || (backgroundJet != fSecondLeadingKTJet))
1571 {
1572 tmpRhoPbPb[rhoPbPbJetCount] = tmpRho;
1573 rhoPbPbJetCount++;
1574 }
1575 }
1576
1577 // (no overlap with signal jets)
1578 if(!isOverlapping)
1579 {
1580 // Mean approach
1581 tmpRhoMean[rhoMeanJetCount] = tmpRho;
1582 rhoMeanJetCount++;
1583
1584 // Track like approach approach
1585 tmpPtTrackLike += backgroundJet->Pt();
1586 tmpAreaTrackLike += backgroundJet->Area();
1587 }
1588
0cb49d99 1589 }
1590
013103f5 1591 if (tmpAreaTrackLike > 0)
1592 rhoTrackLike = tmpPtTrackLike/tmpAreaTrackLike;
1593 if (rhoPbPbJetCount > 0)
1594 rhoPbPb = TMath::Median(rhoPbPbJetCount, tmpRhoPbPb);
1595 if (rhoPbPbWithGhostsJetCount > 0)
1596 rhoPbPbWithGhosts = TMath::Median(rhoPbPbWithGhostsJetCount, tmpRhoPbPbWithGhosts);
1597 if (rhoCMSJetCount > 0)
1598 rhoCMS = TMath::Median(rhoCMSJetCount, tmpRhoCMS) * tmpCoveredArea/tmpSummedArea;
0cb49d99 1599 if (rhoImprovedCMSJetCount > 0)
1600 {
c154ba90 1601 rhoImprovedCMS = TMath::Median(rhoImprovedCMSJetCount, tmpRhoImprovedCMS) * tmpCoveredArea/tmpSummedArea;
0cb49d99 1602 }
013103f5 1603 if (rhoMeanJetCount > 0)
1604 rhoMean = TMath::Mean(rhoMeanJetCount, tmpRhoMean);
1605
8628b70c 1606 #ifdef DEBUGMODE
013103f5 1607 AliInfo("Got ALL KT background density.");
8628b70c 1608 #endif
1609}
1610
8628b70c 1611//________________________________________________________________________
b95d0245 1612void AliAnalysisTaskChargedJetsPA::GetTRBackgroundDensity(Int_t numberExcludeLeadingJets, Double_t& rhoNoExclusion, Double_t& rhoConeExclusion02, Double_t& rhoConeExclusion04, Double_t& rhoConeExclusion06, Double_t& rhoConeExclusion08, Double_t& rhoExactExclusion)
8628b70c 1613{
1614 #ifdef DEBUGMODE
12eb4ac1 1615 AliInfo("Getting TR background density.");
8628b70c 1616 #endif
1617
b95d0245 1618 Double_t summedTracksPtCone04 = 0.0;
4856f9c9 1619 Double_t summedTracksPtCone02 = 0.0;
b95d0245 1620 Double_t summedTracksPtCone06 = 0.0;
1621 Double_t summedTracksPtCone08 = 0.0;
1622 Double_t summedTracksPtWithinJets = 0.0;
8628b70c 1623 Double_t summedTracksPt = 0.0;
b95d0245 1624
8628b70c 1625 // Setting invalid values
b95d0245 1626 rhoNoExclusion = 0.0;
1627 rhoConeExclusion02 = 0.0;
1628 rhoConeExclusion04 = 0.0;
1629 rhoConeExclusion06 = 0.0;
1630 rhoConeExclusion08 = 0.0;
1631 rhoExactExclusion = 0.0;
1632
8628b70c 1633 // Exclude UP TO numberExcludeLeadingJets
b95d0245 1634 if(numberExcludeLeadingJets==-1)
013103f5 1635 numberExcludeLeadingJets = fNumberSignalJetsAbove5GeV;
b95d0245 1636 if (fNumberSignalJets < numberExcludeLeadingJets)
013103f5 1637 numberExcludeLeadingJets = fNumberSignalJetsAbove5GeV;
1638 if(numberExcludeLeadingJets>2)
f800ea4e 1639 {
90297a16 1640 AliWarning(Form("Warning: GetTRBackgroundDensity() can only exclude up to 2 leading jets! Demanded %i", numberExcludeLeadingJets) );
013103f5 1641 numberExcludeLeadingJets = 2;
f800ea4e
CL
1642 }
1643
b95d0245 1644 for (Int_t i = 0; i < fTrackArray->GetEntries(); i++)
8628b70c 1645 {
8628b70c 1646 AliVTrack* tmpTrack = static_cast<AliVTrack*>(fTrackArray->At(i));
b95d0245 1647 Bool_t trackWithinJet = kFALSE; Bool_t trackWithin02Cone = kFALSE; Bool_t trackWithin04Cone = kFALSE; Bool_t trackWithin06Cone = kFALSE; Bool_t trackWithin08Cone = kFALSE;
1648
8628b70c 1649 if (IsTrackInAcceptance(tmpTrack))
b95d0245 1650 {
1651 // Check if tracks overlaps with jet
1652 for(Int_t j=0;j<numberExcludeLeadingJets;j++)
8628b70c 1653 {
013103f5 1654 AliEmcalJet* signalJet = fFirstLeadingJet;
1655 if(j==1)
1656 signalJet = fSecondLeadingJet;
b95d0245 1657
f800ea4e
CL
1658 if(signalJet->Pt() < 5.0)
1659 continue;
1660
b95d0245 1661 // Exact jet exclusion
1662 if (IsTrackInJet(signalJet, i))
1663 trackWithinJet = kTRUE;
1664
1665 // Cone exclusions
1666 if (IsTrackInCone(tmpTrack, signalJet->Eta(), signalJet->Phi(), 0.2))
8628b70c 1667 {
b95d0245 1668 trackWithin02Cone = kTRUE;
1669 trackWithin04Cone = kTRUE;
1670 trackWithin06Cone = kTRUE;
1671 trackWithin08Cone = kTRUE;
1672 break;
1673 }
1674 else if (IsTrackInCone(tmpTrack, signalJet->Eta(), signalJet->Phi(), 0.4))
1675 {
1676 trackWithin04Cone = kTRUE;
1677 trackWithin06Cone = kTRUE;
1678 trackWithin08Cone = kTRUE;
8628b70c 1679 }
b95d0245 1680 else if (IsTrackInCone(tmpTrack, signalJet->Eta(), signalJet->Phi(), 0.6))
8628b70c 1681 {
b95d0245 1682 trackWithin06Cone = kTRUE;
1683 trackWithin08Cone = kTRUE;
1684 }
1685 else if (IsTrackInCone(tmpTrack, signalJet->Eta(), signalJet->Phi(), 0.8))
1686 {
1687 trackWithin08Cone = kTRUE;
8628b70c 1688 }
1689 }
b95d0245 1690
1691 if(!trackWithin08Cone)
1692 {
1693 summedTracksPtCone08 += tmpTrack->Pt();
1694 }
1695 if(!trackWithin06Cone)
1696 {
1697 summedTracksPtCone06 += tmpTrack->Pt();
1698 }
1699 if(!trackWithin04Cone)
1700 {
1701 summedTracksPtCone04 += tmpTrack->Pt();
1702 }
1703 if(!trackWithin02Cone)
1704 {
1705 summedTracksPtCone02 += tmpTrack->Pt();
1706 }
1707 if(!trackWithinJet)
1708 {
1709 summedTracksPtWithinJets += tmpTrack->Pt();
1710 }
1711 summedTracksPt += tmpTrack->Pt();
1712
1713 }
8628b70c 1714 }
1715
b95d0245 1716 // Calculate the correct area where the tracks were taking from
8628b70c 1717
2f0dd1d3 1718 Double_t tmpFullTPCArea = (1.0*(fMaxEta-fMinEta)) * TMath::TwoPi();
b95d0245 1719 Double_t tmpAreaCone02 = tmpFullTPCArea;
1720 Double_t tmpAreaCone04 = tmpFullTPCArea;
1721 Double_t tmpAreaCone06 = tmpFullTPCArea;
1722 Double_t tmpAreaCone08 = tmpFullTPCArea;
1723 Double_t tmpAreaWithinJets = tmpFullTPCArea;
013103f5 1724 std::vector<Double_t> tmpEtas(fNumberSignalJetsAbove5GeV);
1725 std::vector<Double_t> tmpPhis(fNumberSignalJetsAbove5GeV);
b95d0245 1726
f800ea4e 1727 Int_t iSignal = 0;
b95d0245 1728 for(Int_t i=0;i<numberExcludeLeadingJets;i++)
1729 {
013103f5 1730 AliEmcalJet* signalJet = fFirstLeadingJet;
1731 if(i==1)
1732 signalJet = fSecondLeadingJet;
f800ea4e 1733
013103f5 1734 if(signalJet->Pt() < 5.0)
f800ea4e
CL
1735 continue;
1736
013103f5 1737 tmpEtas[iSignal] = signalJet->Eta();
1738 tmpPhis[iSignal] = signalJet->Phi();
1739 tmpAreaWithinJets -= signalJet->Area();
f800ea4e
CL
1740
1741 iSignal++;
8628b70c 1742 }
1743
013103f5 1744 tmpAreaCone02 -= tmpFullTPCArea * MCGetOverlapMultipleCirclesRectancle(fNumberSignalJetsAbove5GeV, tmpEtas, tmpPhis, 0.2, fMinEta, fMaxEta, 0., TMath::TwoPi());
1745 tmpAreaCone04 -= tmpFullTPCArea * MCGetOverlapMultipleCirclesRectancle(fNumberSignalJetsAbove5GeV, tmpEtas, tmpPhis, 0.4, fMinEta, fMaxEta, 0., TMath::TwoPi());
1746 tmpAreaCone06 -= tmpFullTPCArea * MCGetOverlapMultipleCirclesRectancle(fNumberSignalJetsAbove5GeV, tmpEtas, tmpPhis, 0.6, fMinEta, fMaxEta, 0., TMath::TwoPi());
1747 tmpAreaCone08 -= tmpFullTPCArea * MCGetOverlapMultipleCirclesRectancle(fNumberSignalJetsAbove5GeV, tmpEtas, tmpPhis, 0.8, fMinEta, fMaxEta, 0., TMath::TwoPi());
b95d0245 1748
1749 rhoConeExclusion02 = summedTracksPtCone02/tmpAreaCone02;
1750 rhoConeExclusion04 = summedTracksPtCone04/tmpAreaCone04;
1751 rhoConeExclusion06 = summedTracksPtCone06/tmpAreaCone06;
1752 rhoConeExclusion08 = summedTracksPtCone08/tmpAreaCone08;
1753 rhoExactExclusion = summedTracksPtWithinJets/tmpAreaWithinJets;
1754 rhoNoExclusion = summedTracksPt/tmpFullTPCArea;
1755
1756
8628b70c 1757 #ifdef DEBUGMODE
12eb4ac1 1758 AliInfo("Got TR background density.");
8628b70c 1759 #endif
1760}
1761
ac9c07e9 1762//________________________________________________________________________
3dff28bc 1763void AliAnalysisTaskChargedJetsPA::GetPPBackgroundDensity(Double_t& background)
ac9c07e9
CL
1764{
1765 // This is the background that was used for the pp 7 TeV ALICE paper
3dff28bc 1766 // The background is estimated using the leading jet
1767
1768 background = 0;
1769
3dff28bc 1770 AliEmcalJet* jet = NULL;
013103f5 1771 if(fFirstLeadingJet)
1772 jet = fFirstLeadingJet;
3dff28bc 1773 else
1774 return;
1775
ac9c07e9
CL
1776 Double_t jetMom[3] = { jet->Px(), jet->Py(), jet->Pz() };
1777 TVector3 jet3mom1(jetMom);
1778 TVector3 jet3mom2(jetMom);
ac9c07e9
CL
1779
1780 jet3mom1.RotateZ(TMath::Pi());
1781 jet3mom2.RotateZ(-TMath::Pi());
1782
1783 for (int i = 0; i < fTrackArray->GetEntries(); i++)
1784 {
1785 AliVTrack* track = static_cast<AliVTrack*>(fTrackArray->At(i));
72aa6b04 1786 if (!IsTrackInAcceptance(track))
1787 continue;
ac9c07e9
CL
1788
1789 Double_t trackMom[3] = { track->Px(), track->Py(), track->Pz() };
1790 TVector3 track3mom(trackMom);
1791
1792 Double_t dR1 = jet3mom1.DeltaR(track3mom);
1793 Double_t dR2 = jet3mom2.DeltaR(track3mom);
1794
1795 if (dR1 <= fSignalJetRadius || dR2 <= fSignalJetRadius)
1796 background += track3mom.Pt();
1797 }
1798
1799 background /= (2 * TMath::Pi() * fSignalJetRadius * fSignalJetRadius);
1800}
1801
8628b70c 1802//________________________________________________________________________
1803void AliAnalysisTaskChargedJetsPA::Calculate(AliVEvent* event)
1804{
1805 #ifdef DEBUGMODE
efb9b161 1806 AliInfo("Starting Calculate().");
8628b70c 1807 #endif
1808 ////////////////////// NOTE: initialization & casting
1809
c2b0976c 1810 fEventCounter++;
1811
c2b0976c 1812 // This is to take only every Nth event
1813 if((fEventCounter+fPartialAnalysisIndex) % fPartialAnalysisNParts != 0)
1814 return;
1815
0cb49d99 1816 if(!IsEventInAcceptance(event))
1817 return;
8628b70c 1818
8628b70c 1819 #ifdef DEBUGMODE
efb9b161 1820 AliInfo("Calculate()::Init done.");
8628b70c 1821 #endif
1822
013103f5 1823 ////////////////////// NOTE: Create cut histograms
1824
1825 if(fAnalyzeTrackcuts)
1826 CreateCutHistograms();
1827
8628b70c 1828 ////////////////////// NOTE: Get Centrality, (Leading)Signal jets and Background
1829
12eb4ac1 1830 // Get centrality
277217ca 1831 AliCentrality* tmpCentrality = event->GetCentrality();
4856f9c9 1832 Double_t centralityPercentile = -1.0;
277217ca 1833 Double_t centralityPercentileCL1 = 0.0;
b95d0245 1834 Double_t centralityPercentileV0A = 0.0;
1835 Double_t centralityPercentileV0C = 0.0;
1836 Double_t centralityPercentileV0M = 0.0;
271cbc5d 1837 Double_t centralityPercentileZNA = 0.0;
8628b70c 1838 if (tmpCentrality != NULL)
b95d0245 1839 {
277217ca 1840 centralityPercentile = tmpCentrality->GetCentralityPercentile(fCentralityType.Data());
1841 centralityPercentileCL1 = tmpCentrality->GetCentralityPercentile("CL1");
b95d0245 1842 centralityPercentileV0A = tmpCentrality->GetCentralityPercentile("V0A");
1843 centralityPercentileV0C = tmpCentrality->GetCentralityPercentile("V0C");
1844 centralityPercentileV0M = tmpCentrality->GetCentralityPercentile("V0M");
271cbc5d 1845 centralityPercentileZNA = tmpCentrality->GetCentralityPercentile("ZNA");
b95d0245 1846 }
8628b70c 1847
9f1e4f53 1848 if(fSetCentralityToOne)
b95d0245 1849 centralityPercentile = 1.0;
9f1e4f53 1850
013103f5 1851 ////////////////////// NOTE: Get event QA histograms
8628b70c 1852
013103f5 1853 FillHistogram("hVertexX",fPrimaryVertex->GetX());
1854 FillHistogram("hVertexY",fPrimaryVertex->GetY());
1855 FillHistogram("hVertexXY",fPrimaryVertex->GetX(), fPrimaryVertex->GetY());
1856 FillHistogram("hVertexR",TMath::Sqrt(fPrimaryVertex->GetX()*fPrimaryVertex->GetX() + fPrimaryVertex->GetY()*fPrimaryVertex->GetY()));
277217ca 1857 FillHistogram("hCentralityCL1",centralityPercentileCL1);
013103f5 1858 FillHistogram("hCentralityV0M",centralityPercentileV0M);
1859 FillHistogram("hCentralityV0A",centralityPercentileV0A);
1860 FillHistogram("hCentralityV0C",centralityPercentileV0C);
1861 FillHistogram("hCentralityZNA",centralityPercentileZNA);
013103f5 1862
1863 if(!fDoJetAnalysis)
1864 return;
1865
1866 GetLeadingJets();
1867
90297a16 1868
1869/*
1870 //DEBUG
1871 if(fFirstLeadingJet->Pt()>=80.)
1872 {
1873 const char* fname = CurrentFileName();
1874 TObjString* tmpStr = new TObjString(Form("jet pT=%3.3f, fname=%s, entry=%i", fFirstLeadingJet->Pt(), fname, AliAnalysisManager::GetAnalysisManager()->GetCurrentEntry()));
1875 fCurrentOutputList->Add(tmpStr);
1876 }
1877 //DEBUG
1878*/
1879
013103f5 1880 // ##################### Calculate background densities
b95d0245 1881 Double_t backgroundKTImprovedCMS = -1.0;
013103f5 1882 Double_t backgroundExternal = -1.0;
b95d0245 1883 Double_t backgroundKTPbPb = -1.0;
1884 Double_t backgroundKTPbPbWithGhosts = -1.0;
1885 Double_t backgroundKTCMS = -1.0;
1886 Double_t backgroundKTMean = -1.0;
1887 Double_t backgroundKTTrackLike = -1.0;
1888 Double_t backgroundTRNoExcl = -1.0;
1889 Double_t backgroundTRCone02 = -1.0;
1890 Double_t backgroundTRCone04 = -1.0;
1891 Double_t backgroundTRCone06 = -1.0;
1892 Double_t backgroundTRCone08 = -1.0;
1893 Double_t backgroundTRExact = -1.0;
ac9c07e9 1894 Double_t backgroundPP = -1.0;
3dff28bc 1895 Double_t backgroundJetProfile = -1.0;
b95d0245 1896
013103f5 1897 // Get background estimates
1898 GetKTBackgroundDensityAll (fNumberExcludedJets, backgroundKTPbPb, backgroundKTPbPbWithGhosts, backgroundKTCMS, backgroundKTImprovedCMS, backgroundKTMean, backgroundKTTrackLike);
1899 GetTRBackgroundDensity (fNumberExcludedJets, backgroundTRNoExcl, backgroundTRCone02, backgroundTRCone04, backgroundTRCone06, backgroundTRCone08, backgroundTRExact);
1900 GetPPBackgroundDensity(backgroundPP);
1901
1902 backgroundExternal = GetExternalRho();
1903 if(fNoExternalBackground)
1904 backgroundExternal = 0;
1905
1906 if(fBackgroundForJetProfile==0)
1907 backgroundJetProfile = backgroundExternal;
1908 else if(fBackgroundForJetProfile==1)
1909 backgroundJetProfile = backgroundKTImprovedCMS;
1910 else if(fBackgroundForJetProfile==2)
1911 backgroundJetProfile = backgroundKTCMS;
1912 else if(fBackgroundForJetProfile==3)
1913 backgroundJetProfile = backgroundPP;
1914 else if(fBackgroundForJetProfile==4)
1915 backgroundJetProfile = backgroundTRCone06;
1916 else if(fBackgroundForJetProfile==5)
1917 backgroundJetProfile = 0;
8628b70c 1918
1919 #ifdef DEBUGMODE
efb9b161 1920 AliInfo("Calculate()::Centrality&SignalJets&Background-Calculation done.");
8628b70c 1921 #endif
8628b70c 1922
013103f5 1923 // ##################### Fill event QA histograms
0cb49d99 1924
013103f5 1925 Int_t trackCountAcc = 0;
1926 Int_t nTracks = fTrackArray->GetEntries();
1927 for (Int_t i = 0; i < nTracks; i++)
1928 {
1929 AliVTrack* track = static_cast<AliVTrack*>(fTrackArray->At(i));
0cb49d99 1930
013103f5 1931 if (track != 0)
1932 if (track->Pt() >= fMinTrackPt)
b95d0245 1933 {
013103f5 1934 FillHistogram("hTrackPhiEta", track->Phi(),track->Eta(), 1);
1935 FillHistogram("hTrackPtPhiEta", track->Phi(),track->Eta(), track->Pt());
b95d0245 1936 }
b95d0245 1937
013103f5 1938 if (IsTrackInAcceptance(track))
2a82f637 1939 {
013103f5 1940 FillHistogram("hTrackPt", track->Pt(), centralityPercentile);
3c6bb668 1941
013103f5 1942 if(track->Eta() >= 0)
1943 FillHistogram("hTrackPtPosEta", track->Pt(), centralityPercentile);
1944 else
1945 FillHistogram("hTrackPtNegEta", track->Pt(), centralityPercentile);
1946
1947 FillHistogram("hTrackEta", track->Eta(), centralityPercentile);
1948 FillHistogram("hTrackPhi", track->Phi());
1949
1950 if(static_cast<AliPicoTrack*>(track))
3c6bb668 1951 {
013103f5 1952 FillHistogram("hTrackPhiTrackType", track->Phi(), (static_cast<AliPicoTrack*>(track))->GetTrackType());
3c6bb668 1953 FillHistogram("hTrackPtTrackType", track->Pt(), (static_cast<AliPicoTrack*>(track))->GetTrackType());
1954 }
2a82f637 1955
013103f5 1956 for(Int_t j=0;j<20;j++)
1957 if(track->Pt() > j)
1958 FillHistogram("hTrackPhiPtCut", track->Phi(), track->Pt());
1959
1960 FillHistogram("hTrackCharge", track->Charge());
1961 trackCountAcc++;
2a82f637 1962 }
b95d0245 1963 }
013103f5 1964 FillHistogram("hTrackCountAcc", trackCountAcc, centralityPercentile);
1965
b95d0245 1966 #ifdef DEBUGMODE
1967 AliInfo("Calculate()::QA done.");
1968 #endif
1969
013103f5 1970 // ##################### Fill jet histograms
1971
1972 FillHistogram("hJetCountAll", fJetArray->GetEntries());
1973 FillHistogram("hJetCountAccepted", fNumberSignalJets);
1974 FillHistogram("hJetCount", fJetArray->GetEntries(), fNumberSignalJets);
1975 if (fFirstLeadingJet)
1976 {
1977 FillHistogram("hLeadingJetPt", fFirstLeadingJet->Pt());
1978 FillHistogram("hCorrectedLeadingJetPt", GetCorrectedJetPt(fFirstLeadingJet,backgroundExternal));
1979 }
1980 if (fSecondLeadingJet)
1981 {
1982 FillHistogram("hSecondLeadingJetPt", fSecondLeadingJet->Pt());
1983 FillHistogram("hCorrectedSecondLeadingJetPt", GetCorrectedJetPt(fSecondLeadingJet,backgroundExternal));
1984 }
8628b70c 1985
013103f5 1986 for (Int_t i = 0; i<fJetArray->GetEntries(); i++)
8628b70c 1987 {
013103f5 1988 AliEmcalJet* tmpJet = static_cast<AliEmcalJet*>(fJetArray->At(i));
1989 if (!tmpJet)
1990 continue;
1991
1992 // ### JETS BEFORE ANY CUTS
1993 if (tmpJet->Area() >= fMinJetArea)
1994 FillHistogram("hRawJetPhiEta", tmpJet->Phi(), tmpJet->Eta());
1995 if ((tmpJet->Eta() >= fMinJetEta) && (tmpJet->Eta() < fMaxJetEta))
1996 FillHistogram("hRawJetArea", tmpJet->Area());
1997
1998 FillHistogram("hJetPtCutStages", tmpJet->Pt(), 0.5);
1999 if ((tmpJet->Eta() >= fMinJetEta) && (tmpJet->Eta() < fMaxJetEta))
8628b70c 2000 {
013103f5 2001 FillHistogram("hJetPtCutStages", tmpJet->Pt(), 1.5);
2002 if (tmpJet->Pt() >= fMinJetPt)
da40b4cb 2003 {
013103f5 2004 FillHistogram("hJetPtCutStages", tmpJet->Pt(), 2.5);
2005 if (tmpJet->Area() >= fMinJetArea)
da40b4cb 2006 {
013103f5 2007 FillHistogram("hJetPtCutStages", tmpJet->Pt(), 3.5);
da40b4cb 2008 }
e8df4140 2009 }
013103f5 2010 }
c2b0976c 2011
013103f5 2012 // ### JETS AFTER CUTS
2013 if(IsSignalJetInAcceptance(tmpJet))
2014 {
2015 // Background corrected jet spectra
32a2b258 2016 FillHistogram("hJetPtNoBgrdSubtracted", GetCorrectedJetPt(tmpJet, 0.0), centralityPercentile);
013103f5 2017 FillHistogram("hJetPtBgrdSubtractedExternal", GetCorrectedJetPt(tmpJet, backgroundExternal), centralityPercentile);
2018 FillHistogram("hJetPtBgrdSubtractedKTImprovedCMS", GetCorrectedJetPt(tmpJet, backgroundKTImprovedCMS), centralityPercentile);
2019 FillHistogram("hJetPtBgrdSubtractedPP", GetCorrectedJetPt(tmpJet, backgroundPP), centralityPercentile);
2020 if(tmpJet->Phi() >= TMath::Pi())
2021 FillHistogram("hJetPtBgrdSubtractedExternal_Phi2", GetCorrectedJetPt(tmpJet, backgroundExternal), centralityPercentile);
2022 else
2023 FillHistogram("hJetPtBgrdSubtractedExternal_Phi1", GetCorrectedJetPt(tmpJet, backgroundExternal), centralityPercentile);
2024 FillHistogram("hJetPtBgrdSubtractedTR", GetCorrectedJetPt(tmpJet, backgroundTRCone06), centralityPercentile);
2025 FillHistogram("hJetPtBgrdSubtractedKTPbPb", GetCorrectedJetPt(tmpJet, backgroundKTPbPb), centralityPercentile);
2026 FillHistogram("hJetPtBgrdSubtractedKTPbPbWithGhosts", GetCorrectedJetPt(tmpJet, backgroundKTPbPbWithGhosts), centralityPercentile);
2027 FillHistogram("hJetPtBgrdSubtractedKTCMS", GetCorrectedJetPt(tmpJet, backgroundKTCMS), centralityPercentile);
2028 FillHistogram("hJetPtBgrdSubtractedKTMean", GetCorrectedJetPt(tmpJet, backgroundKTMean), centralityPercentile);
2029 FillHistogram("hJetPtBgrdSubtractedKTTrackLike", GetCorrectedJetPt(tmpJet, backgroundKTTrackLike), centralityPercentile);
2030
2031 FillHistogram("hJetPtSubtractedRhoExternal", tmpJet->Pt(), centralityPercentile, tmpJet->Pt() - GetCorrectedJetPt(tmpJet, backgroundExternal));
2032 FillHistogram("hJetPtSubtractedRhoKTImprovedCMS", tmpJet->Pt(), centralityPercentile, tmpJet->Pt() - GetCorrectedJetPt(tmpJet, backgroundKTImprovedCMS));
2033 FillHistogram("hJetPtSubtractedRhoPP", tmpJet->Pt(), centralityPercentile, tmpJet->Pt() - GetCorrectedJetPt(tmpJet, backgroundPP));
b896743a 2034 for(Int_t j=0; j<fRandConeNumber; j++)
2035 FillHistogram("hDeltaPtExternalBgrdVsPt", GetDeltaPt(backgroundExternal), GetCorrectedJetPt(tmpJet, backgroundExternal));
2036 FillHistogram("hKTBackgroundExternalVsPt", backgroundExternal, GetCorrectedJetPt(tmpJet, backgroundExternal));
013103f5 2037
a8b7cbf6 2038 // ###### CONSTITUENT ANALYSIS
013103f5 2039
90297a16 2040 if(fAnalyzeJetConstituents)
a8b7cbf6 2041 {
90297a16 2042 THnF* tmpConstituentHist = static_cast<THnF*>(fCurrentOutputList->FindObject("hJetConstituents"));
2043 THnF* tmpConstituentDistanceHist = static_cast<THnF*>(fCurrentOutputList->FindObject("hJetConstituentDistance"));
a8b7cbf6 2044
90297a16 2045 for(Int_t j=0; j<tmpJet->GetNumberOfTracks(); j++)
2046 {
2047 AliVParticle* tmpTrack = tmpJet->TrackAt(j, fTrackArray);
2048 // Define random cone
2049 Double_t tmpRandConeEta = fMinJetEta + fRandom->Rndm()*TMath::Abs(fMaxJetEta-fMinJetEta);
2050 Double_t tmpRandConePhi = fRandom->Rndm()*TMath::TwoPi();
a8b7cbf6 2051
90297a16 2052 Double_t tmpPConeEta = tmpJet->Eta();
2053 Double_t tmpPConePhi = tmpJet->Phi() + TMath::Pi();
a8b7cbf6 2054
90297a16 2055 if(tmpPConePhi>=TMath::TwoPi())
2056 tmpPConePhi = tmpPConePhi - TMath::TwoPi();
a8b7cbf6 2057
90297a16 2058 Double_t tmpRCcount = GetConeConstituentCount(tmpRandConeEta, tmpRandConePhi, fSignalJetRadius);
2059 Double_t tmpPCcount = GetConeConstituentCount(tmpPConeEta, tmpPConePhi, fSignalJetRadius);
a8b7cbf6 2060
90297a16 2061 Double_t tmpDistance = TMath::Sqrt( (tmpJet->Eta()-tmpTrack->Eta())*(tmpJet->Eta()-tmpTrack->Eta())
2062 + (tmpJet->Phi()-tmpTrack->Phi())*(tmpJet->Phi()-tmpTrack->Phi()) ); // distance between jet axis and track
a8b7cbf6 2063
90297a16 2064 Double_t tmpVec1[5] = {tmpJet->Pt(), tmpTrack->Pt(), static_cast<Double_t>(tmpJet->GetNumberOfTracks()), tmpRCcount, tmpPCcount};
2065 Double_t tmpVec2[4] = {tmpJet->Pt(), tmpTrack->Pt(), static_cast<Double_t>(tmpJet->GetNumberOfTracks()), tmpDistance};
a8b7cbf6 2066
a8b7cbf6 2067
90297a16 2068 tmpConstituentHist->Fill(tmpVec1);
2069 tmpConstituentDistanceHist->Fill(tmpVec2);
2070
2071 FillHistogram("hJetConstituentPtVsJetPt", tmpTrack->Pt(), tmpJet->Pt());
2072 }
2073 }
2074
a8b7cbf6 2075 FillHistogram("hJetPtVsConstituentCount", tmpJet->Pt(),tmpJet->GetNumberOfTracks());
013103f5 2076
3691a11a 2077 // Leading track biased jets
2078 Double_t leadingTrackPt = 0.0;
2079 for(Int_t j=0; j<tmpJet->GetNumberOfTracks(); j++)
2080 {
2081 if(tmpJet->TrackAt(j, fTrackArray)->Pt() > leadingTrackPt)
2082 leadingTrackPt = tmpJet->TrackAt(j, fTrackArray)->Pt();
2083 }
2084
2085 if(leadingTrackPt >= 10)
2086 FillHistogram("hJetPtBgrdSubtractedKTImprovedCMS_Biased_10GeV", GetCorrectedJetPt(tmpJet, backgroundKTImprovedCMS), centralityPercentile);
2087 else if(leadingTrackPt >= 5)
2088 FillHistogram("hJetPtBgrdSubtractedKTImprovedCMS_Biased_5GeV", GetCorrectedJetPt(tmpJet, backgroundKTImprovedCMS), centralityPercentile);
2089 else if(leadingTrackPt >= 2)
2090 FillHistogram("hJetPtBgrdSubtractedKTImprovedCMS_Biased_2GeV", GetCorrectedJetPt(tmpJet, backgroundKTImprovedCMS), centralityPercentile);
2091
32a2b258 2092
2093 // Fill jet constituent histograms
2094 for(Int_t j=0; j<tmpJet->GetNumberOfTracks(); j++)
2095 {
2096 FillHistogram("hJetConstituentPt0GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2097 if(tmpJet->Pt() >= 1.0)
2098 FillHistogram("hJetConstituentPt1GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2099 if(tmpJet->Pt() >= 2.0)
2100 FillHistogram("hJetConstituentPt2GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2101 if(tmpJet->Pt() >= 3.0)
2102 FillHistogram("hJetConstituentPt3GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2103 if(tmpJet->Pt() >= 4.0)
2104 FillHistogram("hJetConstituentPt4GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2105 if(tmpJet->Pt() >= 5.0)
2106 FillHistogram("hJetConstituentPt5GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2107 if(tmpJet->Pt() >= 7.0)
2108 FillHistogram("hJetConstituentPt7GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2109 if(tmpJet->Pt() >= 10.0)
2110 FillHistogram("hJetConstituentPt10GeV", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
2111 }
2112
013103f5 2113 if(tmpJet->Pt() >= 5.0)
0cb49d99 2114 {
013103f5 2115 Double_t lowestTrackPt = 1e99;
2116 Double_t highestTrackPt = 0.0;
2117 for(Int_t j=0; j<tmpJet->GetNumberOfTracks(); j++)
2a82f637 2118 {
277217ca 2119// FillHistogram("hJetConstituentPt", tmpJet->TrackAt(j, fTrackArray)->Pt(), centralityPercentile);
013103f5 2120 // Find the lowest pT of a track in the jet
2121 if (tmpJet->TrackAt(j, fTrackArray)->Pt() < lowestTrackPt)
2122 lowestTrackPt = tmpJet->TrackAt(j, fTrackArray)->Pt();
2123 if (tmpJet->TrackAt(j, fTrackArray)->Pt() > highestTrackPt)
2124 highestTrackPt = tmpJet->TrackAt(j, fTrackArray)->Pt();
2a82f637 2125 }
013103f5 2126 FillHistogram("hJetArea", tmpJet->Area(), tmpJet->Pt());
2127 // Signal jet vs. signal jet - "Combinatorial"
2128 for (Int_t j = 0; j<fJetArray->GetEntries(); j++)
0cb49d99 2129 {
013103f5 2130 AliEmcalJet* tmpJet2 = static_cast<AliEmcalJet*>(fJetArray->At(j));
2131 if (!tmpJet2)
2132 continue;
2133 if(tmpJet2->Pt() >= 5.0)
2134 FillHistogram("hJetDeltaPhi", GetDeltaPhi(tmpJet->Phi(), tmpJet2->Phi()));
2a82f637 2135 }
2136
013103f5 2137 FillHistogram("hJetPhiEta", tmpJet->Phi(),tmpJet->Eta());
2138 FillHistogram("hJetPtPhiEta", tmpJet->Phi(),tmpJet->Eta(),tmpJet->Pt());
2139 FillHistogram("hJetEta", tmpJet->Eta(), centralityPercentile);
2a82f637 2140
013103f5 2141 if(lowestTrackPt>=2.0)
2142 FillHistogram("hJetEta2GeVTracks", tmpJet->Eta(), centralityPercentile);
2143 if(lowestTrackPt>=4.0)
2144 FillHistogram("hJetEta4GeVTracks", tmpJet->Eta(), centralityPercentile);
088fbc16 2145 }
12eb4ac1 2146 }
013103f5 2147 } // end of jet loop
8628b70c 2148
013103f5 2149 if(fAnalyzeJetProfile)
2150 CreateJetProfilePlots(backgroundJetProfile);
8628b70c 2151
2152 #ifdef DEBUGMODE
efb9b161 2153 AliInfo("Calculate()::Jets done.");
8628b70c 2154 #endif
c2b0976c 2155
013103f5 2156 // ##################### Fill background plots
2157
2158 FillHistogram("hKTBackgroundExternal", backgroundExternal, centralityPercentile);
2159 if(fFirstLeadingJet && (fFirstLeadingJet->Pt()>=20.))
2160 FillHistogram("hKTBackgroundExternal20GeV", backgroundExternal, centralityPercentile);
2161
2162 FillHistogram("hKTBackgroundImprovedCMS", backgroundKTImprovedCMS, centralityPercentile);
2163 FillHistogram("hPPBackground", backgroundPP, centralityPercentile);
2164 FillHistogram("hKTBackgroundPbPb", backgroundKTPbPb, centralityPercentile);
2165 FillHistogram("hKTBackgroundPbPbWithGhosts", backgroundKTPbPbWithGhosts, centralityPercentile);
2166 FillHistogram("hKTBackgroundCMS", backgroundKTCMS, centralityPercentile);
2167 FillHistogram("hKTBackgroundMean", backgroundKTMean, centralityPercentile);
2168 FillHistogram("hKTBackgroundTrackLike", backgroundKTTrackLike, centralityPercentile);
2169 FillHistogram("hTRBackgroundNoExcl", backgroundTRNoExcl, centralityPercentile);
2170 FillHistogram("hTRBackgroundCone02", backgroundTRCone02, centralityPercentile);
2171 FillHistogram("hTRBackgroundCone04", backgroundTRCone04, centralityPercentile);
2172 FillHistogram("hTRBackgroundCone06", backgroundTRCone06, centralityPercentile);
2173 FillHistogram("hTRBackgroundCone08", backgroundTRCone08, centralityPercentile);
2174 FillHistogram("hTRBackgroundExact", backgroundTRExact, centralityPercentile);
2175
2176 // Calculate the delta pt
b896743a 2177 for(Int_t i=0; i<fRandConeNumber; i++)
2178 {
2179 Double_t tmpRatio =1./10.;
2180 if(fNumberSignalJets)
2181 tmpRatio =1./fNumberSignalJets;
2182
2183 Double_t tmpDeltaPtNoBackground = GetDeltaPt(0.0);
2184 Double_t tmpDeltaPtExternalBgrd = GetDeltaPt(backgroundExternal);
2185 Double_t tmpDeltaPtExternalBgrdPartialExclusion = GetDeltaPt(backgroundExternal, tmpRatio);
2186 Double_t tmpDeltaPtPP = GetDeltaPt(backgroundPP);
2187 Double_t tmpDeltaPtKTImprovedCMS = GetDeltaPt(backgroundKTImprovedCMS);
2188
2189 Double_t tmpDeltaPtKTPbPb = 0;
2190 Double_t tmpDeltaPtKTPbPbWithGhosts = 0;
2191 Double_t tmpDeltaPtKTCMS = 0;
2192 Double_t tmpDeltaPtKTMean = 0;
2193 Double_t tmpDeltaPtKTTrackLike = 0;
2194 Double_t tmpDeltaPtTR = 0;
2195
2196 tmpDeltaPtKTPbPb = GetDeltaPt(backgroundKTPbPb);
2197 tmpDeltaPtKTPbPbWithGhosts = GetDeltaPt(backgroundKTPbPbWithGhosts);
2198 tmpDeltaPtKTCMS = GetDeltaPt(backgroundKTCMS);
2199 tmpDeltaPtKTMean = GetDeltaPt(backgroundKTMean);
2200 tmpDeltaPtKTTrackLike = GetDeltaPt(backgroundKTTrackLike);
2201 tmpDeltaPtTR = GetDeltaPt(backgroundTRCone06);
2202
2203
2204 // If valid, fill the delta pt histograms
2205
2206 if(tmpDeltaPtExternalBgrd > -10000.0)
2207 FillHistogram("hDeltaPtExternalBgrd", tmpDeltaPtExternalBgrd, centralityPercentile);
2208 if(tmpDeltaPtKTImprovedCMS > -10000.0)
2209 FillHistogram("hDeltaPtKTImprovedCMS", tmpDeltaPtKTImprovedCMS, centralityPercentile);
2210 if(tmpDeltaPtExternalBgrdPartialExclusion > -10000.0)
2211 FillHistogram("hDeltaPtExternalBgrdPartialExclusion", tmpDeltaPtExternalBgrdPartialExclusion, centralityPercentile);
2212 if(tmpDeltaPtPP > -10000.0)
2213 FillHistogram("hDeltaPtPP", tmpDeltaPtPP, centralityPercentile);
2214
2215 if(tmpDeltaPtNoBackground > -10000.0)
2216 FillHistogram("hDeltaPtNoBackground", tmpDeltaPtNoBackground, centralityPercentile);
2217
2218 if(tmpDeltaPtKTPbPb > -10000.0)
2219 FillHistogram("hDeltaPtKTPbPb", tmpDeltaPtKTPbPb, centralityPercentile);
2220 if(tmpDeltaPtKTPbPbWithGhosts > -10000.0)
2221 FillHistogram("hDeltaPtKTPbPbWithGhosts", tmpDeltaPtKTPbPbWithGhosts, centralityPercentile);
2222 if(tmpDeltaPtKTCMS > -10000.0)
2223 FillHistogram("hDeltaPtKTCMS", tmpDeltaPtKTCMS, centralityPercentile);
2224 if(tmpDeltaPtKTMean > -10000.0)
2225 FillHistogram("hDeltaPtKTMean", tmpDeltaPtKTMean, centralityPercentile);
2226 if(tmpDeltaPtKTTrackLike > -10000.0)
2227 FillHistogram("hDeltaPtKTTrackLike", tmpDeltaPtKTTrackLike, centralityPercentile);
2228 if(tmpDeltaPtTR > -10000.0)
2229 FillHistogram("hDeltaPtTR", tmpDeltaPtTR, centralityPercentile);
2230 }
392aa819 2231
8628b70c 2232 #ifdef DEBUGMODE
efb9b161 2233 AliInfo("Calculate()::Background done.");
8628b70c 2234 #endif
12eb4ac1 2235
0983dd5b 2236 #ifdef DEBUGMODE
2237 AliInfo("Calculate() done.");
2238 #endif
12eb4ac1 2239}
8628b70c 2240
2241//________________________________________________________________________
392aa819 2242Bool_t AliAnalysisTaskChargedJetsPA::UserNotify()
8628b70c 2243{
013103f5 2244 return kTRUE;
2245}
8628b70c 2246
013103f5 2247//________________________________________________________________________
2248void AliAnalysisTaskChargedJetsPA::CreateJetProfilePlots(Double_t bgrd)
2249{
2250 for (Int_t i = 0; i<fJetArray->GetEntries(); i++)
8628b70c 2251 {
013103f5 2252 AliEmcalJet* tmpJet = static_cast<AliEmcalJet*>(fJetArray->At(i));
2253 if (!tmpJet)
2254 continue;
2255 if(!IsSignalJetInAcceptance(tmpJet))
2256 continue;
8628b70c 2257
013103f5 2258 SetCurrentOutputList(1);
2259 // Jet profile analysis
2260 if(TMath::Abs(tmpJet->Eta()) <= 0.3)
2261 {
2262 if(tmpJet->Pt()>=70.0)
2263 {
2264 FillHistogram("hJetProfile70GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2265 FillHistogram("hJetProfile70GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2266 FillHistogram("hJetProfile70GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2267 FillHistogram("hJetProfile70GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2268 FillHistogram("hJetProfile70GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2269 FillHistogram("hJetProfile70GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2270 FillHistogram("hJetProfile70GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2271 FillHistogram("hJetProfile70GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2272 FillHistogram("hJetProfile70GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2273 FillHistogram("hJetProfile70GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2274 FillHistogram("hJetProfile70GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2275 FillHistogram("hJetProfile70GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
8628b70c 2276 }
013103f5 2277 else if(GetCorrectedJetPt(tmpJet, bgrd)>=60.0)
2278 {
2279 FillHistogram("hJetProfile60GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2280 FillHistogram("hJetProfile60GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2281 FillHistogram("hJetProfile60GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2282 FillHistogram("hJetProfile60GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2283 FillHistogram("hJetProfile60GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2284 FillHistogram("hJetProfile60GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2285 FillHistogram("hJetProfile60GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2286 FillHistogram("hJetProfile60GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2287 FillHistogram("hJetProfile60GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2288 FillHistogram("hJetProfile60GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2289 FillHistogram("hJetProfile60GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2290 FillHistogram("hJetProfile60GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
8628b70c 2291 }
013103f5 2292 else if(GetCorrectedJetPt(tmpJet, bgrd)>=50.0)
2293 {
2294 FillHistogram("hJetProfile50GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2295 FillHistogram("hJetProfile50GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2296 FillHistogram("hJetProfile50GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2297 FillHistogram("hJetProfile50GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2298 FillHistogram("hJetProfile50GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2299 FillHistogram("hJetProfile50GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2300 FillHistogram("hJetProfile50GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2301 FillHistogram("hJetProfile50GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2302 FillHistogram("hJetProfile50GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2303 FillHistogram("hJetProfile50GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2304 FillHistogram("hJetProfile50GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2305 FillHistogram("hJetProfile50GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2306 }
2307 else if(GetCorrectedJetPt(tmpJet, bgrd)>=40.0)
2308 {
2309 FillHistogram("hJetProfile40GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2310 FillHistogram("hJetProfile40GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2311 FillHistogram("hJetProfile40GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2312 FillHistogram("hJetProfile40GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2313 FillHistogram("hJetProfile40GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2314 FillHistogram("hJetProfile40GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2315 FillHistogram("hJetProfile40GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2316 FillHistogram("hJetProfile40GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2317 FillHistogram("hJetProfile40GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2318 FillHistogram("hJetProfile40GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2319 FillHistogram("hJetProfile40GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2320 FillHistogram("hJetProfile40GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2321 }
2322 else if(GetCorrectedJetPt(tmpJet, bgrd)>=30.0)
2323 {
2324 FillHistogram("hJetProfile30GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2325 FillHistogram("hJetProfile30GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2326 FillHistogram("hJetProfile30GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2327 FillHistogram("hJetProfile30GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2328 FillHistogram("hJetProfile30GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2329 FillHistogram("hJetProfile30GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2330 FillHistogram("hJetProfile30GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2331 FillHistogram("hJetProfile30GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2332 FillHistogram("hJetProfile30GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2333 FillHistogram("hJetProfile30GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2334 FillHistogram("hJetProfile30GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2335 FillHistogram("hJetProfile30GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2336 }
2337 else if(GetCorrectedJetPt(tmpJet, bgrd)>=20.0)
2338 {
2339 FillHistogram("hJetProfile20GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2340 FillHistogram("hJetProfile20GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2341 FillHistogram("hJetProfile20GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2342 FillHistogram("hJetProfile20GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2343 FillHistogram("hJetProfile20GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2344 FillHistogram("hJetProfile20GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2345 FillHistogram("hJetProfile20GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2346 FillHistogram("hJetProfile20GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2347 FillHistogram("hJetProfile20GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2348 FillHistogram("hJetProfile20GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2349 FillHistogram("hJetProfile20GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2350 FillHistogram("hJetProfile20GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2351 }
2352 else if(GetCorrectedJetPt(tmpJet, bgrd)>=10.0)
2353 {
2354 FillHistogram("hJetProfile10GeV", 0.05-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.05, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2355 FillHistogram("hJetProfile10GeV", 0.10-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.10, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2356 FillHistogram("hJetProfile10GeV", 0.15-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.15, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2357 FillHistogram("hJetProfile10GeV", 0.20-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.20, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2358 FillHistogram("hJetProfile10GeV", 0.25-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.25, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2359 FillHistogram("hJetProfile10GeV", 0.30-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.30, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2360 FillHistogram("hJetProfile10GeV", 0.35-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.35, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2361 FillHistogram("hJetProfile10GeV", 0.40-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.40, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2362 FillHistogram("hJetProfile10GeV", 0.45-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.45, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2363 FillHistogram("hJetProfile10GeV", 0.50-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.50, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2364 FillHistogram("hJetProfile10GeV", 0.55-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.55, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
2365 FillHistogram("hJetProfile10GeV", 0.60-0.05/2, (GetCorrectedConePt(tmpJet->Eta(), tmpJet->Phi(), 0.60, bgrd))/GetCorrectedJetPt(tmpJet, bgrd));
8628b70c 2366 }
8628b70c 2367 }
013103f5 2368 SetCurrentOutputList(0);
8628b70c 2369 }
8628b70c 2370}
2371
12eb4ac1 2372//________________________________________________________________________
2373inline Double_t AliAnalysisTaskChargedJetsPA::EtaToTheta(Double_t arg)
2374 {return 2.*atan(exp(-arg));}
2375//________________________________________________________________________
2376inline Double_t AliAnalysisTaskChargedJetsPA::ThetaToEta(Double_t arg)
2377{
2378 if ((arg > TMath::Pi()) || (arg < 0.0))
2379 {
2380 AliError(Form("ThetaToEta got wrong input! (%f)", arg));
2381 return 0.0;
2382 }
2383 return -log(tan(arg/2.));
2384}
2385//________________________________________________________________________
2386inline Double_t AliAnalysisTaskChargedJetsPA::GetDeltaPhi(Double_t phi1, Double_t phi2)
2387 {return min(TMath::Abs(phi1-phi2),TMath::TwoPi() - TMath::Abs(phi1-phi2));}
2388
2389//________________________________________________________________________
2390Double_t AliAnalysisTaskChargedJetsPA::MCGetOverlapCircleRectancle(Double_t cPosX, Double_t cPosY, Double_t cRadius, Double_t rPosXmin, Double_t rPosXmax, Double_t rPosYmin, Double_t rPosYmax)
2391{
2392 const Int_t kTests = 1000;
2393 Int_t hits = 0;
2394 TRandom3 randomGen(0);
2395
2396 // Loop over kTests-many tests
2397 for (Int_t i=0; i<kTests; i++)
2398 {
2399 //Choose random position in rectangle for the tester
2400 Double_t tmpTestX = randomGen.Uniform(rPosXmin, rPosXmax);
2401 Double_t tmpTestY = randomGen.Uniform(rPosYmin, rPosYmax);
2402
2403 //Check, if tester is in circle. If yes, increment circle counter.
2404 Double_t tmpDistance = TMath::Sqrt( (tmpTestX - cPosX)*(tmpTestX - cPosX) + (tmpTestY - cPosY)*(tmpTestY - cPosY) );
2405 if(tmpDistance < cRadius)
2406 hits++;
2407 }
2408
2409 // return ratio
2410 return (static_cast<Double_t>(hits)/static_cast<Double_t>(kTests));
2411}
2412
b95d0245 2413//________________________________________________________________________
2414Double_t AliAnalysisTaskChargedJetsPA::MCGetOverlapMultipleCirclesRectancle(Int_t numCircles, std::vector<Double_t> cPosX, std::vector<Double_t> cPosY, Double_t cRadius, Double_t rPosXmin, Double_t rPosXmax, Double_t rPosYmin, Double_t rPosYmax)
2415{
2416
2417 const Int_t kTests = 1000;
2418 Int_t hits = 0;
2419 TRandom3 randomGen(0);
2420
2421 // Loop over kTests-many tests
2422 for (Int_t i=0; i<kTests; i++)
2423 {
2424 //Choose random position in rectangle for the tester
2425 Double_t tmpTestX = randomGen.Uniform(rPosXmin, rPosXmax);
2426 Double_t tmpTestY = randomGen.Uniform(rPosYmin, rPosYmax);
2427
2428 //Check, if tester is in one of the circles. If yes, increment circle counter.
2429 for(Int_t j=0; j<numCircles; j++)
2430 {
2431 Double_t tmpDistance = TMath::Sqrt( (tmpTestX - cPosX[j])*(tmpTestX - cPosX[j]) + (tmpTestY - cPosY[j])*(tmpTestY - cPosY[j]) );
2432 if(tmpDistance < cRadius)
2433 {
2434 hits++;
2435 break;
2436 }
2437 }
2438 }
2439
2440 // return ratio
2441 return (static_cast<Double_t>(hits)/static_cast<Double_t>(kTests));
2442
2443}
2444
8628b70c 2445//________________________________________________________________________
2446inline void AliAnalysisTaskChargedJetsPA::FillHistogram(const char * key, Double_t x)
2447{
013103f5 2448 TH1* tmpHist = static_cast<TH1*>(fCurrentOutputList->FindObject(GetHistoName(key)));
8628b70c 2449 if(!tmpHist)
2450 {
392aa819 2451 AliError(Form("Cannot find histogram <%s> ",key)) ;
8628b70c 2452 return;
2453 }
2454
2455 tmpHist->Fill(x);
2456}
2457
2458//________________________________________________________________________
2459inline void AliAnalysisTaskChargedJetsPA::FillHistogram(const char * key, Double_t x, Double_t y)
2460{
013103f5 2461 TH1* tmpHist = static_cast<TH1*>(fCurrentOutputList->FindObject(GetHistoName(key)));
8628b70c 2462 if(!tmpHist)
2463 {
392aa819 2464 AliError(Form("Cannot find histogram <%s> ",key));
8628b70c 2465 return;
2466 }
2467
2468 if (tmpHist->IsA()->GetBaseClass("TH1"))
2469 static_cast<TH1*>(tmpHist)->Fill(x,y); // Fill x with y
2470 else if (tmpHist->IsA()->GetBaseClass("TH2"))
2471 static_cast<TH2*>(tmpHist)->Fill(x,y); // Fill x,y with 1
2472}
2473
2474//________________________________________________________________________
2475inline void AliAnalysisTaskChargedJetsPA::FillHistogram(const char * key, Double_t x, Double_t y, Double_t add)
2476{
013103f5 2477 TH2* tmpHist = static_cast<TH2*>(fCurrentOutputList->FindObject(GetHistoName(key)));
8628b70c 2478 if(!tmpHist)
2479 {
392aa819 2480 AliError(Form("Cannot find histogram <%s> ",key));
8628b70c 2481 return;
2482 }
2483
2484 tmpHist->Fill(x,y,add);
2485}
013103f5 2486
2487//________________________________________________________________________
2488inline void AliAnalysisTaskChargedJetsPA::FillCutHistogram(const char * key, Double_t cut, Double_t pT, Double_t eta, Double_t phi, Int_t isAdditionalTrack)
2489{
2490 THnF* tmpHist = static_cast<THnF*>(fCurrentOutputList->FindObject(GetHistoName(key)));
2491 if(!tmpHist)
2492 {
2493 AliError(Form("Cannot find histogram <%s> ",key));
2494 return;
2495 }
2496
2497 Double_t tmpVec[5] = {cut, pT, eta, phi, static_cast<Double_t>(isAdditionalTrack)};
2498 tmpHist->Fill(tmpVec);
2499}
2500
8628b70c 2501//________________________________________________________________________
2502template <class T> T* AliAnalysisTaskChargedJetsPA::AddHistogram1D(const char* name, const char* title, const char* options, Int_t xBins, Double_t xMin, Double_t xMax, const char* xTitle, const char* yTitle)
2503{
2504 T* tmpHist = new T(GetHistoName(name), GetHistoName(title), xBins, xMin, xMax);
2505
2506 tmpHist->GetXaxis()->SetTitle(xTitle);
2507 tmpHist->GetYaxis()->SetTitle(yTitle);
2508 tmpHist->SetOption(options);
2509 tmpHist->SetMarkerStyle(kFullCircle);
2510 tmpHist->Sumw2();
2511
013103f5 2512 fCurrentOutputList->Add(tmpHist);
2513
8628b70c 2514 return tmpHist;
2515}
2516
2517//________________________________________________________________________
2518template <class T> T* AliAnalysisTaskChargedJetsPA::AddHistogram2D(const char* name, const char* title, const char* options, Int_t xBins, Double_t xMin, Double_t xMax, Int_t yBins, Double_t yMin, Double_t yMax, const char* xTitle, const char* yTitle, const char* zTitle)
2519{
2520 T* tmpHist = new T(GetHistoName(name), GetHistoName(title), xBins, xMin, xMax, yBins, yMin, yMax);
2521 tmpHist->GetXaxis()->SetTitle(xTitle);
2522 tmpHist->GetYaxis()->SetTitle(yTitle);
2523 tmpHist->GetZaxis()->SetTitle(zTitle);
2524 tmpHist->SetOption(options);
2525 tmpHist->SetMarkerStyle(kFullCircle);
2526 tmpHist->Sumw2();
2527
013103f5 2528 fCurrentOutputList->Add(tmpHist);
8628b70c 2529
2530 return tmpHist;
2531}
2532
013103f5 2533//________________________________________________________________________
2534THnF* AliAnalysisTaskChargedJetsPA::AddCutHistogram(const char* name, const char* title, const char* cutName, Int_t nBins, Double_t xMin, Double_t xMax)
2535{
2536 // Cut, pT, eta, phi, type
2537 Int_t bins [5] = { nBins, 100, 20, 18, 2};
2538 Double_t minEdges[5] = { xMin, 0.1, -1, 0, -0.5};
2539 Double_t maxEdges[5] = { xMax, 40, +1, 2*TMath::Pi(), 1.5};
2540
2541 TString axisName[5] = {cutName,"#it{p}_{T}","#eta","#phi","Track type"};
2542 TString axisTitle[5] = {cutName,"#it{p}_{T}","#eta","#phi","Track type"};
2543
2544 THnF * histo = new THnF(name, title, 5, bins, minEdges, maxEdges);
2545 BinLogAxis(histo, 1);
013103f5 2546
2547 for (Int_t iaxis=0; iaxis<5;iaxis++){
2548 histo->GetAxis(iaxis)->SetName(axisName[iaxis]);
2549 histo->GetAxis(iaxis)->SetTitle(axisTitle[iaxis]);
2550 }
2551
2552 fCurrentOutputList->Add(histo);
2553 return histo;
2554}
2555
2556//________________________________________________________________________
2557void AliAnalysisTaskChargedJetsPA::BinLogAxis(const THn *h, Int_t axisNumber)
2558{
2559 // Method for the correct logarithmic binning of histograms
2560 TAxis *axis = h->GetAxis(axisNumber);
2561 int bins = axis->GetNbins();
2562
2563 Double_t from = axis->GetXmin();
2564 Double_t to = axis->GetXmax();
2565 Double_t *newBins = new Double_t[bins + 1];
2566
2567 newBins[0] = from;
2568 Double_t factor = pow(to/from, 1./bins);
2569
2570 for (int i = 1; i <= bins; i++) {
2571 newBins[i] = factor * newBins[i-1];
2572 }
2573 axis->Set(bins, newBins);
2574 delete [] newBins;
2575}
2576
8628b70c 2577//________________________________________________________________________
2578void AliAnalysisTaskChargedJetsPA::Terminate(Option_t *)
2579{
0779c72f 2580 if(fNoTerminate)
2581 return;
2582
013103f5 2583 fOutputLists[0] = dynamic_cast<TList*> (GetOutputData(1)); // >1 refers to output slots
0779c72f 2584 PostData(1, fOutputLists[0]);
8628b70c 2585
013103f5 2586 if(fAnalyzeJetProfile)
2587 {
013103f5 2588 fOutputLists[1] = dynamic_cast<TList*> (GetOutputData(2)); // >1 refers to output slots
0779c72f 2589 PostData(2, fOutputLists[1]);
013103f5 2590 }
2591 if(fAnalyzeTrackcuts)
2592 {
2593 if(fAnalyzeJetProfile)
2594 {
013103f5 2595 fOutputLists[2] = dynamic_cast<TList*> (GetOutputData(3)); // >1 refers to output slots
0779c72f 2596 PostData(3, fOutputLists[2]);
013103f5 2597 }
2598 else
2599 {
013103f5 2600 fOutputLists[1] = dynamic_cast<TList*> (GetOutputData(2)); // >1 refers to output slots
0779c72f 2601 PostData(2, fOutputLists[1]);
013103f5 2602 }
8628b70c 2603 }
2604}
2605
2606//________________________________________________________________________
2607AliAnalysisTaskChargedJetsPA::~AliAnalysisTaskChargedJetsPA()
2608{
2609 // Destructor. Clean-up the output list, but not the histograms that are put inside
2610 // (the list is owner and will clean-up these histograms). Protect in PROOF case.
0779c72f 2611
2612 if(fNoTerminate)
2613 return;
2614
013103f5 2615 delete fHybridESDtrackCuts;
e3ed0600 2616 delete fHybridESDtrackCuts_variedPtDep;
013103f5 2617
2618 for(Int_t i=0; i<static_cast<Int_t>(fOutputLists.size()); i++)
2619 if (fOutputLists[i] && !AliAnalysisManager::GetAnalysisManager()->IsProofMode())
2620 delete fOutputLists[i];
0779c72f 2621
8628b70c 2622}
2623
2624//________________________________________________________________________
2625void AliAnalysisTaskChargedJetsPA::UserCreateOutputObjects()
2626{
2627 // called once to create user defined output objects like histograms, plots etc.
2628 // and to put it on the output list.
2629 // Note: Saving to file with e.g. OpenFile(0) is must be before creating other objects.
2630
2631 fRandom = new TRandom3(0);
392aa819 2632
2633
013103f5 2634 Int_t tmpListCount = 1;
2635 if(fAnalyzeJetProfile)
2636 tmpListCount++;
2637 if(fAnalyzeTrackcuts)
2638 tmpListCount++;
8628b70c 2639
013103f5 2640 fOutputLists.resize(tmpListCount);
2641 for(Int_t i=0; i<tmpListCount; i++)
2642 {
2643 fOutputLists[i] = new TList();
2644 fOutputLists[i]->SetOwner(); // otherwise it produces leaks in merging
2645 PostData(i+1, fOutputLists[i]);
2646 }
8628b70c 2647}
2648
2649//________________________________________________________________________
2650void AliAnalysisTaskChargedJetsPA::UserExec(Option_t *)
2651{
2652 #ifdef DEBUGMODE
efb9b161 2653 AliInfo("UserExec() started.");
8628b70c 2654 #endif
2655
12eb4ac1 2656 if (!InputEvent())
2657 {
2658 AliError("??? Event pointer == 0 ???");
2659 return;
2660 }
2661
2662 if (!fInitialized)
2663 ExecOnce(); // Get tracks, jets, background from arrays if not already given + Init Histos
2664
8628b70c 2665 Calculate(InputEvent());
013103f5 2666
2667 PostData(1, fOutputLists[0]);
2668 if(fAnalyzeJetProfile)
2669 PostData(2, fOutputLists[1]);
2670 if(fAnalyzeTrackcuts)
2671 {
2672 if(fAnalyzeJetProfile)
2673 PostData(3, fOutputLists[2]);
2674 else
2675 PostData(2, fOutputLists[1]);
2676 }
2677
8628b70c 2678}