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add more histograms with trigger pT bins vs leading pt or sum of pt
[u/mrichter/AliRoot.git] / PWGGA / CaloTrackCorrelations / AliAnaParticleIsolation.h
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1a31a9ab 1#ifndef ALIANAPARTICLEISOLATION_H
2#define ALIANAPARTICLEISOLATION_H
3/* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
1a31a9ab 5
6//_________________________________________________________________________
7
8// Class for the analysis of particle isolation
9// Input is selected particles put in AOD branch (AliAODPWG4ParticleCorrelation)
10//
11// Class created from old AliPHOSGammaJet
12// (see AliRoot versions previous Release 4-09)
13
14//-- Author: Gustavo Conesa (INFN-LNF)
15
16// --- ROOT system ---
17class TH2F;
18class TList ;
19class TObjString;
20
21// --- ANALYSIS system ---
745913ae 22#include "AliAnaCaloTrackCorrBaseClass.h"
1a31a9ab 23class AliAODPWG4Particle;
24class AliAODPWG4ParticleCorrelation ;
25
745913ae 26class AliAnaParticleIsolation : public AliAnaCaloTrackCorrBaseClass {
1a31a9ab 27
28 public:
29 AliAnaParticleIsolation() ; // default ctor
803d06a8 30 virtual ~AliAnaParticleIsolation() { ; } //virtual dtor
1a31a9ab 31
1a31a9ab 32 // Main general methods
803d06a8 33
9b01dc66 34 void CalculateCaloUEBand (AliAODPWG4ParticleCorrelation * pCandidate,
35 Float_t & etaBand, Float_t & phiBand) ;
36 void CalculateCaloCellUEBand(AliAODPWG4ParticleCorrelation * pCandidate,
37 Float_t & etaBand, Float_t & phiBand) ;
38 void CalculateTrackUEBand (AliAODPWG4ParticleCorrelation * pCandidate,
39 Float_t & etaBand, Float_t & phiBand) ;
23130491 40
1b1a1b2e 41 void CalculateCaloSignalInCone (AliAODPWG4ParticleCorrelation * aodParticle, Float_t & coneptsumCluster, Float_t & coneptLeadCluster) ;
9b01dc66 42 void CalculateCaloCellSignalInCone(AliAODPWG4ParticleCorrelation * aodParticle, Float_t & coneptsumCell) ;
1b1a1b2e 43 void CalculateTrackSignalInCone (AliAODPWG4ParticleCorrelation * aodParticle, Float_t & coneptsumTrack , Float_t & coneptLeadTrack ) ;
727a309a 44
201d37ac 45
23130491 46 void CalculateNormalizeUEBandPerUnitArea(AliAODPWG4ParticleCorrelation * pCandidate,
b94e038e 47 Float_t coneptsumCluster, Float_t coneptsumCell, Float_t coneptsumTrack,
727a309a 48 Float_t &etaBandptsumTrackNorm, Float_t &etaBandptsumClusterNorm ) ;
1a31a9ab 49
b5dbb99b 50 TObjString * GetAnalysisCuts() ;
1a31a9ab 51
b5dbb99b 52 TList * GetCreateOutputObjects() ;
53
03bae431 54 void Init() ;
55
b5dbb99b 56 void InitParameters() ;
803d06a8 57
1a31a9ab 58 void MakeAnalysisFillAOD() ;
59
60 void MakeAnalysisFillHistograms() ;
61
23130491 62
b5dbb99b 63 void Print( const Option_t * opt ) const ;
1a31a9ab 64
1a31a9ab 65 //Analysis specific methods
b5dbb99b 66
2ad19c3d 67 void FillPileUpHistograms(Int_t clusterID) ;
68
dc9c6e78 69 void FillAcceptanceHistograms();
70
124bffb3 71 void FillTrackMatchingShowerShapeControlHistograms(AliAODPWG4ParticleCorrelation * pCandidate,
dc1966bb 72 Float_t coneptsum, Float_t coneleadpt, Int_t mcIndex) ;
b5dbb99b 73
64373095 74 Bool_t IsTriggerTheNearSideEventLeadingParticle(Int_t & idLeading);
75
124bffb3 76 void MakeSeveralICAnalysis( AliAODPWG4ParticleCorrelation * ph, Int_t mcIndex ) ;
1a31a9ab 77
1a31a9ab 78 // Analysis Setters and Getters
79
4b6cb0f2 80 TString GetTriggerDetector() const { return fIsoDetector ; }
b5dbb99b 81 Int_t GetNCones() const { return fNCones ; }
82 Int_t GetNPtThresFrac() const { return fNPtThresFrac ; }
83 Float_t GetConeSizes(Int_t i) const { return fConeSizes[i] ; }
84 Float_t GetPtThresholds(Int_t i) const { return fPtThresholds[i] ; }
db6fb352 85 Float_t GetSumPtThresholds(Int_t i) const { return fSumPtThresholds[i]; }
b5dbb99b 86 Float_t GetPtFractions(Int_t i) const { return fPtFractions[i] ; }
1a31a9ab 87
124bffb3 88 Int_t GetMCIndex(Int_t mcTag);
89
4b6cb0f2 90 void SetTriggerDetector(TString & det) { fIsoDetector = det ; }
b5dbb99b 91 void SetNCones(Int_t ncs) { fNCones = ncs ; }
92 void SetNPtThresFrac(Int_t npt) { fNPtThresFrac = npt ; }
93 void SetConeSizes(Int_t i, Float_t r) { fConeSizes[i] = r ; }
94 void SetPtThresholds(Int_t i, Float_t pt) { fPtThresholds[i] = pt ; }
95 void SetPtFractions(Int_t i, Float_t pt) { fPtFractions[i] = pt ; }
b0a31c92 96 void SetSumPtThresholds(Int_t i, Float_t pt){ fSumPtThresholds[i] = pt ; }
977564f5 97
4afdc1d8 98 void SetMinCellsAngleOverlap(Float_t n) { fMinCellsAngleOverlap = n ; }
4afdc1d8 99
b5dbb99b 100 Bool_t IsReIsolationOn() const { return fReMakeIC ; }
101 void SwitchOnReIsolation() { fReMakeIC = kTRUE ; }
102 void SwitchOffReIsolation() { fReMakeIC = kFALSE ; }
1a31a9ab 103
b5dbb99b 104 Bool_t IsSeveralIsolationOn() const { return fMakeSeveralIC ; }
105 void SwitchOnSeveralIsolation() { fMakeSeveralIC = kTRUE ; }
106 void SwitchOffSeveralIsolation() { fMakeSeveralIC = kFALSE ; }
2ad19c3d 107
b5dbb99b 108 void SwitchOnTMHistoFill() { fFillTMHisto = kTRUE ; }
109 void SwitchOffTMHistoFill() { fFillTMHisto = kFALSE ; }
09273901 110
b5dbb99b 111 void SwitchOnSSHistoFill() { fFillSSHisto = kTRUE ; }
112 void SwitchOffSSHistoFill() { fFillSSHisto = kFALSE ; }
09273901 113
64373095 114 Bool_t IsLeadingOnlyOn() const { return fLeadingOnly ; }
115 void SwitchOnLeadingOnly() { fLeadingOnly = kTRUE ; }
116 void SwitchOffLeadingOnly() { fLeadingOnly = kFALSE ; }
117
118 void SwitchOnCheckNeutralClustersForLeading() { fCheckLeadingWithNeutralClusters = kTRUE ; }
119 void SwitchOffCheckNeutralClustersForLeading(){ fCheckLeadingWithNeutralClusters = kFALSE ; }
120
977564f5 121 void SwitchOnUEBandSubtractionHistoFill() { fFillUEBandSubtractHistograms = kTRUE ; }
122 void SwitchOffUEBandSubtractionHistoFill() { fFillUEBandSubtractHistograms = kFALSE ; }
123
124 void SwitchOnCellHistoFill() { fFillCellHistograms = kTRUE ; }
125 void SwitchOffCellHistoFill() { fFillCellHistograms = kFALSE; }
126
977564f5 127 void SwitchOnNLMHistoFill() { fFillNLMHistograms = kTRUE ; }
128 void SwitchOffNLMHistoFill() { fFillNLMHistograms = kFALSE; }
129
130 void SwitchOnDecayTaggedHistoFill() { fFillTaggedDecayHistograms = kTRUE ; }
131 void SwitchOffDecayTaggedHistoFill() { fFillTaggedDecayHistograms = kFALSE; }
8913c8c4 132 void SetNDecayBits(Int_t n) { fNDecayBits = n ; }
133 void SetDecayBits(Int_t i, UInt_t bit) { if(i < 4) fDecayBits[i] = bit ; }
977564f5 134
dc1966bb 135 void SwitchOnBackgroundBinHistoFill() { fFillBackgroundBinHistograms = kTRUE ; }
71f8368b 136 void SwitchOffBackgroundBinHistoFill() { fFillBackgroundBinHistograms = kFALSE; }
dc1966bb 137 void SetNBackgroundBins(Int_t n) { if(n < 19) fNBkgBin = n ; }
138 void SetBackgroundLimits(Int_t i,Float_t l){ if(i <= fNBkgBin) fBkgBinLimit[i] = l; }
139
d125fd57 140 void SwitchOnPtTrigBinShowerShapeHistoFill() { fFillPtTrigBinHistograms = kTRUE ; }
141 void SwitchOffPtTrigBinShowerShapeHistoFill() { fFillPtTrigBinHistograms = kFALSE; }
7a5b478e 142 void SetNPtTrigBins(Int_t n) { if(n < 19) fNPtTrigBin = n ; }
143 void SetPtTrigLimits(Int_t i,Float_t l) { if(i <= fNPtTrigBin) fPtTrigBinLimit[i] = l; }
144
d24561b6 145 void SwitchOnPrimariesInConeSelection() { fSelectPrimariesInCone = kTRUE ; }
146 void SwitchOffPrimariesInConeSelection() { fSelectPrimariesInCone = kFALSE; }
147
148 void SwitchOnPrimariesPi0DecayStudy() { fMakePrimaryPi0DecayStudy = kTRUE ; }
149 void SwitchOffPrimariesPi0DecayStudy() { fMakePrimaryPi0DecayStudy = kFALSE; }
150
dc1966bb 151 // For primary histograms in arrays, index in the array, corresponding to a photon origin
bf8a7dac 152 enum mcPrimTypes { kmcPrimPhoton = 0, kmcPrimPi0Decay = 1, kmcPrimOtherDecay = 2,
d24561b6 153 kmcPrimPrompt = 3, kmcPrimFrag = 4, kmcPrimISR = 5, kmcPrimPi0 = 6 } ;
154 static const Int_t fgkNmcPrimTypes = 7;
d2d42179 155
156 // For histograms in arrays, index in the array, corresponding to any particle origin
70460dc6 157 enum mcTypes { kmcPhoton = 0, kmcPrompt = 1, kmcFragment = 2,
158 kmcPi0 = 3, kmcPi0Decay = 4, kmcPi0DecayLostPair = 5,
159 kmcEtaDecay = 6, kmcOtherDecay = 7,
160 kmcElectron = 8, kmcHadron = 9 } ;
161 static const Int_t fgkNmcTypes = 10;
d24561b6 162
1a31a9ab 163 private:
164
4b6cb0f2 165 TString fIsoDetector ; // Candidate particle for isolation detector ;
1a31a9ab 166 Bool_t fReMakeIC ; // Do isolation analysis
167 Bool_t fMakeSeveralIC ; // Do analysis for different IC
09273901 168 Bool_t fFillTMHisto; // Fill track matching plots
169 Bool_t fFillSSHisto; // Fill Shower shape plots
977564f5 170 Bool_t fFillUEBandSubtractHistograms; // Fill histograms working on the UE subtraction
171 Bool_t fFillCellHistograms; // Fill cell histograms
977564f5 172 Bool_t fFillTaggedDecayHistograms; // Fill histograms for clusters tagged as decay
8913c8c4 173 Int_t fNDecayBits ; // in case of study of decay triggers, select the decay bit
174 UInt_t fDecayBits[4] ; // in case of study of decay triggers, select the decay bit
977564f5 175 Bool_t fFillNLMHistograms; // Fill NLM histograms
64373095 176 Bool_t fLeadingOnly; // Do isolation with leading particle
177 Bool_t fCheckLeadingWithNeutralClusters; // Compare the trigger candidate to Leading pT with the clusters pT, by default only charged
d24561b6 178 Bool_t fSelectPrimariesInCone; // In primary particle isolation studies, select only particles in isolation cone within detector acceptance and E cut.
179 Bool_t fMakePrimaryPi0DecayStudy; // Fill dedicated histograms for primary decay photons
180
dc1966bb 181 Bool_t fFillBackgroundBinHistograms; // Fill histograms for different bins in pt content of the cone
182 Int_t fNBkgBin; // Number of bins on pt content in cone
183 Float_t fBkgBinLimit[20]; // Pt bin limits on pt content in the cone
184
d125fd57 185 Bool_t fFillPtTrigBinHistograms; // Fill histograms for different bins in pt trigger
7a5b478e 186 Int_t fNPtTrigBin; // Number of bins on pt trigger
187 Float_t fPtTrigBinLimit[20]; // Pt bin limits on pt trigger
188
4afdc1d8 189 Float_t fMinCellsAngleOverlap; // Number of cells that define the cluster overlap
190
64373095 191 // Analysis data members for multiple cones and pt thresholds
803d06a8 192 Int_t fNCones ; //! Number of cone sizes to test
193 Int_t fNPtThresFrac ; //! Number of ptThres and ptFrac to test
194
195 Float_t fConeSizes[5] ; //! Array with cones to test
196 Float_t fPtThresholds[5] ; //! Array with pt thresholds to test
db6fb352 197 Float_t fPtFractions[5] ; //! Array with pt thresholds to test frac
198 Float_t fSumPtThresholds[5] ; //! Array with pt thresholds to test frac
1a31a9ab 199
200 //Histograms
201
b1f720a7 202 TH1F * fhEIso ; //! Number of isolated particles vs energy
203 TH1F * fhPtIso ; //! Number of isolated particles vs pT
c8710850 204 TH2F * fhPtCentralityIso ; //! centrality vs pT
205 TH2F * fhPtEventPlaneIso ; //! event plane angle vs pT
8736d400 206 TH2F * fhPtNLocMaxIso ; //! Number of isolated particles vs NLM in cluster
1a31a9ab 207 TH2F * fhPhiIso ; //! Phi of isolated particles
208 TH2F * fhEtaIso ; //! eta of isolated particles
0fb69ade 209 TH2F * fhEtaPhiIso ; //! eta vs phi of isolated particles
d0a4f937 210 TH2F * fhEtaPhiNoIso ; //! eta vs phi of not isolated leading particles
b1f720a7 211 TH1F * fhENoIso ; //! Number of not isolated leading particles vs Energy
212 TH1F * fhPtNoIso ; //! Number of not isolated leading particles vs pT
8736d400 213 TH2F * fhPtNLocMaxNoIso ; //! Number of not isolated particles vs NLM in cluster
93518258 214 TH1F * fhPtDecay[2][4] ; //! Number of (non) isolated Pi0 decay particles (invariant mass tag)
215 TH2F * fhEtaPhiDecay[2][4] ; //! eta vs phi of (not) isolated leading Pi0 decay particles
2ff4efcd 216 TH2F * fhPtLambda0Decay[2][4]; //! Shower shape of (non) isolated leading Pi0 decay particles (do not apply SS cut previously)
217
fedea415 218 TH2F * fhPtInCone ; //! Cluster/track Pt in the cone
23130491 219 TH2F * fhPtClusterInCone ; //! Cluster Pt in the cone
9b01dc66 220 TH2F * fhPtCellInCone ; //! Cell amplitude in the cone
fedea415 221 TH2F * fhPtTrackInCone ; //! Track Pt in the cone
222 TH2F * fhPtTrackInConeOtherBC ; //! Track Pt in the cone, tracks out of main BC Time window
223 TH2F * fhPtTrackInConeOtherBCPileUpSPD ; //! Track Pt in the cone, tracks out of main BC Time window
2a9171b5 224 TH2F * fhPtTrackInConeBC0 ; //! Track Pt in the cone, tracks in BC=0
cc944149 225 TH2F * fhPtTrackInConeVtxBC0 ; //! Track Pt in the cone, tracks in BC=0
2a9171b5 226 TH2F * fhPtTrackInConeBC0PileUpSPD ; //! Track Pt in the cone, tracks in BC=0
8958866f 227 TH2F * fhPtInConePileUp[7] ; //! Particle Pt in the cone, if event is from pile-up (SPD method)
b7ce43b4 228 TH2F * fhPtInConeCent ; //! Particle Pt in the cone versus centrality
23130491 229 TH2F * fhPerpConeSumPt ; //! Sum Pt in cone at the perpendicular phi region to trigger axis (phi +90)
230 TH2F * fhPtInPerpCone ; //! Particle Pt in cone at the perpendicular phi region to trigger axis (phi +90)
231
9004af1c 232 TH2F * fhEtaPhiInConeCluster ; //! Eta vs. phi of clusters in cone
233 TH2F * fhEtaPhiCluster ; //! Eta vs. phi of all clusters
234 TH2F * fhEtaPhiInConeTrack ; //! Eta vs. phi of tracks in cone
235 TH2F * fhEtaPhiTrack ; //! Eta vs. phi of all tracks
236
23130491 237 TH2F * fhEtaBandCluster ; //! Accumulated pT in Eta band to estimate UE in cone, only clusters
238 TH2F * fhPhiBandCluster ; //! Accumulated pT in Phi band to estimate UE in cone, only clusters
239 TH2F * fhEtaBandTrack ; //! Accumulated pT in Eta band to estimate UE in cone, only tracks
240 TH2F * fhPhiBandTrack ; //! Accumulated pT in Phi band to estimate UE in cone, only tracks
9b01dc66 241 TH2F * fhEtaBandCell ; //! Accumulated pT in Eta band to estimate UE in cone, only cells
242 TH2F * fhPhiBandCell ; //! Accumulated pT in Phi band to estimate UE in cone, only cells
243
1b1a1b2e 244 TH2F * fhConePtLead ; //! Cluster and tracks leading pt in the cone
245 TH2F * fhConePtLeadCluster ; //! Clusters leading pt in the cone
246 TH2F * fhConePtLeadTrack ; //! Tracks leading pt in the cone
dc1966bb 247 TH2F * fhConePtLeadClustervsTrack; //! Tracks vs Clusters leading pt
248 TH2F * fhConePtLeadClusterTrackFrac; //! Trigger pt vs cluster/track leading pt
1b1a1b2e 249
23130491 250 TH2F * fhConeSumPt ; //! Cluster and tracks Sum Pt Sum Pt in the cone
9b01dc66 251 TH2F * fhConeSumPtCellTrack ; //! Cells and tracks Sum Pt Sum Pt in the cone
252 TH2F * fhConeSumPtCell ; //! Cells Sum Pt Sum Pt in the cone
814d1087 253 TH2F * fhConeSumPtCluster ; //! Clusters Sum Pt Sum Pt in the cone
254 TH2F * fhConeSumPtTrack ; //! Tracks Sum Pt Sum Pt in the cone
23130491 255 TH2F * fhConeSumPtEtaBandUECluster; //! Cluster Sum Pt in the eta band for clusters, before normalization
256 TH2F * fhConeSumPtPhiBandUECluster; //! Cluster Sum Pt in the phi band for clusters, before normalization
257 TH2F * fhConeSumPtEtaBandUETrack; //! Track Sum Pt in the eta band for tracks , before normalization
258 TH2F * fhConeSumPtPhiBandUETrack; //! Track Sum Pt in the phi badn for tracks , before normalization
9b01dc66 259 TH2F * fhConeSumPtEtaBandUECell; //! Cell Sum amplitude in the eta band for cells, before normalization
260 TH2F * fhConeSumPtPhiBandUECell; //! Cell Sum amplitude in the phi band for cells, before normalization
261
23130491 262 TH2F * fhConeSumPtTrigEtaPhi ; //! Cluster and tracks Sum Pt Sum Pt in the cone, per eta-phi bin of trigger,
9b01dc66 263 TH2F * fhConeSumPtCellTrackTrigEtaPhi ; //! Cell and tracks Sum Pt Sum Pt in the cone, per eta-phi bin of trigger,
23130491 264 TH2F * fhConeSumPtEtaBandUEClusterTrigEtaPhi; //! Cluster Sum Pt in the eta band for clusters, per eta-phi bin of trigger,before normalization
265 TH2F * fhConeSumPtPhiBandUEClusterTrigEtaPhi; //! Cluster Sum Pt in the phi band for clusters, per eta-phi bin of trigger, before normalization
266 TH2F * fhConeSumPtEtaBandUETrackTrigEtaPhi; //! Track Sum Pt in the eta band for tracks , per eta-phi bin of trigger, before normalization
267 TH2F * fhConeSumPtPhiBandUETrackTrigEtaPhi; //! Track Sum Pt in the phi badn for tracks , per eta-phi bin of trigger, before normalization
9b01dc66 268 TH2F * fhConeSumPtEtaBandUECellTrigEtaPhi; //! Cluster Sum amplitude in the eta band for cells, per eta-phi bin of trigger, before normalization
269 TH2F * fhConeSumPtPhiBandUECellTrigEtaPhi; //! Cluster Sum amplitude in the phi band for cells, per eta-phi bin of trigger, before normalization
270
23130491 271 TH2F * fhConeSumPtEtaUESub; //! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs pT trigger
272 TH2F * fhConeSumPtPhiUESub; //! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs pT trigger
273 TH2F * fhConeSumPtEtaUESubTrigEtaPhi; //! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
274 TH2F * fhConeSumPtPhiUESubTrigEtaPhi; //! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
9b01dc66 275
276 TH2F * fhConeSumPtEtaUESubTrackCell; //! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs pT trigger
277 TH2F * fhConeSumPtPhiUESubTrackCell; //! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs pT trigger
278 TH2F * fhConeSumPtEtaUESubTrackCellTrigEtaPhi;//! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
279 TH2F * fhConeSumPtPhiUESubTrackCellTrigEtaPhi;//! Cluster and tracks Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
280
23130491 281 TH2F * fhConeSumPtEtaUESubCluster; //! Cluster Sum Pt in the cone after bkg subtraction, vs pT trigger
282 TH2F * fhConeSumPtPhiUESubCluster; //! Cluster Sum Pt in the cone after bkg subtraction, vs pT trigger
283 TH2F * fhConeSumPtEtaUESubClusterTrigEtaPhi; //! Cluster Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
284 TH2F * fhConeSumPtPhiUESubClusterTrigEtaPhi; //! Cluster Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
285
9b01dc66 286 TH2F * fhConeSumPtEtaUESubCell; //! Cell Sum amplitude in the cone after bkg subtraction, vs pT trigger
287 TH2F * fhConeSumPtPhiUESubCell; //! Cell Sum amplitude in the cone after bkg subtraction, vs pT trigger
288 TH2F * fhConeSumPtEtaUESubCellTrigEtaPhi; //! Cell Sum amplitude in the cone after bkg subtraction, vs eta-phi trigger
289 TH2F * fhConeSumPtPhiUESubCellTrigEtaPhi; //! Cell Sum amplitude in the cone after bkg subtraction, vs eta-phi trigger
290
23130491 291 TH2F * fhConeSumPtEtaUESubTrack; //! Track Sum Pt in the cone after bkg subtraction, vs pT trigger
292 TH2F * fhConeSumPtPhiUESubTrack; //! Track Sum Pt in the cone after bkg subtraction, vs pT trigger
293 TH2F * fhConeSumPtEtaUESubTrackTrigEtaPhi; //! Track Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
294 TH2F * fhConeSumPtPhiUESubTrackTrigEtaPhi; //! Track Sum Pt in the cone after bkg subtraction, vs eta-phi trigger
295
296 TH2F * fhFractionTrackOutConeEta; //! Fraction of cone out of tracks acceptance in eta
297 TH2F * fhFractionTrackOutConeEtaTrigEtaPhi; //! Fraction of cone out of tracks acceptance in eta, vs trigger eta-phi
298 TH2F * fhFractionClusterOutConeEta; //! Fraction of cone out of clusters acceptance in eta
299 TH2F * fhFractionClusterOutConeEtaTrigEtaPhi; //! Fraction of cone out of clusters acceptance in eta, vs trigger eta-phi
300 TH2F * fhFractionClusterOutConePhi; //! Fraction of cone out of clusters acceptance in phi
301 TH2F * fhFractionClusterOutConePhiTrigEtaPhi; //! Fraction of cone out of clusters acceptance in phi, vs trigger eta-phi
1a31a9ab 302
9b01dc66 303 TH2F * fhFractionCellOutConeEta; //! Fraction of cone out of cells acceptance in eta
304 TH2F * fhFractionCellOutConeEtaTrigEtaPhi; //! Fraction of cone out of cells acceptance in eta, vs trigger eta-phi
305 TH2F * fhFractionCellOutConePhi; //! Fraction of cone out of cells acceptance in phi
306 TH2F * fhFractionCellOutConePhiTrigEtaPhi; //! Fraction of cone out of cells acceptance in phi, vs trigger eta-phi
307
814d1087 308 TH2F * fhConeSumPtClustervsTrack ; //! Cluster vs tracks Sum Pt Sum Pt in the cone
dc1966bb 309 TH2F * fhConeSumPtClusterTrackFrac ; //! Cluster / tracks Sum Pt Sum Pt in the cone
814d1087 310 TH2F * fhConeSumPtEtaUESubClustervsTrack ; //! Cluster vs tracks Sum Pt Sum Pt in the cone, after subtraction in eta band
311 TH2F * fhConeSumPtPhiUESubClustervsTrack ; //! Cluster vs tracks Sum Pt Sum Pt in the cone, after subtraction in phi band
9b01dc66 312 TH2F * fhConeSumPtCellvsTrack; //! Cell vs tracks Sum Pt Sum Pt in the cone
313 TH2F * fhConeSumPtEtaUESubCellvsTrack ; //! Cell vs tracks Sum Pt Sum Pt in the cone, after subtraction in eta band
314 TH2F * fhConeSumPtPhiUESubCellvsTrack ; //! Cell vs tracks Sum Pt Sum Pt in the cone, after subtraction in phi band
315
814d1087 316 TH2F * fhEtaBandClustervsTrack ; //! Accumulated pT in Eta band to estimate UE in cone, clusters vs tracks
317 TH2F * fhPhiBandClustervsTrack ; //! Accumulated pT in Phi band to estimate UE in cone, clusters vs tracks
318 TH2F * fhEtaBandNormClustervsTrack ; //! Accumulated pT in Eta band to estimate UE in cone, normalized to cone size, clusters vs tracks
319 TH2F * fhPhiBandNormClustervsTrack ; //! Accumulated pT in Phi band to estimate UE in cone, normalized to cone size, clusters vs tracks
b5d10017 320 TH2F * fhEtaBandCellvsTrack ; //! Accumulated pT in Eta band to estimate UE in cone, cells vs tracks
321 TH2F * fhPhiBandCellvsTrack ; //! Accumulated pT in Phi band to estimate UE in cone, cells vs tracks
322 TH2F * fhEtaBandNormCellvsTrack ; //! Accumulated pT cell in Eta band to estimate UE in cone, normalized to cone size, clusters vs tracks
323 TH2F * fhPhiBandNormCellvsTrack ; //! Accumulated pT cell in Phi band to estimate UE in cone, normalized to cone
324
32d244b0 325 TH2F * fhConeSumPtSubvsConeSumPtTotPhiTrack; //! Tracks, phi band: sum pT in cone after bkg sub vs sum pT in cone before bkg sub
326 TH2F * fhConeSumPtSubNormvsConeSumPtTotPhiTrack; //! Tracks, phi band: sum pT in cone after bkg sub normalized by sum pT in cone before bkg sub vs sum pT in cone before bkg sub
327 TH2F * fhConeSumPtSubvsConeSumPtTotEtaTrack; //! Tracks, eta band: sum pT in cone after bkg sub vs sum pT in cone before bkg sub
328 TH2F * fhConeSumPtSubNormvsConeSumPtTotEtaTrack; //! Tracks, eta band: sum pT in cone after bkg sub normalized by sum pT in cone before bkg sub vs sum pT in cone before bkg sub
329 TH2F * fhConeSumPtSubvsConeSumPtTotPhiCluster; //! Clusters, phi band: sum pT in cone after bkg sub vs sum pT in cone before bkg sub
b5d10017 330 TH2F * fhConeSumPtSubNormvsConeSumPtTotPhiCluster; //! Clusters, phi band: sum pT in cone after bkg sub normalized by sum pT in cone before bkg sub vs sum pT in cone before bkg sub
32d244b0 331 TH2F * fhConeSumPtSubvsConeSumPtTotEtaCluster; //! Clusters, eta band: sum pT in cone after bkg sub vs sum pT in cone before bkg sub
b5d10017 332 TH2F * fhConeSumPtSubNormvsConeSumPtTotEtaCluster; //! Clusters, eta band: sum pT in cone after bkg sub normalized by sum pT in cone before bkg sub vs sum pT in cone before bkg sub
32d244b0 333 TH2F * fhConeSumPtSubvsConeSumPtTotPhiCell; //! Cells, phi band: sum pT in cone after bkg sub vs sum pT in cone before bkg sub
334 TH2F * fhConeSumPtSubNormvsConeSumPtTotPhiCell; //! Cells, phi band: sum pT in cone after bkg sub normalized by sum pT in cone before bkg sub vs sum pT in cone before bkg sub
335 TH2F * fhConeSumPtSubvsConeSumPtTotEtaCell; //! Cells, eta band: sum pT in cone after bkg sub vs sum pT in cone before bkg sub
336 TH2F * fhConeSumPtSubNormvsConeSumPtTotEtaCell; //! Cells, eta band: sum pT in cone after bkg sub normalized by sum pT in cone before bkg sub vs sum pT in cone before bkg sub
337 TH2F * fhConeSumPtVSUETracksEtaBand; //! fhConeSumPtVSUETracksEtaBand
338 TH2F * fhConeSumPtVSUETracksPhiBand; //! fhConeSumPtVSUETracksPhiBand
339 TH2F * fhConeSumPtVSUEClusterEtaBand; //! fhConeSumPtVSUEClusterEtaBand
340 TH2F * fhConeSumPtVSUEClusterPhiBand; //! fhConeSumPtVSUEClusterPhiBand
814d1087 341
1a31a9ab 342 //MC
124bffb3 343 //
d24561b6 344 TH2F * fhEtaPrimMC [fgkNmcPrimTypes]; //! Pt vs Eta of generated photon
345 TH2F * fhPhiPrimMC [fgkNmcPrimTypes]; //! Pt vs Phi of generated photon
346 TH1F * fhEPrimMC [fgkNmcPrimTypes]; //! Number of generated photon vs E
347 TH1F * fhPtPrimMC [fgkNmcPrimTypes]; //! Number of generated photon vs pT
348 TH1F * fhPtPrimMCiso[fgkNmcPrimTypes]; //! Number of generated isolated photon vs pT
349
350 TH1F * fhPtPrimMCPi0DecayPairOutOfCone; //! Pi0 decay photons, with decay pair out of isolation cone
351 TH1F * fhPtPrimMCPi0DecayPairOutOfAcceptance; //! Pi0 decay photons, with decay pair out of detector acceptance
9ecbb69a 352 TH1F * fhPtPrimMCPi0DecayPairOutOfAcceptanceNoOverlap; //! Pi0 decay photons, with decay pair out of detector acceptance
d24561b6 353 TH1F * fhPtPrimMCPi0DecayPairAcceptInConeLowPt;//! Pi0 decay photons, with decay pair in cone and acceptance and lower pT than threshold
354 TH1F * fhPtPrimMCPi0DecayPairAcceptInConeLowPtNoOverlap; //! Pi0 decay photons, with decay pair in cone and acceptance and lower pT than threshold, and do not overlap
e79b1086 355 TH1F * fhPtPrimMCPi0DecayPairAcceptInConeLowPtNoOverlapCaloE; //! Pi0 decay photons, with decay pair in cone and acceptance and lower pT than threshold, and larger than detector threshold, and do not overlap
d24561b6 356 TH1F * fhPtPrimMCPi0DecayPairNoOverlap; //! Pi0 decay photons, not overlapped decay
357
358 TH1F * fhPtPrimMCPi0DecayIsoPairOutOfCone; //! Pi0 decay photons, with decay pair out of isolation cone, isolated
359 TH1F * fhPtPrimMCPi0DecayIsoPairOutOfAcceptance; //! Pi0 decay photons, with decay pair out of detector acceptance, isolated
9ecbb69a 360 TH1F * fhPtPrimMCPi0DecayIsoPairOutOfAcceptanceNoOverlap; //! Pi0 decay photons, with decay pair out of detector acceptance, isolated
d24561b6 361 TH1F * fhPtPrimMCPi0DecayIsoPairAcceptInConeLowPt;//! Pi0 decay photons, with decay pair in cone and acceptance and lower pT than threshold, isolated
362 TH1F * fhPtPrimMCPi0DecayIsoPairAcceptInConeLowPtNoOverlap; //! Pi0 decay photons, with decay pair in cone and acceptance and lower pT than threshold, and do not overlap, isolated
e79b1086 363 TH1F * fhPtPrimMCPi0DecayIsoPairAcceptInConeLowPtNoOverlapCaloE; //! Pi0 decay photons, with decay pair in cone and acceptance and lower pT than threshold, and larger than detector threshold, and do not overlap, isolated
7eedb724 364 TH1F * fhPtPrimMCPi0DecayIsoPairNoOverlap; //! Pi0 decay photons isolated, not overlapped decay
d24561b6 365
9cfeb6de 366 TH1F * fhPtPrimMCPi0Overlap; //! Pi0 with overlapped decay photons
367 TH1F * fhPtPrimMCPi0IsoOverlap; //! Pi0 isolated with overlapped decay photons
368
369
d24561b6 370 TH1F * fhPtNoIsoMC [fgkNmcTypes]; //! Number of not isolated mcTypes particle
371 TH1F * fhPtIsoMC [fgkNmcTypes]; //! Number of isolated mcTypes particle
372 TH2F * fhPhiIsoMC [fgkNmcTypes]; //! Phi of isolated mcTypes particle
373 TH2F * fhEtaIsoMC [fgkNmcTypes]; //! eta of isolated mcTypes particle
374
93518258 375 TH1F * fhPtDecayMC [2][4][fgkNmcTypes] ; //! Number of (not) isolated Pi0 decay particles (invariant mass tag) for a mcTypes particle
376
d24561b6 377 TH2F * fhPtLambda0MC [fgkNmcTypes][2]; //! Shower shape of (non) isolated candidates originated by mcTypes particle (do not apply SS cut previously)
f5b702a0 378
379 // Multiple cut analysis
ca134929 380 TH2F * fhSumPtLeadingPt[5] ; //! Sum Pt in the cone
381 TH2F * fhPtLeadingPt[5] ; //! Particle Pt in the cone
23130491 382 TH2F * fhPerpSumPtLeadingPt[5] ; //! Sum Pt in the cone at the perpendicular phi region to trigger axis (phi +90)
383 TH2F * fhPerpPtLeadingPt[5]; //! Sum Pt in the cone at the perpendicular phi region to trigger axis (phi +90)
44e48e82 384
ca134929 385 TH1F * fhPtThresIsolated[5][5] ; //! Isolated particle with pt threshold
db6fb352 386 TH1F * fhPtFracIsolated[5][5] ; //! Isolated particle with pt threshold frac
f5b702a0 387 TH1F * fhSumPtIsolated[5][5] ; //! Isolated particle with threshold on cone pt sum
db6fb352 388
389 TH2F * fhEtaPhiPtThresIso[5][5] ; //! eta vs phi of isolated particles with pt threshold
8913c8c4 390 TH2F * fhEtaPhiPtThresDecayIso[5][5] ; //! eta vs phi of isolated particles with pt threshold, only for decay bit fDecayBits[0]
391 TH1F * fhPtPtThresDecayIso[5][5] ; //! Number of isolated Pi0 decay particles (invariant mass tag) with pt threshold,, only for decay bit fDecayBits[0]
db6fb352 392
393 TH2F * fhEtaPhiPtFracIso[5][5] ; //! eta vs phi of isolated particles with pt frac
8913c8c4 394 TH2F * fhEtaPhiPtFracDecayIso[5][5] ; //! eta vs phi of isolated particles with pt frac,, only for decay bit fDecayBits[0]
395 TH1F * fhPtPtFracDecayIso[5][5] ; //! Number of isolated Pi0 decay particles (invariant mass tag) with pt fra, only for decay bit fDecayBits[0]
b0a31c92 396
db6fb352 397 TH2F * fhEtaPhiPtSumIso[5][5] ; //! eta vs phi of isolated particles with pt sum
8913c8c4 398 TH2F * fhEtaPhiPtSumDecayIso[5][5] ; //! eta vs phi of isolated particles with pt sum,, only for decay bit fDecayBits[0]
399 TH1F * fhPtPtSumDecayIso[5][5] ; //! Number of isolated Pi0 decay particles (invariant mass tag) with pt sum, only for decay bit fDecayBits[0]
db6fb352 400
e2c74e5d 401 TH2F * fhEtaPhiSumDensityIso[5][5]; //! Isolated particle with threshold on cone sum density
8913c8c4 402 TH2F * fhEtaPhiSumDensityDecayIso[5][5]; //! Isolated particle with threshold on cone sum density, only for decay bit fDecayBits[0]
db6fb352 403 TH1F * fhPtSumDensityIso[5][5]; //! Isolated particle with threshold on cone sum density
8913c8c4 404 TH1F * fhPtSumDensityDecayIso[5][5]; //! Isolated decay particle with threshold on cone sum density, only for decay bit fDecayBits[0]
db6fb352 405
e2c74e5d 406 TH1F * fhPtFracPtSumIso[5][5] ; //! Number of isolated Pi0 decay particles (invariant mass tag) with pt sum
8913c8c4 407 TH1F * fhPtFracPtSumDecayIso[5][5] ; //! Number of isolated Pi0 decay particles (invariant mass tag) with pt sum, only for decay bit fDecayBits[0]
e2c74e5d 408 TH2F * fhEtaPhiFracPtSumIso[5][5]; //! Isolated particle with threshold on cone sum density
8913c8c4 409 TH2F * fhEtaPhiFracPtSumDecayIso[5][5]; //! Isolated particle with threshold on cone sum density, only for decay bit fDecayBits[0]
b0a31c92 410
f5b702a0 411 // Multiple cut MC
d24561b6 412 TH1F * fhPtThresIsolatedMC[fgkNmcTypes][5][5];//! Isolated mcTypes particle with pt threshold
413 TH1F * fhPtFracIsolatedMC [fgkNmcTypes][5][5];//! Isolated mcTypes particle with pt frac
414 TH1F * fhSumPtIsolatedMC [fgkNmcTypes][5][5];//! Isolated mcTypes particle with threshold on cone pt sum
415 TH2F * fhSumPtLeadingPtMC [fgkNmcTypes][5]; //! mcTypes particle for sum Pt, different cone
f5b702a0 416
09273901 417 // Track matching studies
b7ce43b4 418 TH2F * fhTrackMatchedDEta[2] ; //! Eta distance between track and cluster vs cluster E
419 TH2F * fhTrackMatchedDPhi[2] ; //! Phi distance between track and cluster vs cluster E
420 TH2F * fhTrackMatchedDEtaDPhi[2] ; //! Eta vs Phi distance between track and cluster, E cluster > 0.5 GeV
421 TH2F * fhdEdx[2] ; //! matched track dEdx vs cluster E
422 TH2F * fhEOverP[2]; //! matched track E cluster over P track vs cluster E, after dEdx cut
423 TH2F * fhTrackMatchedMCParticle[2]; //! Trace origin of matched particle
31ae6d59 424
09273901 425 // Shower Shape histograms
32d244b0 426 TH2F * fhELambda0[2]; //! Shower shape of (non) isolated photons (do not apply SS cut previously)
427 TH2F * fhPtLambda0[2]; //! Shower shape of (non) isolated photons (do not apply SS cut previously)
b7ce43b4 428 TH2F * fhELambda1[2]; //! Shower shape of (non) isolated photons (do not apply SS cut previously)
429 TH2F * fhELambda0TRD[2]; //! Shower shape of (non) isolated photons, SM behind TRD (do not apply SS cut previously)
32d244b0 430 TH2F * fhPtLambda0TRD[2]; //! Shower shape of (non) isolated photons, SM behind TRD (do not apply SS cut previously)
b7ce43b4 431 TH2F * fhELambda1TRD[2]; //! Shower shape of (non) isolated photons, SM behind TRD (do not apply SS cut previously)
764ab1f4 432
d125fd57 433 TH1F ** fhPtLeadConeBin ; //![fNBkgBin] Candidate Pt distribution depending on bin of cone leading particle
434 TH1F ** fhSumPtConeBin ; //![fNBkgBin] Candidate Pt distribution depending on bin of cone sum pt
435 TH1F ** fhPtLeadConeBinMC ; //![fNBkgBin*fgkNmcTypes] Candidate Pt distribution depending on bin of cone leading particle, per MC particle
436 TH1F ** fhSumPtConeBinMC ; //![fNBkgBin*fgkNmcTypes] Candidate Pt distribution depending on bin of cone sum pt, per MC particle
7a5b478e 437
d125fd57 438 TH1F ** fhPtLeadConeBinDecay ; //![fNBkgBin*fNDecayBits] Candidate Pt distribution depending on bin of cone leading particle, tagged as decay
439 TH1F ** fhSumPtConeBinDecay ; //![fNBkgBin*fNDecayBits] Candidate Pte distribution depending on bin of cone sum pt, tagged as decay
7a5b478e 440
dc1966bb 441 TH2F ** fhPtLeadConeBinLambda0 ; //![fNBkgBin] Candidate shower shape distribution depending on bin of cone leading particle
442 TH2F ** fhSumPtConeBinLambda0 ; //![fNBkgBin] Candidate shower shape distribution depending on bin of cone sum pt
d24561b6 443 TH2F ** fhPtLeadConeBinLambda0MC ; //![fNBkgBin*fgkNmcTypes] Candidate shower shape distribution depending on bin of cone leading particle, per MC particle
444 TH2F ** fhSumPtConeBinLambda0MC ; //![fNBkgBin*fgkNmcTypes] Candidate shower shape distribution depending on bin of cone sum pt, per MC particle
7a5b478e 445
d125fd57 446 TH1F ** fhPtTrigBinPtLeadCone ; //![fNPtTrigBin] Candidate pt bin, distribution of cone leading particle pt
447 TH1F ** fhPtTrigBinSumPtCone ; //![fNPtTrigBin] Candidate pt bin, distribution of cone sum particle pt
448 TH1F ** fhPtTrigBinPtLeadConeMC ; //![fNPtTrigBin*fgkNmcTypes] Candidate pt bin, distribution of cone leading particle pt, per MC particle
449 TH1F ** fhPtTrigBinSumPtConeMC ; //![fNPtTrigBin*fgkNmcTypes] Candidate pt bin, distribution of cone sum particle pt, per MC particle
450
451 TH1F ** fhPtTrigBinPtLeadConeDecay ; //![fNBkgBin*fNDecayBits] Candidate pt bin, distribution of cone leading particle pt, tagged as decay
452 TH1F ** fhPtTrigBinSumPtConeDecay ; //![fNBkgBin*fNDecayBits] Candidate pt bin, distribution of cone sum particle pt, tagged as decay
453
7a5b478e 454 TH2F ** fhPtTrigBinLambda0vsPtLeadCone ; //![fNPtTrigBin] Candidate shower shape distribution depending vs cone leading particle in pT trigger bins
455 TH2F ** fhPtTrigBinLambda0vsSumPtCone ; //![fNPtTrigBin] Candidate shower shape distribution depending vs of cone sum pt in pT trigger bins
456 TH2F ** fhPtTrigBinLambda0vsPtLeadConeMC ; //![fNPtTrigBin*fgkNmcTypes] Candidate shower shape distribution depending vs cone leading particle in pT trigger bins, per MC particle
457 TH2F ** fhPtTrigBinLambda0vsSumPtConeMC ; //![fNPtTrigBin*fgkNmcTypes] Candidate shower shape distribution depending vs cone sum pt in pT trigger bins, per MC particle
458
5c46c992 459 // Local maxima
b7ce43b4 460 TH2F * fhNLocMax[2]; //! number of maxima in selected clusters
461 TH2F * fhELambda0LocMax1[2] ; //! E vs lambda0 of selected cluster, 1 local maxima in cluster
462 TH2F * fhELambda1LocMax1[2] ; //! E vs lambda1 of selected cluster, 1 local maxima in cluster
463 TH2F * fhELambda0LocMax2[2] ; //! E vs lambda0 of selected cluster, 2 local maxima in cluster
464 TH2F * fhELambda1LocMax2[2] ; //! E vs lambda1 of selected cluster, 2 local maxima in cluster
465 TH2F * fhELambda0LocMaxN[2] ; //! E vs lambda0 of selected cluster, N>2 local maxima in cluster
466 TH2F * fhELambda1LocMaxN[2] ; //! E vs lambda1 of selected cluster, N>2 local maxima in cluster
5c46c992 467
2ad19c3d 468 // Pile-up
8958866f 469 TH1F * fhEIsoPileUp[7] ; //! Number of isolated particles
470 TH1F * fhPtIsoPileUp[7] ; //! Number of isolated particles
471 TH1F * fhENoIsoPileUp[7] ; //! Number of not isolated particles
472 TH1F * fhPtNoIsoPileUp[7] ; //! Number of not isolated particles
2ad19c3d 473 TH2F * fhTimeENoCut; //! time of cluster vs E, no cut
474 TH2F * fhTimeESPD; //! time of cluster vs E, IsSPDPileUp
475 TH2F * fhTimeESPDMulti; //! time of cluster vs E, IsSPDPileUpMulti
476 TH2F * fhTimeNPileUpVertSPD; //! time of cluster vs n pile-up vertices from SPD
477 TH2F * fhTimeNPileUpVertTrack; //! time of cluster vs n pile-up vertices from Tracks
478 TH2F * fhTimeNPileUpVertContributors; //! time of cluster vs n pile-up vertex from SPD contributors
479 TH2F * fhTimePileUpMainVertexZDistance; //! time of cluster vs difference of z main vertex and pile-up vertex
480 TH2F * fhTimePileUpMainVertexZDiamond; //! time of cluster vs difference of z diamond and pile-up vertex
481
09273901 482 AliAnaParticleIsolation( const AliAnaParticleIsolation & iso) ; // cpy ctor
483 AliAnaParticleIsolation & operator = (const AliAnaParticleIsolation & iso) ; // cpy assignment
c5693f62 484
d125fd57 485 ClassDef(AliAnaParticleIsolation,31)
1a31a9ab 486} ;
487
488
489#endif //ALIANAPARTICLEISOLATION_H
490
491
492