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[u/mrichter/AliRoot.git] / PWGDQ / dielectron / macrosJPSI / ConfigJpsi_nano_PbPb.C
1 void InitHistograms(AliDielectron *die, Int_t cutDefinition);
2
3 void SetupEventCuts(AliDielectron *die, Int_t cutDefinition);
4 void SetupTrackCuts(AliDielectron *die, Int_t cutDefinition);
5 void SetupV0Cuts(   AliDielectron *die, Int_t cutDefinition);
6 void SetupPairCuts( AliDielectron *die, Int_t cutDefinition);
7
8 void ConfigEvtPlane(AliDielectron *die, Int_t cutDefinition);
9 void SetEtaCorrection(AliDielectron *die);
10
11 TString names=("NANO");
12 enum { kNANO=0 };
13
14 TObjArray *arrNames=names.Tokenize(";");
15 const Int_t nDie=arrNames->GetEntries();
16
17 Bool_t  isESD = kTRUE;
18 TString list  = gSystem->Getenv("LIST");
19
20 AliDielectron* ConfigJpsi_nano_PbPb(Int_t cutDefinition, Bool_t hasMC=kFALSE)
21 {
22   //
23   // Setup the instance of AliDielectron
24   //
25
26   //ESD handler?
27   isESD=(AliAnalysisManager::GetAnalysisManager()->GetInputEventHandler()->IsA()==AliESDInputHandler::Class());
28
29   // task name
30   TString name=Form("%02d",cutDefinition);
31   if (cutDefinition<arrNames->GetEntriesFast())  name=arrNames->At(cutDefinition)->GetName();
32   printf(" Adding %s%s config %s for %s \n",(isESD?"ESD":"AOD"),(hasMC?" MC":""),name.Data(),list.Data());
33
34   // init AliDielectron
35   AliDielectron *die = new AliDielectron(Form("%s",name.Data()), Form("%s",name.Data()));
36   die->SetHasMC(hasMC);
37
38   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv CUTS vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
39   SetupEventCuts(die,cutDefinition);
40   SetupTrackCuts(die,cutDefinition);
41   // SetupV0Cuts(die,cutDefinition);   // switch off for nanoAODs??
42   // SetupPairCuts(die,cutDefinition);
43
44   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv MISC vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
45   // PID eta correction
46   //SetEtaCorrection(die); //no eta corrction
47   // prefilter settings
48   //  if(hasMC)
49   die->SetNoPairing();
50   //  else die->SetPreFilterUnlikeOnly();
51   //die->SetPreFilterAllSigns();
52
53   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv OUTPUT vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
54   // histogram setup
55   InitHistograms(die,cutDefinition);
56
57   // cut QA
58   die->SetCutQA();
59
60   return die;
61 }
62
63 //______________________________________________________________________________________
64 void SetupEventCuts(AliDielectron *die, Int_t cutDefinition)
65 {
66   //
67   // Setup the event cuts
68   //
69
70   AliDielectronEventCuts *eventCuts=new AliDielectronEventCuts("eventCuts","eventCuts");
71   if(!isESD) eventCuts->SetVertexType(AliDielectronEventCuts::kVtxAny);
72   eventCuts->SetRequireVertex();
73   eventCuts->SetMinVtxContributors(1);
74   //  eventCuts->SetVertexZ(-10.,+10.);
75   eventCuts->SetCentralityRange(0., 90.);
76   eventCuts->Print();
77   die->GetEventFilter().AddCuts(eventCuts);
78
79 }
80
81 //______________________________________________________________________________________
82 void SetupTrackCuts(AliDielectron *die, Int_t cutDefinition)
83 {
84   //
85   // Setup the track cuts
86   //
87
88   Bool_t hasMC=die->GetHasMC();
89
90   // Quality cuts
91   AliDielectronCutGroup* cuts = new AliDielectronCutGroup("cuts","cuts",AliDielectronCutGroup::kCompAND);
92   die->GetTrackFilter().AddCuts(cuts);
93
94   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv FILTER CUTS vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
95   // AOD track filter (needs to be first cut to speed up)
96   AliDielectronTrackCuts *trkFilter = new AliDielectronTrackCuts("TrkFilter","TrkFilter");
97   trkFilter->SetAODFilterBit(AliDielectronTrackCuts::kTPCqual);
98   //  trkFilter->SetAODFilterBit(AliDielectronTrackCuts::kTPCqualSPDany);
99   //  trkFilter->SetMinNCrossedRowsOverFindable(0.6);
100
101   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv TRACK CUTS vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
102   AliDielectronVarCuts *varCuts   = new AliDielectronVarCuts("VarCuts","VarCuts");
103   AliDielectronTrackCuts *trkCuts = new AliDielectronTrackCuts("TrkCuts","TrkCuts");
104   // specific cuts
105   varCuts->AddCut(AliDielectronVarManager::kPt,           0.85, 1e30);
106   varCuts->AddCut(AliDielectronVarManager::kEta,         -0.9,   0.9);
107   varCuts->AddCut(AliDielectronVarManager::kTPCclsSegments,7.,   8.0);
108   varCuts->AddCut(AliDielectronVarManager::kNclsTPC,     70.0, 160.0);
109   //  trkCuts->SetITSclusterCut(AliDielectronTrackCuts::kOneOf, 3); // SPD any
110
111   // standard cuts
112   varCuts->AddCut(AliDielectronVarManager::kImpactParXY, -1.0,   1.0);
113   varCuts->AddCut(AliDielectronVarManager::kImpactParZ,  -3.0,   3.0);
114   varCuts->AddCut(AliDielectronVarManager::kTPCchi2Cl,    0.0,   4.0);
115   varCuts->AddCut(AliDielectronVarManager::kKinkIndex0,   0.0);
116   trkCuts->SetRequireITSRefit(kTRUE);
117   trkCuts->SetRequireTPCRefit(kTRUE);
118
119   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv PID CUTS vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
120   //  AliDielectronVarCuts *pidVarCuts = new AliDielectronVarCuts("varPIDCuts","varPIDCuts");
121   AliDielectronPID *pidCuts        = new AliDielectronPID("PIDCuts","PIDCuts");
122   // TOF inclusion
123   //  pidVarCuts->AddCut(AliDielectronVarManager::kTOFbeta,      0.2,   0.9, kTRUE);
124   //  pidCuts->AddCut(AliDielectronPID::kTOF,AliPID::kElectron,-3,3.,0.,0.,kFALSE, AliDielectronPID::kIfAvailable);
125   // TPC inclusion
126   pidCuts->AddCut(AliDielectronPID::kTPC,AliPID::kElectron,-3.0,4.3); // when eta correction OFF
127   //  pidCuts->AddCut(AliDielectronPID::kTPC,AliPID::kPion,-100.,4.0,0.,0.,kTRUE);
128   //  pidCuts->AddCut(AliDielectronPID::kTPC,AliPID::kProton,-100.,3.5,0.,0.,kTRUE);
129
130   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv MC PID CUTS vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
131   AliDielectronVarCuts *pidCutsMC = new AliDielectronVarCuts("PIDCutsMC","PIDCutsMC");
132   pidCutsMC->SetCutType(AliDielectronVarCuts::kAny);
133   pidCutsMC->SetCutOnMCtruth(kTRUE);
134   pidCutsMC->AddCut(AliDielectronVarManager::kPdgCode, -11., -11.);
135   pidCutsMC->AddCut(AliDielectronVarManager::kPdgCode, +11., +11.);
136
137   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv TENDER CUTS vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
138   // exclude conversion electrons selected by the tender
139   AliDielectronTrackCuts *noconv=new AliDielectronTrackCuts("noConv","noConv");
140   noconv->SetV0DaughterCut(AliPID::kElectron,kTRUE);
141
142   // activate the cut sets (order might be CPU timewise important)
143   if(hasMC) {
144     //    cuts->AddCut(pidCutsMC);
145   }
146   else {
147     if(!isESD) cuts->AddCut(trkFilter);
148     cuts->AddCut(varCuts);
149     cuts->AddCut(trkCuts);
150     cuts->AddCut(pidCuts);
151     //cuts->AddCut(pidVarCuts);
152     //cuts->AddCut(noconv);
153   }
154   cuts->Print();
155
156 }
157
158 //______________________________________________________________________________________
159 void SetupV0Cuts(AliDielectron *die, Int_t cutDefinition)
160 {
161   //
162   // Setup the V0 cuts
163   //
164
165   // Quality cuts (add the gamma filter to the cut group)
166   TIter next(die->GetTrackFilter().GetCuts());
167   AliAnalysisCuts *cuts;
168   while((cuts = (AliAnalysisCuts*)next())) {
169     if(cuts->IsA() == AliDielectronCutGroup::Class())  break;
170   }
171
172   AliDielectronV0Cuts *gammaV0Cuts = new AliDielectronV0Cuts("IsGamma","IsGamma");
173   gammaV0Cuts->SetPdgCodes(22,11,11);
174   gammaV0Cuts->SetDefaultPID(16);
175   gammaV0Cuts->AddCut(AliDielectronVarManager::kCosPointingAngle, TMath::Cos(0.02),   1.0, kFALSE);
176   gammaV0Cuts->AddCut(AliDielectronVarManager::kChi2NDF,                       0.0,  10.0, kFALSE);
177   gammaV0Cuts->AddCut(AliDielectronVarManager::kLegDist,                       0.0,   0.25, kFALSE);
178   gammaV0Cuts->AddCut(AliDielectronVarManager::kR,                             3.0,  90.0, kFALSE);
179   gammaV0Cuts->AddCut(AliDielectronVarManager::kPsiPair,                       0.0,   0.05, kFALSE);
180   gammaV0Cuts->AddCut(AliDielectronVarManager::kM,                             0.0,   0.05, kFALSE);
181   //  gammaV0Cuts->AddCut(AliDielectronVarManager::kOpeningAngle,              0.0,   0.1, kFALSE);
182   gammaV0Cuts->AddCut(AliDielectronVarManager::kArmPt,                         0.0,   0.05, kFALSE);
183   //  gammaV0Cuts->AddCut(AliDielectronVarManager::kArmAlpha,                     -0.35,  0.35, kFALSE); // not sure if it works as expected
184   gammaV0Cuts->SetExcludeTracks(kTRUE);
185   gammaV0Cuts->Print();
186
187  //  const Double_t |cutAlphaG| < 0.35; &&  const Double_t cutQTG < 0.05;
188  //  const Double_t |cutAlphaG2|[2] = {0.6, 0.8}; &&  const Double_t cutQTG2 < 0.04;
189
190   if(cuts)
191     ((AliDielectronCutGroup*)cuts)->AddCut(gammaV0Cuts);
192   else
193     die->GetTrackFilter().AddCuts(gammaV0Cuts);
194 }
195
196 //______________________________________________________________________________________
197 void SetupPairCuts(AliDielectron *die, Int_t cutDefinition)
198 {
199   //
200   // Setup the pair cuts
201   //
202
203   // conversion rejection
204   Double_t gCut=0.05;
205   AliDielectronVarCuts *gammaCuts = new AliDielectronVarCuts("GammaCuts","GammaCuts");
206   gammaCuts->AddCut(AliDielectronVarManager::kM,            0.0,   gCut);
207   //  die->GetPairPreFilter().AddCuts(gammaCuts);
208
209   // rapidity selection
210   Double_t yCut=0.9;
211   AliDielectronVarCuts *rapCut=new AliDielectronVarCuts(Form("|Y|<%.1f",yCut),Form("|Y|<%.1f",yCut));
212   rapCut->AddCut(AliDielectronVarManager::kY,-1.*yCut,yCut);
213   die->GetPairFilter().AddCuts(rapCut);
214
215 }
216
217 //______________________________________________________________________________________
218 void InitHistograms(AliDielectron *die, Int_t cutDefinition)
219 {
220   //
221   // Initialise the histograms
222   //
223   Bool_t hasMC=die->GetHasMC();
224
225   //Setup histogram Manager
226   AliDielectronHistos *histos=new AliDielectronHistos(die->GetName(),die->GetTitle());
227
228   //add histograms to event class
229   histos->AddClass("Event");
230   histos->UserHistogram("Event","","", 100, 0.0, 100.0,   AliDielectronVarManager::kCentrality);
231   histos->UserHistogram("Event","","", 300,-15., +15.0,   AliDielectronVarManager::kZvPrim);
232   // candidates monitoring
233   histos->UserProfile("Event","","", AliDielectronVarManager::kTracks, 100,0,100., AliDielectronVarManager::kCentrality);
234   histos->UserProfile("Event","","", AliDielectronVarManager::kPairs,  100,0,100., AliDielectronVarManager::kCentrality);
235
236   die->SetHistogramManager(histos);
237 }
238
239 //______________________________________________________________________________________
240 void SetEtaCorrection(AliDielectron *die) {
241
242   if (AliDielectronPID::GetCentroidCorrFunction()) return;
243
244   TF2 *fCntrdCorr=0x0;
245   TF1 *fWdthCorr=0x0;
246   /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv DATA vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
247   if( !die->GetHasMC() ) {
248     // 2-dimensional eta correction for the centroid of electron sigmas
249     fCntrdCorr = new TF2("fCntrdCorr", "[0] + [1]*y + [2]*y*y + [3]*TMath::Power(y,3) + [4]*TMath::Power(y,4) + [5]*TMath::Power(y,5) + [6]*TMath::Power(y,6) + [7]*x",
250                          //0.0, 3000.0, -0.9, +0.9); // Nacc
251                          0.0,   90.0, -0.9, +0.9); // centrality
252     //  fCntrdCorr->SetParameters(0.723106, 0.23958, -6.31221, -0.687976, 15.912, 0.579609, -11.6901, -0.000354381); // Nacc
253     fCntrdCorr->SetParameters(+0.149002, +0.214644 , -6.034930, -0.529588, +14.97902, +0.402640, -10.890027, +0.011248); // centrality
254     // 1-dimensional eta correction for the width of electron sigmas
255     // fWdthCorr = new TF1("fWdthCorr", "pol2", 0.0, 3000.0);     // Nacc
256     // fWdthCorr->SetParameters(1.06108, 0.000217804,-5.80291e-08);
257     fWdthCorr = new TF1("fWdthCorr", "pol2", 0.0, 90.0);       // centrality
258     fWdthCorr->SetParameters(+1.290755, -0.005261, +0.000021);
259   }
260   else  {
261     /* vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv MONTE CARLO vvvvvvvvvvvvvvvvvvvvvvvvvvvvvvv */
262     // 2-dimensional eta correction for the centroid of electron sigmas
263     fCntrdCorr = new TF2("fCntrdCorr", "[0] + [1]*y + [2]*y*y + [3]*TMath::Power(y,3) + [4]*TMath::Power(y,4) + [5]*TMath::Power(y,5) + [6]*TMath::Power(y,6) + [7]*x",
264                               0.0, 3000.0, -0.9, +0.9);
265     fCntrdCorr->SetParameters(+0.378611, -0.070831, -3.076778, +0.121977, +8.576097, +0.113009, -5.001368, -0.000181);
266
267     // 1-dimensional eta correction for the width of electron sigmas
268     fWdthCorr = new TF1("fWdthCorr", "pol1", 0.0, 3000.0);
269     fWdthCorr->SetParameters(+0.881894, +0.000053);
270   }
271
272   // apply corrections
273   // AliDielectronPID::SetCentroidCorrFunction(fCntrdCorr,AliDielectronVarManager::kNacc,AliDielectronVarManager::kEta);
274   // AliDielectronPID::SetWidthCorrFunction(fWdthCorr,AliDielectronVarManager::kNacc);
275   AliDielectronPID::SetCentroidCorrFunction(fCntrdCorr,AliDielectronVarManager::kCentrality,AliDielectronVarManager::kEta);
276   AliDielectronPID::SetWidthCorrFunction(fWdthCorr,AliDielectronVarManager::kCentrality);
277
278 }