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f5ec6c30 | 1 | /************************************************************************** |
2 | * Copyright(c) 1998-2009, ALICE Experiment at CERN, All rights reserved. * | |
3 | * * | |
4 | * Author: The ALICE Off-line Project. * | |
5 | * Contributors are mentioned in the code where appropriate. * | |
6 | * * | |
7 | * Permission to use, copy, modify and distribute this software and its * | |
8 | * documentation strictly for non-commercial purposes is hereby granted * | |
9 | * without fee, provided that the above copyright notice appears in all * | |
10 | * copies and that both the copyright notice and this permission notice * | |
11 | * appear in the supporting documentation. The authors make no claims * | |
12 | * about the suitability of this software for any purpose. It is * | |
13 | * provided "as is" without express or implied warranty. * | |
14 | **************************************************************************/ | |
15 | ||
16 | //----------------------------------------------------------------------- | |
17 | // Class for HF corrections as a function of many variables | |
18 | // 6 Steps introduced: MC, MC Acc, Reco, Reco Acc, Reco Acc + ITS Cl, | |
19 | // Reco Acc + ITS Cl + PPR cuts | |
f6d06004 | 20 | // 13 variables used: pt, y, cosThetaStar, ptPi, ptK, ct, |
21 | // dca, d0Pi, d0K, d0Pixd0K, cosPointingAngle, phi, z | |
f5ec6c30 | 22 | // |
23 | //----------------------------------------------------------------------- | |
24 | // Author : C. Zampolli, CERN | |
25 | //----------------------------------------------------------------------- | |
a5d92cb4 | 26 | //----------------------------------------------------------------------- |
27 | // Base class for HF Unfolding (pt and eta) | |
28 | // correlation matrix filled at Acceptance and PPR level | |
29 | // Author: A.Grelli , Utrecht - agrelli@uu.nl | |
30 | //----------------------------------------------------------------------- | |
f5ec6c30 | 31 | #include <TCanvas.h> |
32 | #include <TParticle.h> | |
c180f65d | 33 | #include <TDatabasePDG.h> |
f5ec6c30 | 34 | #include <TH1I.h> |
35 | #include <TStyle.h> | |
844d235c | 36 | #include <TFile.h> |
f5ec6c30 | 37 | |
38 | #include "AliCFHeavyFlavourTaskMultiVarMultiStep.h" | |
39 | #include "AliStack.h" | |
40 | #include "AliMCEvent.h" | |
41 | #include "AliCFManager.h" | |
42 | #include "AliCFContainer.h" | |
43 | #include "AliLog.h" | |
b557eb43 | 44 | #include "AliAnalysisManager.h" |
45 | #include "AliAODHandler.h" | |
f5ec6c30 | 46 | #include "AliAODEvent.h" |
47 | #include "AliAODRecoDecay.h" | |
48 | #include "AliAODRecoDecayHF.h" | |
49 | #include "AliAODRecoDecayHF2Prong.h" | |
50 | #include "AliAODMCParticle.h" | |
a8b9a95a | 51 | #include "AliAODMCHeader.h" |
aed46c56 | 52 | #include "AliESDtrack.h" |
174db2b5 | 53 | #include "AliRDHFCutsD0toKpi.h" |
a5d92cb4 | 54 | #include "TChain.h" |
55 | #include "THnSparse.h" | |
56 | #include "TH2D.h" | |
ae3d971c | 57 | #include "AliAnalysisDataSlot.h" |
58 | #include "AliAnalysisDataContainer.h" | |
a8b9a95a | 59 | |
f5ec6c30 | 60 | //__________________________________________________________________________ |
61 | AliCFHeavyFlavourTaskMultiVarMultiStep::AliCFHeavyFlavourTaskMultiVarMultiStep() : | |
62 | AliAnalysisTaskSE(), | |
63 | fPDG(0), | |
64 | fCFManager(0x0), | |
65 | fHistEventsProcessed(0x0), | |
a5d92cb4 | 66 | fCorrelation(0x0), |
f5ec6c30 | 67 | fCountMC(0), |
68 | fCountAcc(0), | |
ae3e319c | 69 | fCountVertex(0), |
70 | fCountRefit(0), | |
f5ec6c30 | 71 | fCountReco(0), |
72 | fCountRecoAcc(0), | |
73 | fCountRecoITSClusters(0), | |
74 | fCountRecoPPR(0), | |
174db2b5 | 75 | fCountRecoPID(0), |
f5ec6c30 | 76 | fEvents(0), |
77 | fFillFromGenerated(kFALSE), | |
a5d92cb4 | 78 | fMinITSClusters(5), |
f6d06004 | 79 | fAcceptanceUnf(kTRUE), |
174db2b5 | 80 | fKeepD0fromB(kFALSE), |
c59e1898 | 81 | fKeepD0fromBOnly(kFALSE), |
ae3d971c | 82 | fCuts(0), |
83 | fUseWeight(kFALSE), | |
3ee5eb83 | 84 | fWeight(1.), |
85 | fSign(2) | |
f5ec6c30 | 86 | { |
87 | // | |
88 | //Default ctor | |
89 | // | |
90 | } | |
91 | //___________________________________________________________________________ | |
174db2b5 | 92 | AliCFHeavyFlavourTaskMultiVarMultiStep::AliCFHeavyFlavourTaskMultiVarMultiStep(const Char_t* name, AliRDHFCutsD0toKpi* cuts) : |
f5ec6c30 | 93 | AliAnalysisTaskSE(name), |
94 | fPDG(0), | |
95 | fCFManager(0x0), | |
96 | fHistEventsProcessed(0x0), | |
a5d92cb4 | 97 | fCorrelation(0x0), |
f5ec6c30 | 98 | fCountMC(0), |
99 | fCountAcc(0), | |
ae3e319c | 100 | fCountVertex(0), |
101 | fCountRefit(0), | |
f5ec6c30 | 102 | fCountReco(0), |
103 | fCountRecoAcc(0), | |
104 | fCountRecoITSClusters(0), | |
105 | fCountRecoPPR(0), | |
174db2b5 | 106 | fCountRecoPID(0), |
f5ec6c30 | 107 | fEvents(0), |
108 | fFillFromGenerated(kFALSE), | |
a5d92cb4 | 109 | fMinITSClusters(5), |
f6d06004 | 110 | fAcceptanceUnf(kTRUE), |
174db2b5 | 111 | fKeepD0fromB(kFALSE), |
c59e1898 | 112 | fKeepD0fromBOnly(kFALSE), |
ae3d971c | 113 | fCuts(cuts), |
114 | fUseWeight(kFALSE), | |
3ee5eb83 | 115 | fWeight(1.), |
116 | fSign(2) | |
f5ec6c30 | 117 | { |
118 | // | |
119 | // Constructor. Initialization of Inputs and Outputs | |
120 | // | |
121 | Info("AliCFHeavyFlavourTaskMultiVarMultiStep","Calling Constructor"); | |
122 | /* | |
123 | DefineInput(0) and DefineOutput(0) | |
124 | are taken care of by AliAnalysisTaskSE constructor | |
125 | */ | |
126 | DefineOutput(1,TH1I::Class()); | |
127 | DefineOutput(2,AliCFContainer::Class()); | |
a5d92cb4 | 128 | DefineOutput(3,THnSparseD::Class()); |
ae3d971c | 129 | DefineOutput(4,AliRDHFCutsD0toKpi::Class()); |
174db2b5 | 130 | |
131 | fCuts->PrintAll(); | |
f5ec6c30 | 132 | } |
133 | ||
134 | //___________________________________________________________________________ | |
135 | AliCFHeavyFlavourTaskMultiVarMultiStep& AliCFHeavyFlavourTaskMultiVarMultiStep::operator=(const AliCFHeavyFlavourTaskMultiVarMultiStep& c) | |
136 | { | |
137 | // | |
138 | // Assignment operator | |
139 | // | |
140 | if (this!=&c) { | |
141 | AliAnalysisTaskSE::operator=(c) ; | |
142 | fPDG = c.fPDG; | |
143 | fCFManager = c.fCFManager; | |
144 | fHistEventsProcessed = c.fHistEventsProcessed; | |
174db2b5 | 145 | fCuts = c.fCuts; |
f5ec6c30 | 146 | } |
147 | return *this; | |
148 | } | |
149 | ||
150 | //___________________________________________________________________________ | |
151 | AliCFHeavyFlavourTaskMultiVarMultiStep::AliCFHeavyFlavourTaskMultiVarMultiStep(const AliCFHeavyFlavourTaskMultiVarMultiStep& c) : | |
152 | AliAnalysisTaskSE(c), | |
153 | fPDG(c.fPDG), | |
154 | fCFManager(c.fCFManager), | |
155 | fHistEventsProcessed(c.fHistEventsProcessed), | |
a5d92cb4 | 156 | fCorrelation(c.fCorrelation), |
f5ec6c30 | 157 | fCountMC(c.fCountMC), |
158 | fCountAcc(c.fCountAcc), | |
ae3e319c | 159 | fCountVertex(c.fCountVertex), |
160 | fCountRefit(c.fCountRefit), | |
f5ec6c30 | 161 | fCountReco(c.fCountReco), |
162 | fCountRecoAcc(c.fCountRecoAcc), | |
163 | fCountRecoITSClusters(c.fCountRecoITSClusters), | |
164 | fCountRecoPPR(c.fCountRecoPPR), | |
174db2b5 | 165 | fCountRecoPID(c.fCountRecoPID), |
f5ec6c30 | 166 | fEvents(c.fEvents), |
167 | fFillFromGenerated(c.fFillFromGenerated), | |
a5d92cb4 | 168 | fMinITSClusters(c.fMinITSClusters), |
f6d06004 | 169 | fAcceptanceUnf(c.fAcceptanceUnf), |
174db2b5 | 170 | fKeepD0fromB(c.fKeepD0fromB), |
c59e1898 | 171 | fKeepD0fromBOnly(c.fKeepD0fromBOnly), |
ae3d971c | 172 | fCuts(c.fCuts), |
173 | fUseWeight(c.fUseWeight), | |
3ee5eb83 | 174 | fWeight(c.fWeight), |
175 | fSign(c.fSign) | |
f5ec6c30 | 176 | { |
177 | // | |
178 | // Copy Constructor | |
179 | // | |
180 | } | |
181 | ||
182 | //___________________________________________________________________________ | |
183 | AliCFHeavyFlavourTaskMultiVarMultiStep::~AliCFHeavyFlavourTaskMultiVarMultiStep() { | |
184 | // | |
185 | //destructor | |
186 | // | |
187 | if (fCFManager) delete fCFManager ; | |
188 | if (fHistEventsProcessed) delete fHistEventsProcessed ; | |
a5d92cb4 | 189 | if (fCorrelation) delete fCorrelation ; |
c59e1898 | 190 | // if (fCuts) delete fCuts ; |
f5ec6c30 | 191 | } |
192 | ||
ae3d971c | 193 | //________________________________________________________________________ |
194 | void AliCFHeavyFlavourTaskMultiVarMultiStep::Init(){ | |
195 | ||
196 | // | |
197 | // Initialization | |
198 | // | |
199 | ||
200 | if(fDebug > 1) printf("AliCFHeavyFlavourTaskMultiVarMultiStep::Init() \n"); | |
201 | ||
3ee5eb83 | 202 | fMinITSClusters = fCuts->GetTrackCuts()->GetMinNClustersITS(); |
ae3d971c | 203 | AliRDHFCutsD0toKpi* copyfCuts=new AliRDHFCutsD0toKpi(*fCuts); |
204 | const char* nameoutput=GetOutputSlot(4)->GetContainer()->GetName(); | |
205 | copyfCuts->SetName(nameoutput); | |
206 | // Post the data | |
207 | PostData(4,copyfCuts); | |
208 | ||
209 | return; | |
210 | } | |
211 | ||
f5ec6c30 | 212 | //_________________________________________________ |
213 | void AliCFHeavyFlavourTaskMultiVarMultiStep::UserExec(Option_t *) | |
214 | { | |
215 | // | |
216 | // Main loop function | |
217 | // | |
218 | ||
174db2b5 | 219 | PostData(1,fHistEventsProcessed) ; |
220 | PostData(2,fCFManager->GetParticleContainer()) ; | |
221 | PostData(3,fCorrelation) ; | |
222 | ||
223 | AliESDtrackCuts* trackCuts = fCuts->GetTrackCuts(); // track cuts | |
224 | ||
f5ec6c30 | 225 | if (fFillFromGenerated){ |
226 | AliWarning("Flag to fill container with generated value ON ---> dca, d0pi, d0K, d0xd0, cosPointingAngle will be set as dummy!"); | |
227 | } | |
228 | ||
229 | if (!fInputEvent) { | |
230 | Error("UserExec","NO EVENT FOUND!"); | |
231 | return; | |
232 | } | |
233 | ||
c59e1898 | 234 | // check that the fKeepD0fromB flag is set to true when the fKeepD0fromBOnly flag is true |
235 | if(fKeepD0fromBOnly) { | |
236 | fKeepD0fromB=true; | |
237 | if(fEvents<2) AliInfo(Form("Both fKeepD0fromB and fKeepD0fromBOnly flags are true, looking _ONLY_ at D0 FROM B")); | |
238 | } | |
239 | ||
f5ec6c30 | 240 | AliAODEvent* aodEvent = dynamic_cast<AliAODEvent*>(fInputEvent); |
b557eb43 | 241 | |
242 | TClonesArray *arrayD0toKpi=0; | |
243 | ||
244 | if(!aodEvent && AODEvent() && IsStandardAOD()) { | |
245 | // In case there is an AOD handler writing a standard AOD, use the AOD | |
246 | // event in memory rather than the input (ESD) event. | |
247 | aodEvent = dynamic_cast<AliAODEvent*> (AODEvent()); | |
248 | // in this case the braches in the deltaAOD (AliAOD.VertexingHF.root) | |
249 | // have to taken from the AOD event hold by the AliAODExtension | |
250 | AliAODHandler* aodHandler = (AliAODHandler*) | |
251 | ((AliAnalysisManager::GetAnalysisManager())->GetOutputEventHandler()); | |
252 | if(aodHandler->GetExtensions()) { | |
253 | AliAODExtension *ext = (AliAODExtension*)aodHandler->GetExtensions()->FindObject("AliAOD.VertexingHF.root"); | |
254 | AliAODEvent *aodFromExt = ext->GetAOD(); | |
255 | arrayD0toKpi=(TClonesArray*)aodFromExt->GetList()->FindObject("D0toKpi"); | |
256 | } | |
257 | } else { | |
258 | arrayD0toKpi=(TClonesArray*)aodEvent->GetList()->FindObject("D0toKpi"); | |
259 | } | |
260 | ||
261 | ||
262 | if (!arrayD0toKpi) { | |
263 | AliError("Could not find array of HF vertices"); | |
264 | return; | |
265 | } | |
266 | ||
7c23877d | 267 | // fix for temporary bug in ESDfilter |
268 | // the AODs with null vertex pointer didn't pass the PhysSel | |
5806c290 | 269 | if(!aodEvent->GetPrimaryVertex() || TMath::Abs(aodEvent->GetMagneticField())<0.001) return; |
7c23877d | 270 | |
271 | fEvents++; | |
b557eb43 | 272 | |
3ece36df | 273 | fCFManager->SetRecEventInfo(aodEvent); |
71f713c7 | 274 | fCFManager->SetMCEventInfo(aodEvent); |
f5ec6c30 | 275 | |
276 | // MC-event selection | |
f6d06004 | 277 | Double_t containerInput[13] ; |
278 | Double_t containerInputMC[13] ; | |
f5ec6c30 | 279 | |
280 | //loop on the MC event | |
281 | ||
282 | TClonesArray* mcArray = dynamic_cast<TClonesArray*>(aodEvent->FindListObject(AliAODMCParticle::StdBranchName())); | |
a8b9a95a | 283 | if (!mcArray) { |
284 | AliError("Could not find Monte-Carlo in AOD"); | |
285 | return; | |
286 | } | |
f5ec6c30 | 287 | Int_t icountMC = 0; |
288 | Int_t icountAcc = 0; | |
289 | Int_t icountReco = 0; | |
ae3e319c | 290 | Int_t icountVertex = 0; |
291 | Int_t icountRefit = 0; | |
f5ec6c30 | 292 | Int_t icountRecoAcc = 0; |
293 | Int_t icountRecoITSClusters = 0; | |
294 | Int_t icountRecoPPR = 0; | |
174db2b5 | 295 | Int_t icountRecoPID = 0; |
f5ec6c30 | 296 | |
a8b9a95a | 297 | AliAODMCHeader *mcHeader = dynamic_cast<AliAODMCHeader*>(aodEvent->GetList()->FindObject(AliAODMCHeader::StdBranchName())); |
298 | if (!mcHeader) { | |
299 | AliError("Could not find MC Header in AOD"); | |
300 | return; | |
301 | } | |
302 | ||
e8158e56 | 303 | Int_t cquarks = 0; |
304 | ||
ae3e319c | 305 | // AOD primary vertex |
306 | AliAODVertex *vtx1 = (AliAODVertex*)aodEvent->GetPrimaryVertex(); | |
c59e1898 | 307 | if(!vtx1) { |
308 | AliError("There is no primary vertex !"); | |
309 | return; | |
310 | } | |
a8b9a95a | 311 | Double_t zPrimVertex = vtx1->GetZ(); |
312 | Double_t zMCVertex = mcHeader->GetVtxZ(); | |
ae3e319c | 313 | Bool_t vtxFlag = kTRUE; |
314 | TString title=vtx1->GetTitle(); | |
315 | if(!title.Contains("VertexerTracks")) vtxFlag=kFALSE; | |
316 | ||
f5ec6c30 | 317 | for (Int_t iPart=0; iPart<mcArray->GetEntriesFast(); iPart++) { |
318 | AliAODMCParticle* mcPart = dynamic_cast<AliAODMCParticle*>(mcArray->At(iPart)); | |
e8158e56 | 319 | if (mcPart->GetPdgCode() == 4) cquarks++; |
320 | if (mcPart->GetPdgCode() == -4) cquarks++; | |
f5ec6c30 | 321 | if (!mcPart) { |
322 | AliWarning("Particle not found in tree, skipping"); | |
323 | continue; | |
324 | } | |
325 | ||
326 | // check the MC-level cuts | |
e8158e56 | 327 | |
f5ec6c30 | 328 | if (!fCFManager->CheckParticleCuts(0, mcPart)) continue; // 0 stands for MC level |
e8158e56 | 329 | Int_t pdgGranma = CheckOrigin(mcPart, mcArray); |
330 | Int_t abspdgGranma = TMath::Abs(pdgGranma); | |
331 | if ((abspdgGranma > 500 && abspdgGranma < 600) || (abspdgGranma > 5000 && abspdgGranma < 6000)) { | |
caf4ca8b | 332 | AliDebug(2,Form("Particle has a b-meson, or b-baryon mother (pdg code mother = %d )--> not coming from a c-quark, skipping...", pdgGranma)); |
f6d06004 | 333 | if (!fKeepD0fromB) continue; // skipping particles that don't come from c quark |
e8158e56 | 334 | } |
c59e1898 | 335 | else { if(fKeepD0fromBOnly) continue; } // skipping particles that don't come from b quark |
f5ec6c30 | 336 | |
e8158e56 | 337 | // if (TMath::Abs(pdgGranma)!=4) { |
338 | ||
f5ec6c30 | 339 | // fill the container for Gen-level selection |
e8158e56 | 340 | Double_t vectorMC[7] = {9999.,9999.,9999.,9999.,9999.,9999.,9999.}; |
6e2e4f50 | 341 | |
f5ec6c30 | 342 | if (GetGeneratedValuesFromMCParticle(mcPart, mcArray, vectorMC)){ |
ae3e319c | 343 | containerInputMC[0] = vectorMC[0]; |
344 | containerInputMC[1] = vectorMC[1] ; | |
345 | containerInputMC[2] = vectorMC[2] ; | |
346 | containerInputMC[3] = vectorMC[3] ; | |
347 | containerInputMC[4] = vectorMC[4] ; | |
348 | containerInputMC[5] = vectorMC[5] ; // in micron | |
349 | containerInputMC[6] = 0.; // dummy value, meaningless in MC, in micron | |
350 | containerInputMC[7] = 0.; // dummy value, meaningless in MC, in micron | |
351 | containerInputMC[8] = 0.; // dummy value, meaningless in MC, in micron | |
352 | containerInputMC[9] = -100000.; // dummy value, meaningless in MC, in micron^2 | |
353 | containerInputMC[10] = 1.01; // dummy value, meaningless in MC | |
354 | containerInputMC[11] = vectorMC[6]; // dummy value, meaningless in MC | |
a8b9a95a | 355 | containerInputMC[12] = zMCVertex; // z of reconstructed of primary vertex |
ae3d971c | 356 | if (fUseWeight) fWeight = GetWeight(vectorMC[0]); // setting the weight according to the function defined in AliCFHeavyFlavourTaskMultiVarMultiStep::GetWeight(Float_t pt) |
357 | AliDebug(3,Form("weight = %f",fWeight)); | |
c59e1898 | 358 | if (!fCuts->IsInFiducialAcceptance(vectorMC[0],vectorMC[1])) continue; |
174db2b5 | 359 | if (TMath::Abs(vectorMC[1]) < 0.5) { |
ae3d971c | 360 | fCFManager->GetParticleContainer()->Fill(containerInputMC,kStepGeneratedLimAcc,fWeight); |
174db2b5 | 361 | } |
ae3d971c | 362 | fCFManager->GetParticleContainer()->Fill(containerInputMC,kStepGenerated,fWeight); |
f5ec6c30 | 363 | icountMC++; |
364 | ||
365 | // check the MC-Acceptance level cuts | |
366 | // since standard CF functions are not applicable, using Kine Cuts on daughters | |
367 | ||
368 | Int_t daughter0 = mcPart->GetDaughter(0); | |
369 | Int_t daughter1 = mcPart->GetDaughter(1); | |
370 | AliDebug(2, Form("daughter0 = %d and daughter1 = %d",daughter0,daughter1)); | |
371 | if (daughter0 == 0 || daughter1 == 0) { | |
372 | AliDebug(2, "Error! the D0 MC doesn't have correct daughters!! But it should have, this check was already done..."); | |
373 | } | |
421623bd | 374 | if (TMath::Abs(daughter1 - daughter0) != 1) { |
f5ec6c30 | 375 | AliDebug(2, "The D0 MC doesn't come from a 2-prong decay, but it should be, this check was already done..."); |
376 | } | |
377 | AliAODMCParticle* mcPartDaughter0 = dynamic_cast<AliAODMCParticle*>(mcArray->At(daughter0)); | |
378 | AliAODMCParticle* mcPartDaughter1 = dynamic_cast<AliAODMCParticle*>(mcArray->At(daughter1)); | |
379 | if (!mcPartDaughter0 || !mcPartDaughter1) { | |
380 | AliWarning("At least one Daughter Particle not found in tree, but it should be, this check was already done..."); | |
c59e1898 | 381 | continue; |
f5ec6c30 | 382 | } |
383 | Double_t eta0 = mcPartDaughter0->Eta(); | |
384 | Double_t eta1 = mcPartDaughter1->Eta(); | |
385 | Double_t y0 = mcPartDaughter0->Y(); | |
386 | Double_t y1 = mcPartDaughter1->Y(); | |
387 | Double_t pt0 = mcPartDaughter0->Pt(); | |
388 | Double_t pt1 = mcPartDaughter1->Pt(); | |
389 | AliDebug(2, Form("Daughter 0: eta = %f, y = %f, pt = %f", eta0, y0, pt0)); | |
390 | AliDebug(2, Form("Daughter 1: eta = %f, y = %f, pt = %f", eta1, y1, pt1)); | |
391 | Bool_t daught0inAcceptance = (TMath::Abs(eta0) < 0.9 && pt0 > 0.1); | |
392 | Bool_t daught1inAcceptance = (TMath::Abs(eta1) < 0.9 && pt1 > 0.1); | |
393 | if (daught0inAcceptance && daught1inAcceptance) { | |
394 | // checking whether the cuts implemented in the CF are equivalent - simply a cross-check | |
395 | AliDebug(2, "Daughter particles in acceptance"); | |
396 | if (!fCFManager->CheckParticleCuts(1, mcPartDaughter0)) { | |
b3f25f64 | 397 | AliDebug(2,"Inconsistency with CF cut for daughter 0!"); |
f5ec6c30 | 398 | } |
399 | if (!fCFManager->CheckParticleCuts(1, mcPartDaughter1)) { | |
b3f25f64 | 400 | AliDebug(2,"Inconsistency with CF cut for daughter 1!"); |
f5ec6c30 | 401 | } |
ae3d971c | 402 | fCFManager->GetParticleContainer()->Fill(containerInputMC,kStepAcceptance,fWeight); |
f5ec6c30 | 403 | icountAcc++; |
ae3e319c | 404 | |
405 | // check on the vertex | |
174db2b5 | 406 | if (fCuts->IsEventSelected(aodEvent)){ |
407 | AliDebug(2,"Vertex cut passed\n"); | |
ae3e319c | 408 | // filling the container if the vertex is ok |
ae3d971c | 409 | fCFManager->GetParticleContainer()->Fill(containerInputMC,kStepVertex,fWeight) ; |
ae3e319c | 410 | icountVertex++; |
411 | // check on the kTPCrefit and kITSrefit conditions of the daughters | |
d889c6c0 | 412 | Bool_t refitFlag = kTRUE; |
174db2b5 | 413 | if (trackCuts->GetRequireTPCRefit() || trackCuts->GetRequireITSRefit()){ |
414 | Int_t foundDaughters = 0; | |
415 | for (Int_t iaod =0; iaod<aodEvent->GetNumberOfTracks(); iaod++){ | |
416 | AliAODTrack *track = (AliAODTrack*)aodEvent->GetTrack(iaod); | |
6e2e4f50 | 417 | if(track->GetStatus()&AliESDtrack::kITSpureSA) continue; |
418 | if ((track->GetLabel() == daughter0) || (track->GetLabel() == daughter1)) { | |
174db2b5 | 419 | foundDaughters++; |
420 | if (trackCuts->GetRequireTPCRefit()) { | |
421 | if(!(track->GetStatus()&AliESDtrack::kTPCrefit)){ | |
422 | refitFlag = kFALSE; | |
423 | break; | |
424 | } | |
425 | } | |
426 | if (trackCuts->GetRequireITSRefit()) { | |
427 | if(!(track->GetStatus()&AliESDtrack::kITSrefit)){ | |
428 | refitFlag = kFALSE; | |
429 | break; | |
430 | } | |
431 | } | |
432 | } | |
433 | if (foundDaughters == 2){ // both daughters have been checked | |
434 | break; | |
435 | } | |
ae3e319c | 436 | } |
ae3d971c | 437 | if (foundDaughters != 2) refitFlag = kFALSE; |
ae3e319c | 438 | } |
439 | if (refitFlag){ | |
ae3d971c | 440 | AliDebug(3,"Refit cut passed\n"); |
441 | fCFManager->GetParticleContainer()->Fill(containerInputMC,kStepRefit,fWeight); | |
ae3e319c | 442 | icountRefit++; |
443 | } | |
444 | else{ | |
445 | AliDebug(3,"Refit cut not passed\n"); | |
446 | } | |
447 | } | |
448 | else{ | |
449 | AliDebug(3,"Vertex cut not passed\n"); | |
450 | } | |
451 | } | |
452 | else{ | |
453 | AliDebug(3,"Acceptance cut not passed\n"); | |
f5ec6c30 | 454 | } |
455 | } | |
456 | else { | |
457 | AliDebug(3,"Problems in filling the container"); | |
458 | continue; | |
459 | } | |
e8158e56 | 460 | } |
ae3e319c | 461 | |
caf4ca8b | 462 | if (cquarks<2) AliDebug(2,Form("Event found with %d c-quarks", cquarks)); |
f5ec6c30 | 463 | |
b3f25f64 | 464 | AliDebug(2,Form("Found %i MC particles that are D0!!",icountMC)); |
465 | AliDebug(2,Form("Found %i MC particles that are D0 and satisfy Acc cuts!!",icountAcc)); | |
466 | AliDebug(2,Form("Found %i MC particles that are D0 and satisfy Vertex cuts!!",icountVertex)); | |
467 | AliDebug(2,Form("Found %i MC particles that are D0 and satisfy Refit cuts!!",icountRefit)); | |
f5ec6c30 | 468 | |
469 | // Now go to rec level | |
470 | fCountMC += icountMC; | |
471 | fCountAcc += icountAcc; | |
472 | ||
1e090d47 | 473 | AliDebug(2, Form("Found %d vertices",arrayD0toKpi->GetEntriesFast())); |
6afbe9bf | 474 | |
475 | Int_t pdgDgD0toKpi[2]={321,211}; | |
ae3d971c | 476 | Int_t isD0D0bar=1;// 1 for D0, 2 for D0bar, to be used for the PPR and PID selection steps |
6afbe9bf | 477 | |
1e090d47 | 478 | for (Int_t iD0toKpi = 0; iD0toKpi<arrayD0toKpi->GetEntriesFast(); iD0toKpi++) { |
f5ec6c30 | 479 | |
1e090d47 | 480 | AliAODRecoDecayHF2Prong* d0tokpi = (AliAODRecoDecayHF2Prong*)arrayD0toKpi->At(iD0toKpi); |
c59e1898 | 481 | if(!d0tokpi) continue; |
1e090d47 | 482 | Bool_t unsetvtx=kFALSE; |
483 | if(!d0tokpi->GetOwnPrimaryVtx()) { | |
484 | d0tokpi->SetOwnPrimaryVtx(vtx1); // needed to compute all variables | |
485 | unsetvtx=kTRUE; | |
486 | } | |
487 | ||
f5ec6c30 | 488 | // find associated MC particle |
6afbe9bf | 489 | Int_t mcLabel = d0tokpi->MatchToMC(421,mcArray,2,pdgDgD0toKpi) ; |
f5ec6c30 | 490 | if (mcLabel == -1) |
491 | { | |
492 | AliDebug(2,"No MC particle found"); | |
c59e1898 | 493 | continue; |
f5ec6c30 | 494 | } |
495 | else { | |
496 | AliAODMCParticle* mcVtxHF = (AliAODMCParticle*)mcArray->At(mcLabel); | |
497 | if (!mcVtxHF) { | |
498 | AliWarning("Could not find associated MC in AOD MC tree"); | |
499 | continue; | |
500 | } | |
3ee5eb83 | 501 | |
502 | if (mcVtxHF->GetPdgCode() == 421){ // particle is D0 | |
503 | if (fSign == 1){ // I ask for D0bar only | |
504 | AliDebug(2,"particle is D0, I ask for D0bar only"); | |
505 | continue; | |
506 | } | |
507 | else{ | |
508 | isD0D0bar=1; | |
509 | } | |
510 | } | |
511 | else if (mcVtxHF->GetPdgCode()== -421){ // particle is D0bar | |
512 | if (fSign == 0){ // I ask for D0 only | |
513 | AliDebug(2,"particle is D0bar, I ask for D0 only"); | |
514 | continue; | |
515 | } | |
516 | else{ | |
517 | isD0D0bar=2; | |
518 | } | |
519 | } | |
ae3d971c | 520 | else continue; |
3ee5eb83 | 521 | |
ae3e319c | 522 | // check whether the daughters have kTPCrefit and kITSrefit set |
aed46c56 | 523 | AliAODTrack *track0 = (AliAODTrack*)d0tokpi->GetDaughter(0); |
524 | AliAODTrack *track1 = (AliAODTrack*)d0tokpi->GetDaughter(1); | |
c59e1898 | 525 | if( !track0 || !track1 ) { |
526 | AliWarning("Could not find associated MC daughter tracks in AOD MC tree"); | |
527 | continue; | |
528 | } | |
174db2b5 | 529 | if ((trackCuts->GetRequireTPCRefit() && (!(track0->GetStatus()&AliESDtrack::kTPCrefit) || !(track1->GetStatus()&AliESDtrack::kTPCrefit))) || |
530 | (trackCuts->GetRequireITSRefit() && (!(track0->GetStatus()&AliESDtrack::kITSrefit) || !(track1->GetStatus()&AliESDtrack::kITSrefit)))){ | |
531 | // skipping if at least one daughter does not have kTPCrefit or kITSrefit, if they were required | |
ae3e319c | 532 | continue; |
533 | } | |
534 | ||
535 | // check on the vertex -- could be moved outside the loop on the reconstructed D0... | |
174db2b5 | 536 | if(!fCuts->IsEventSelected(aodEvent)) { |
ae3e319c | 537 | // skipping cause vertex is not ok |
aed46c56 | 538 | continue; |
539 | } | |
540 | ||
8855c601 | 541 | const Double_t d0tokpiCuts[9] = {0.3,999999.,1.1,0.,0.,999999.,999999.,999999.,0.}; |
aed46c56 | 542 | Int_t okD0, okD0bar; |
8855c601 | 543 | if (!(d0tokpi->SelectD0(&d0tokpiCuts[0],okD0,okD0bar))){ |
aed46c56 | 544 | // skipping candidate |
545 | continue; | |
546 | } | |
547 | ||
f5ec6c30 | 548 | // check if associated MC v0 passes the cuts |
549 | if (!fCFManager->CheckParticleCuts(0 ,mcVtxHF)) { // 0 stands for MC | |
550 | AliDebug(2, "Skipping the particles due to cuts"); | |
551 | continue; | |
552 | } | |
e8158e56 | 553 | Int_t pdgGranma = CheckOrigin(mcVtxHF, mcArray); |
554 | Int_t abspdgGranma = TMath::Abs(pdgGranma); | |
555 | if ((abspdgGranma > 500 && abspdgGranma < 600) || (abspdgGranma > 5000 && abspdgGranma < 6000)) { | |
caf4ca8b | 556 | AliDebug(2,Form("At Reco level, from MC info: Particle has a b-meson, or b-baryon mother (pdg code mother = %d )--> not coming from a c-quark, skipping...", pdgGranma)); |
f6d06004 | 557 | if (!fKeepD0fromB) continue; // skipping particles that don't come from c quark |
e8158e56 | 558 | } |
c59e1898 | 559 | else { if(fKeepD0fromBOnly) continue; } // skipping particles that don't come from b quark |
f5ec6c30 | 560 | |
561 | // fill the container... | |
1e090d47 | 562 | Double_t pt = d0tokpi->Pt(); |
563 | Double_t rapidity = d0tokpi->YD0(); | |
65f0c9a8 | 564 | Double_t invMass=0.; |
f5ec6c30 | 565 | Double_t cosThetaStar = 9999.; |
566 | Double_t pTpi = 0.; | |
567 | Double_t pTK = 0.; | |
1e090d47 | 568 | Double_t dca = d0tokpi->GetDCA(); |
f5ec6c30 | 569 | Double_t d0pi = 0.; |
570 | Double_t d0K = 0.; | |
1e090d47 | 571 | Double_t d0xd0 = d0tokpi->Prodd0d0(); |
e8158e56 | 572 | Double_t cosPointingAngle = d0tokpi->CosPointingAngle(); |
573 | Double_t phi = d0tokpi->Phi(); | |
f5ec6c30 | 574 | Int_t pdgCode = mcVtxHF->GetPdgCode(); |
575 | if (pdgCode > 0){ | |
1e090d47 | 576 | cosThetaStar = d0tokpi->CosThetaStarD0(); |
577 | pTpi = d0tokpi->PtProng(0); | |
578 | pTK = d0tokpi->PtProng(1); | |
579 | d0pi = d0tokpi->Getd0Prong(0); | |
580 | d0K = d0tokpi->Getd0Prong(1); | |
65f0c9a8 | 581 | invMass=d0tokpi->InvMassD0(); |
f5ec6c30 | 582 | } |
583 | else { | |
1e090d47 | 584 | cosThetaStar = d0tokpi->CosThetaStarD0bar(); |
585 | pTpi = d0tokpi->PtProng(1); | |
586 | pTK = d0tokpi->PtProng(0); | |
587 | d0pi = d0tokpi->Getd0Prong(1); | |
588 | d0K = d0tokpi->Getd0Prong(0); | |
65f0c9a8 | 589 | invMass=d0tokpi->InvMassD0bar(); |
f5ec6c30 | 590 | } |
591 | ||
1e090d47 | 592 | Double_t cT = d0tokpi->CtD0(); |
f5ec6c30 | 593 | |
594 | if (!fFillFromGenerated){ | |
595 | // ...either with reconstructed values.... | |
596 | containerInput[0] = pt; | |
597 | containerInput[1] = rapidity; | |
598 | containerInput[2] = cosThetaStar; | |
599 | containerInput[3] = pTpi; | |
600 | containerInput[4] = pTK; | |
601 | containerInput[5] = cT*1.E4; // in micron | |
602 | containerInput[6] = dca*1.E4; // in micron | |
603 | containerInput[7] = d0pi*1.E4; // in micron | |
604 | containerInput[8] = d0K*1.E4; // in micron | |
605 | containerInput[9] = d0xd0*1.E8; // in micron^2 | |
606 | containerInput[10] = cosPointingAngle; // in micron | |
e8158e56 | 607 | containerInput[11] = phi; |
6ff32235 | 608 | containerInput[12] = zPrimVertex; // z of reconstructed of primary vertex |
f5ec6c30 | 609 | } |
610 | else { | |
611 | // ... or with generated values | |
e8158e56 | 612 | Double_t vectorMC[7] = {9999.,9999.,9999.,9999.,9999.,9999.,9999.}; |
f5ec6c30 | 613 | if (GetGeneratedValuesFromMCParticle(mcVtxHF, mcArray, vectorMC)){ |
614 | containerInput[0] = vectorMC[0]; | |
615 | containerInput[1] = vectorMC[1] ; | |
616 | containerInput[2] = vectorMC[2] ; | |
617 | containerInput[3] = vectorMC[3] ; | |
618 | containerInput[4] = vectorMC[4] ; | |
619 | containerInput[5] = vectorMC[5] ; // in micron | |
620 | containerInput[6] = 0.; // dummy value, meaningless in MC, in micron | |
621 | containerInput[7] = 0.; // dummy value, meaningless in MC, in micron | |
622 | containerInput[8] = 0.; // dummy value, meaningless in MC, in micron | |
623 | containerInput[9] = 100000.; // dummy value, meaningless in MC, in micron^2 | |
624 | containerInput[10] = 1.01; // dummy value, meaningless in MC | |
e8158e56 | 625 | containerInput[11] = vectorMC[6]; |
6ff32235 | 626 | containerInput[12] = zMCVertex; // z of reconstructed of primary vertex |
f5ec6c30 | 627 | } |
628 | else { | |
629 | AliDebug(3,"Problems in filling the container"); | |
630 | continue; | |
631 | } | |
632 | } | |
174db2b5 | 633 | |
c59e1898 | 634 | if (!fCuts->IsInFiducialAcceptance(containerInput[0],containerInput[1])) continue; // fiducial region |
635 | ||
f5ec6c30 | 636 | AliDebug(2, Form("Filling the container with pt = %f, rapidity = %f, cosThetaStar = %f, pTpi = %f, pTK = %f, cT = %f", containerInput[0], containerInput[1], containerInput[2], containerInput[3], containerInput[4], containerInput[5])); |
637 | icountReco++; | |
ae3d971c | 638 | AliDebug(2,Form("%d: filling RECO step\n",iD0toKpi)); |
639 | fCFManager->GetParticleContainer()->Fill(containerInput,kStepReconstructed,fWeight) ; | |
f5ec6c30 | 640 | |
641 | // cut in acceptance | |
174db2b5 | 642 | Float_t etaCutMin, etaCutMax, ptCutMin, ptCutMax; |
643 | trackCuts->GetEtaRange(etaCutMin,etaCutMax); | |
644 | trackCuts->GetPtRange(ptCutMin,ptCutMax); | |
645 | Bool_t acceptanceProng0 = (d0tokpi->EtaProng(0)>etaCutMin && d0tokpi->EtaProng(0)<etaCutMax && d0tokpi->PtProng(0) > ptCutMin && d0tokpi->PtProng(0) < ptCutMax); | |
646 | Bool_t acceptanceProng1 = (d0tokpi->EtaProng(1)>etaCutMin && d0tokpi->EtaProng(1)<etaCutMax && d0tokpi->PtProng(1) > ptCutMin && d0tokpi->PtProng(1) < ptCutMax); | |
f5ec6c30 | 647 | if (acceptanceProng0 && acceptanceProng1) { |
648 | AliDebug(2,"D0 reco daughters in acceptance"); | |
ae3d971c | 649 | fCFManager->GetParticleContainer()->Fill(containerInput,kStepRecoAcceptance,fWeight) ; |
a5d92cb4 | 650 | icountRecoAcc++; |
ae3e319c | 651 | |
652 | if(fAcceptanceUnf){ | |
653 | ||
654 | Double_t fill[4]; //fill response matrix | |
655 | ||
656 | // dimensions 0&1 : pt,eta (Rec) | |
657 | ||
658 | fill[0] = pt ; | |
659 | fill[1] = rapidity; | |
660 | ||
661 | // dimensions 2&3 : pt,eta (MC) | |
662 | ||
663 | fill[2] = mcVtxHF->Pt(); | |
664 | fill[3] = mcVtxHF->Y(); | |
665 | ||
666 | fCorrelation->Fill(fill); | |
667 | ||
668 | } | |
669 | ||
f5ec6c30 | 670 | // cut on the min n. of clusters in ITS |
174db2b5 | 671 | if (fCuts->IsSelected(d0tokpi,AliRDHFCuts::kTracks)){ |
f5ec6c30 | 672 | fCFManager->GetParticleContainer()->Fill(containerInput,kStepRecoITSClusters) ; |
673 | icountRecoITSClusters++; | |
674 | AliDebug(2,Form("pT = %f, dca = %f, cosThetaStar = %f, pTpi = %f, pTK = %f, d0pi = %f, d0K = %f, d0xd0 = %f, cosPointingAngle = %f", pt, dca, cosThetaStar,pTpi, pTK, d0pi*1E4, d0K*1E4, d0xd0*1E8, cosPointingAngle)); | |
ae3d971c | 675 | |
676 | // setting the use of the PID cut when applying the selection to FALSE - whatever it was. Keeping track of the original value | |
677 | Bool_t iscutusingpid=fCuts->GetIsUsePID(); | |
678 | Int_t isselcuts=-1,isselpid=-1; | |
679 | fCuts->SetUsePID(kFALSE); | |
6e2e4f50 | 680 | //Bool_t origFlag = fCuts->GetIsPrimaryWithoutDaughters(); |
681 | //fCuts->SetRemoveDaughtersFromPrim(kFALSE); | |
ae3d971c | 682 | isselcuts = fCuts->IsSelected(d0tokpi,AliRDHFCuts::kCandidate,aodEvent); |
6e2e4f50 | 683 | //fCuts->SetRemoveDaughtersFromPrim(origFlag); |
da576827 | 684 | fCuts->SetUsePID(iscutusingpid); // restoring usage of the PID from the cuts object |
ae3d971c | 685 | if (isselcuts == 3 || isselcuts == isD0D0bar){ |
65f0c9a8 | 686 | AliDebug(2,"Particle passed PPR cuts (actually cuts for D0 analysis!)"); |
ae3d971c | 687 | fCFManager->GetParticleContainer()->Fill(containerInput,kStepRecoPPR,fWeight) ; |
f5ec6c30 | 688 | icountRecoPPR++; |
ae3e319c | 689 | |
690 | if(!fAcceptanceUnf){ // unfolding | |
691 | ||
692 | Double_t fill[4]; //fill response matrix | |
693 | ||
694 | // dimensions 0&1 : pt,eta (Rec) | |
695 | ||
696 | fill[0] = pt ; | |
697 | fill[1] = rapidity; | |
698 | ||
699 | // dimensions 2&3 : pt,eta (MC) | |
700 | ||
701 | fill[2] = mcVtxHF->Pt(); | |
702 | fill[3] = mcVtxHF->Y(); | |
703 | ||
704 | fCorrelation->Fill(fill); | |
705 | ||
706 | } | |
ae3d971c | 707 | |
ae3d971c | 708 | isselpid = fCuts->IsSelected(d0tokpi,AliRDHFCuts::kPID); |
709 | if((fCuts->CombineSelectionLevels(3,isselcuts,isselpid)==isD0D0bar)||(fCuts->CombineSelectionLevels(3,isselcuts,isselpid)==3)){ | |
174db2b5 | 710 | AliDebug(2,"Particle passed PID cuts"); |
ae3d971c | 711 | fCFManager->GetParticleContainer()->Fill(containerInput,kStepRecoPID,fWeight) ; |
174db2b5 | 712 | icountRecoPID++; |
f5ec6c30 | 713 | } |
714 | } | |
715 | } | |
716 | } | |
717 | } | |
1e090d47 | 718 | if(unsetvtx) d0tokpi->UnsetOwnPrimaryVtx(); |
719 | } // end loop on D0->Kpi | |
f5ec6c30 | 720 | |
721 | AliDebug(2, Form("Found %i Reco particles that are D0!!",icountReco)); | |
722 | ||
723 | fCountReco+= icountReco; | |
ae3e319c | 724 | fCountVertex+= icountVertex; |
725 | fCountRefit+= icountRefit; | |
f5ec6c30 | 726 | fCountRecoAcc+= icountRecoAcc; |
727 | fCountRecoITSClusters+= icountRecoITSClusters; | |
728 | fCountRecoPPR+= icountRecoPPR; | |
174db2b5 | 729 | fCountRecoPID+= icountRecoPID; |
f5ec6c30 | 730 | |
731 | fHistEventsProcessed->Fill(0); | |
732 | /* PostData(0) is taken care of by AliAnalysisTaskSE */ | |
174db2b5 | 733 | //PostData(1,fHistEventsProcessed) ; |
734 | //PostData(2,fCFManager->GetParticleContainer()) ; | |
735 | //PostData(3,fCorrelation) ; | |
f5ec6c30 | 736 | } |
737 | ||
738 | ||
739 | //___________________________________________________________________________ | |
740 | void AliCFHeavyFlavourTaskMultiVarMultiStep::Terminate(Option_t*) | |
741 | { | |
742 | // The Terminate() function is the last function to be called during | |
743 | // a query. It always runs on the client, it can be used to present | |
744 | // the results graphically or save the results to file. | |
745 | ||
f5ec6c30 | 746 | AliAnalysisTaskSE::Terminate(); |
747 | ||
748 | AliInfo(Form("Found %i MC particles that are D0 in MC, in %d events",fCountMC,fEvents)); | |
749 | AliInfo(Form("Found %i MC particles that are D0 in MC and satisfy Acc cuts, in %d events",fCountAcc,fEvents)); | |
ae3e319c | 750 | AliInfo(Form("Found %i MC particles that are D0 in MC and satisfy Acc cuts, and satisfy Vertex requirement in %d events",fCountVertex,fEvents)); |
751 | AliInfo(Form("Found %i MC particles that are D0 in MC and satisfy Acc cuts, and satisfy ITS+TPC refit requirementin %d events",fCountRefit,fEvents)); | |
f5ec6c30 | 752 | AliInfo(Form("Found %i reco D0 that are decaying in K+pi, in %d events",fCountReco,fEvents)); |
753 | AliInfo(Form("Among the above, found %i reco D0 that are decaying in K+pi and are in the requested acceptance, in %d events",fCountRecoAcc,fEvents)); | |
754 | AliInfo(Form("Among the above, found %i reco D0 that are decaying in K+pi and have at least %d clusters in ITS, in %d events",fCountRecoITSClusters,fMinITSClusters,fEvents)); | |
755 | AliInfo(Form("Among the above, found %i reco D0 that are decaying in K+pi and satisfy PPR cuts, in %d events",fCountRecoPPR,fEvents)); | |
6e2e4f50 | 756 | AliInfo(Form("Among the above, found %i reco D0 that are decaying in K+pi and satisfy PID cuts, in %d events",fCountRecoPID,fEvents)); |
f5ec6c30 | 757 | |
758 | // draw some example plots.... | |
759 | ||
174db2b5 | 760 | // AliCFContainer *cont= dynamic_cast<AliCFContainer*> (GetOutputData(2)); |
f5ec6c30 | 761 | AliCFContainer *cont= dynamic_cast<AliCFContainer*> (GetOutputData(2)); |
33aa234e | 762 | if(!cont) { |
763 | printf("CONTAINER NOT FOUND\n"); | |
764 | return; | |
765 | } | |
f5ec6c30 | 766 | // projecting the containers to obtain histograms |
767 | // first argument = variable, second argument = step | |
768 | ||
769 | // MC-level | |
770 | TH1D* h00 = cont->ShowProjection(0,0) ; // pt | |
771 | TH1D* h10 = cont->ShowProjection(1,0) ; // rapidity | |
772 | TH1D* h20 = cont->ShowProjection(2,0) ; // cosThetaStar | |
773 | TH1D* h30 = cont->ShowProjection(3,0) ; // pTpi | |
774 | TH1D* h40 = cont->ShowProjection(4,0) ; // pTK | |
775 | TH1D* h50 = cont->ShowProjection(5,0) ; // cT | |
776 | TH1D* h60 = cont->ShowProjection(6,0) ; // dca | |
777 | TH1D* h70 = cont->ShowProjection(7,0) ; // d0pi | |
778 | TH1D* h80 = cont->ShowProjection(8,0) ; // d0K | |
779 | TH1D* h90 = cont->ShowProjection(9,0) ; // d0xd0 | |
780 | TH1D* h100 = cont->ShowProjection(10,0) ; // cosPointingAngle | |
e8158e56 | 781 | TH1D* h110 = cont->ShowProjection(11,0) ; // phi |
f5ec6c30 | 782 | |
783 | // MC-Acceptance level | |
784 | TH1D* h01 = cont->ShowProjection(0,1) ; // pt | |
785 | TH1D* h11 = cont->ShowProjection(1,1) ; // rapidity | |
786 | TH1D* h21 = cont->ShowProjection(2,1) ; // cosThetaStar | |
787 | TH1D* h31 = cont->ShowProjection(3,1) ; // pTpi | |
788 | TH1D* h41 = cont->ShowProjection(4,1) ; // pTK | |
789 | TH1D* h51 = cont->ShowProjection(5,1) ; // cT | |
790 | TH1D* h61 = cont->ShowProjection(6,1) ; // dca | |
791 | TH1D* h71 = cont->ShowProjection(7,1) ; // d0pi | |
792 | TH1D* h81 = cont->ShowProjection(8,1) ; // d0K | |
793 | TH1D* h91 = cont->ShowProjection(9,1) ; // d0xd0 | |
794 | TH1D* h101 = cont->ShowProjection(10,1) ; // cosPointingAngle | |
e8158e56 | 795 | TH1D* h111 = cont->ShowProjection(11,1) ; // phi |
f5ec6c30 | 796 | |
797 | // Reco-level | |
ae3e319c | 798 | TH1D* h04 = cont->ShowProjection(0,4) ; // pt |
799 | TH1D* h14 = cont->ShowProjection(1,4) ; // rapidity | |
800 | TH1D* h24 = cont->ShowProjection(2,4) ; // cosThetaStar | |
801 | TH1D* h34 = cont->ShowProjection(3,4) ; // pTpi | |
802 | TH1D* h44 = cont->ShowProjection(4,4) ; // pTK | |
803 | TH1D* h54 = cont->ShowProjection(5,4) ; // cT | |
804 | TH1D* h64 = cont->ShowProjection(6,4) ; // dca | |
805 | TH1D* h74 = cont->ShowProjection(7,4) ; // d0pi | |
806 | TH1D* h84 = cont->ShowProjection(8,4) ; // d0K | |
807 | TH1D* h94 = cont->ShowProjection(9,4) ; // d0xd0 | |
808 | TH1D* h104 = cont->ShowProjection(10,4) ; // cosPointingAngle | |
809 | TH1D* h114 = cont->ShowProjection(11,4) ; // phi | |
f5ec6c30 | 810 | |
811 | h00->SetTitle("pT_D0 (GeV/c)"); | |
812 | h10->SetTitle("rapidity"); | |
813 | h20->SetTitle("cosThetaStar"); | |
814 | h30->SetTitle("pT_pi (GeV/c)"); | |
815 | h40->SetTitle("pT_K (Gev/c)"); | |
816 | h50->SetTitle("cT (#mum)"); | |
817 | h60->SetTitle("dca (#mum)"); | |
818 | h70->SetTitle("d0_pi (#mum)"); | |
819 | h80->SetTitle("d0_K (#mum)"); | |
820 | h90->SetTitle("d0xd0 (#mum^2)"); | |
821 | h100->SetTitle("cosPointingAngle"); | |
e8158e56 | 822 | h100->SetTitle("phi (rad)"); |
f5ec6c30 | 823 | |
824 | h00->GetXaxis()->SetTitle("pT_D0 (GeV/c)"); | |
825 | h10->GetXaxis()->SetTitle("rapidity"); | |
826 | h20->GetXaxis()->SetTitle("cosThetaStar"); | |
827 | h30->GetXaxis()->SetTitle("pT_pi (GeV/c)"); | |
828 | h40->GetXaxis()->SetTitle("pT_K (Gev/c)"); | |
829 | h50->GetXaxis()->SetTitle("cT (#mum)"); | |
830 | h60->GetXaxis()->SetTitle("dca (#mum)"); | |
831 | h70->GetXaxis()->SetTitle("d0_pi (#mum)"); | |
832 | h80->GetXaxis()->SetTitle("d0_K (#mum)"); | |
833 | h90->GetXaxis()->SetTitle("d0xd0 (#mum^2)"); | |
834 | h100->GetXaxis()->SetTitle("cosPointingAngle"); | |
e8158e56 | 835 | h110->GetXaxis()->SetTitle("phi (rad)"); |
f5ec6c30 | 836 | |
837 | h01->SetTitle("pT_D0 (GeV/c)"); | |
838 | h11->SetTitle("rapidity"); | |
839 | h21->SetTitle("cosThetaStar"); | |
840 | h31->SetTitle("pT_pi (GeV/c)"); | |
841 | h41->SetTitle("pT_K (Gev/c)"); | |
842 | h51->SetTitle("cT (#mum)"); | |
843 | h61->SetTitle("dca (#mum)"); | |
844 | h71->SetTitle("d0_pi (#mum)"); | |
845 | h81->SetTitle("d0_K (#mum)"); | |
846 | h91->SetTitle("d0xd0 (#mum^2)"); | |
847 | h101->SetTitle("cosPointingAngle"); | |
e8158e56 | 848 | h111->GetXaxis()->SetTitle("phi (rad)"); |
f5ec6c30 | 849 | |
850 | h01->GetXaxis()->SetTitle("pT_D0 (GeV/c)"); | |
851 | h11->GetXaxis()->SetTitle("rapidity"); | |
852 | h21->GetXaxis()->SetTitle("cosThetaStar"); | |
853 | h31->GetXaxis()->SetTitle("pT_pi (GeV/c)"); | |
854 | h41->GetXaxis()->SetTitle("pT_K (Gev/c)"); | |
855 | h51->GetXaxis()->SetTitle("cT (#mum)"); | |
856 | h61->GetXaxis()->SetTitle("dca (#mum)"); | |
857 | h71->GetXaxis()->SetTitle("d0_pi (#mum)"); | |
858 | h81->GetXaxis()->SetTitle("d0_K (#mum)"); | |
859 | h91->GetXaxis()->SetTitle("d0xd0 (#mum^2)"); | |
860 | h101->GetXaxis()->SetTitle("cosPointingAngle"); | |
e8158e56 | 861 | h111->GetXaxis()->SetTitle("phi (rad)"); |
f5ec6c30 | 862 | |
ae3e319c | 863 | h04->SetTitle("pT_D0 (GeV/c)"); |
864 | h14->SetTitle("rapidity"); | |
865 | h24->SetTitle("cosThetaStar"); | |
866 | h34->SetTitle("pT_pi (GeV/c)"); | |
867 | h44->SetTitle("pT_K (Gev/c)"); | |
868 | h54->SetTitle("cT (#mum)"); | |
869 | h64->SetTitle("dca (#mum)"); | |
870 | h74->SetTitle("d0_pi (#mum)"); | |
871 | h84->SetTitle("d0_K (#mum)"); | |
872 | h94->SetTitle("d0xd0 (#mum^2)"); | |
873 | h104->SetTitle("cosPointingAngle"); | |
874 | h114->GetXaxis()->SetTitle("phi (rad)"); | |
875 | ||
876 | h04->GetXaxis()->SetTitle("pT_D0 (GeV/c)"); | |
877 | h14->GetXaxis()->SetTitle("rapidity"); | |
878 | h24->GetXaxis()->SetTitle("cosThetaStar"); | |
879 | h34->GetXaxis()->SetTitle("pT_pi (GeV/c)"); | |
880 | h44->GetXaxis()->SetTitle("pT_K (Gev/c)"); | |
881 | h54->GetXaxis()->SetTitle("cT (#mum)"); | |
882 | h64->GetXaxis()->SetTitle("dca (#mum)"); | |
883 | h74->GetXaxis()->SetTitle("d0_pi (#mum)"); | |
884 | h84->GetXaxis()->SetTitle("d0_K (#mum)"); | |
885 | h94->GetXaxis()->SetTitle("d0xd0 (#mum^2)"); | |
886 | h104->GetXaxis()->SetTitle("cosPointingAngle"); | |
887 | h114->GetXaxis()->SetTitle("phi (rad)"); | |
f5ec6c30 | 888 | |
889 | Double_t max0 = h00->GetMaximum(); | |
890 | Double_t max1 = h10->GetMaximum(); | |
891 | Double_t max2 = h20->GetMaximum(); | |
892 | Double_t max3 = h30->GetMaximum(); | |
893 | Double_t max4 = h40->GetMaximum(); | |
894 | Double_t max5 = h50->GetMaximum(); | |
895 | Double_t max6 = h60->GetMaximum(); | |
896 | Double_t max7 = h70->GetMaximum(); | |
897 | Double_t max8 = h80->GetMaximum(); | |
898 | Double_t max9 = h90->GetMaximum(); | |
899 | Double_t max10 = h100->GetMaximum(); | |
e8158e56 | 900 | Double_t max11 = h110->GetMaximum(); |
f5ec6c30 | 901 | |
902 | h00->GetYaxis()->SetRangeUser(0,max0*1.2); | |
903 | h10->GetYaxis()->SetRangeUser(0,max1*1.2); | |
904 | h20->GetYaxis()->SetRangeUser(0,max2*1.2); | |
905 | h30->GetYaxis()->SetRangeUser(0,max3*1.2); | |
906 | h40->GetYaxis()->SetRangeUser(0,max4*1.2); | |
907 | h50->GetYaxis()->SetRangeUser(0,max5*1.2); | |
908 | h60->GetYaxis()->SetRangeUser(0,max6*1.2); | |
909 | h70->GetYaxis()->SetRangeUser(0,max7*1.2); | |
910 | h80->GetYaxis()->SetRangeUser(0,max8*1.2); | |
911 | h90->GetYaxis()->SetRangeUser(0,max9*1.2); | |
912 | h100->GetYaxis()->SetRangeUser(0,max10*1.2); | |
e8158e56 | 913 | h110->GetYaxis()->SetRangeUser(0,max11*1.2); |
f5ec6c30 | 914 | |
915 | h01->GetYaxis()->SetRangeUser(0,max0*1.2); | |
916 | h11->GetYaxis()->SetRangeUser(0,max1*1.2); | |
917 | h21->GetYaxis()->SetRangeUser(0,max2*1.2); | |
918 | h31->GetYaxis()->SetRangeUser(0,max3*1.2); | |
919 | h41->GetYaxis()->SetRangeUser(0,max4*1.2); | |
920 | h51->GetYaxis()->SetRangeUser(0,max5*1.2); | |
921 | h61->GetYaxis()->SetRangeUser(0,max6*1.2); | |
922 | h71->GetYaxis()->SetRangeUser(0,max7*1.2); | |
923 | h81->GetYaxis()->SetRangeUser(0,max8*1.2); | |
924 | h91->GetYaxis()->SetRangeUser(0,max9*1.2); | |
925 | h101->GetYaxis()->SetRangeUser(0,max10*1.2); | |
e8158e56 | 926 | h111->GetYaxis()->SetRangeUser(0,max11*1.2); |
f5ec6c30 | 927 | |
928 | h00->SetMarkerStyle(20); | |
929 | h10->SetMarkerStyle(24); | |
930 | h20->SetMarkerStyle(21); | |
931 | h30->SetMarkerStyle(25); | |
932 | h40->SetMarkerStyle(27); | |
933 | h50->SetMarkerStyle(28); | |
934 | h60->SetMarkerStyle(20); | |
935 | h70->SetMarkerStyle(24); | |
936 | h80->SetMarkerStyle(21); | |
937 | h90->SetMarkerStyle(25); | |
938 | h100->SetMarkerStyle(27); | |
e8158e56 | 939 | h110->SetMarkerStyle(28); |
f5ec6c30 | 940 | |
941 | h00->SetMarkerColor(2); | |
942 | h10->SetMarkerColor(2); | |
943 | h20->SetMarkerColor(2); | |
944 | h30->SetMarkerColor(2); | |
945 | h40->SetMarkerColor(2); | |
946 | h50->SetMarkerColor(2); | |
947 | h60->SetMarkerColor(2); | |
948 | h70->SetMarkerColor(2); | |
949 | h80->SetMarkerColor(2); | |
950 | h90->SetMarkerColor(2); | |
951 | h100->SetMarkerColor(2); | |
e8158e56 | 952 | h110->SetMarkerColor(2); |
f5ec6c30 | 953 | |
954 | h01->SetMarkerStyle(20) ; | |
955 | h11->SetMarkerStyle(24) ; | |
956 | h21->SetMarkerStyle(21) ; | |
957 | h31->SetMarkerStyle(25) ; | |
958 | h41->SetMarkerStyle(27) ; | |
959 | h51->SetMarkerStyle(28) ; | |
960 | h61->SetMarkerStyle(20); | |
961 | h71->SetMarkerStyle(24); | |
962 | h81->SetMarkerStyle(21); | |
963 | h91->SetMarkerStyle(25); | |
964 | h101->SetMarkerStyle(27); | |
e8158e56 | 965 | h111->SetMarkerStyle(28); |
f5ec6c30 | 966 | |
967 | h01->SetMarkerColor(8); | |
968 | h11->SetMarkerColor(8); | |
969 | h21->SetMarkerColor(8); | |
970 | h31->SetMarkerColor(8); | |
971 | h41->SetMarkerColor(8); | |
972 | h51->SetMarkerColor(8); | |
973 | h61->SetMarkerColor(8); | |
974 | h71->SetMarkerColor(8); | |
975 | h81->SetMarkerColor(8); | |
976 | h91->SetMarkerColor(8); | |
977 | h101->SetMarkerColor(8); | |
e8158e56 | 978 | h111->SetMarkerColor(8); |
f5ec6c30 | 979 | |
ae3e319c | 980 | h04->SetMarkerStyle(20) ; |
981 | h14->SetMarkerStyle(24) ; | |
982 | h24->SetMarkerStyle(21) ; | |
983 | h34->SetMarkerStyle(25) ; | |
984 | h44->SetMarkerStyle(27) ; | |
985 | h54->SetMarkerStyle(28) ; | |
986 | h64->SetMarkerStyle(20); | |
987 | h74->SetMarkerStyle(24); | |
988 | h84->SetMarkerStyle(21); | |
989 | h94->SetMarkerStyle(25); | |
990 | h104->SetMarkerStyle(27); | |
991 | h114->SetMarkerStyle(28); | |
992 | ||
993 | h04->SetMarkerColor(4); | |
994 | h14->SetMarkerColor(4); | |
995 | h24->SetMarkerColor(4); | |
996 | h34->SetMarkerColor(4); | |
997 | h44->SetMarkerColor(4); | |
998 | h54->SetMarkerColor(4); | |
999 | h64->SetMarkerColor(4); | |
1000 | h74->SetMarkerColor(4); | |
1001 | h84->SetMarkerColor(4); | |
1002 | h94->SetMarkerColor(4); | |
1003 | h104->SetMarkerColor(4); | |
1004 | h114->SetMarkerColor(4); | |
f5ec6c30 | 1005 | |
1006 | gStyle->SetCanvasColor(0); | |
1007 | gStyle->SetFrameFillColor(0); | |
1008 | gStyle->SetTitleFillColor(0); | |
1009 | gStyle->SetStatColor(0); | |
1010 | ||
1011 | // drawing in 2 separate canvas for a matter of clearity | |
1012 | TCanvas * c1 =new TCanvas("c1","pT, rapidiy, cosThetaStar",1100,1600); | |
1013 | c1->Divide(3,3); | |
1014 | ||
1015 | c1->cd(1); | |
1016 | h00->Draw("p"); | |
1017 | c1->cd(1); | |
1018 | c1->cd(2); | |
1019 | h01->Draw("p"); | |
1020 | c1->cd(2); | |
1021 | c1->cd(3); | |
ae3e319c | 1022 | h04->Draw("p"); |
f5ec6c30 | 1023 | c1->cd(3); |
1024 | c1->cd(4); | |
1025 | h10->Draw("p"); | |
1026 | c1->cd(4); | |
1027 | c1->cd(5); | |
1028 | h11->Draw("p"); | |
1029 | c1->cd(5); | |
1030 | c1->cd(6); | |
ae3e319c | 1031 | h14->Draw("p"); |
f5ec6c30 | 1032 | c1->cd(6); |
1033 | c1->cd(7); | |
1034 | h20->Draw("p"); | |
1035 | c1->cd(7); | |
1036 | c1->cd(8); | |
1037 | h21->Draw("p"); | |
1038 | c1->cd(8); | |
1039 | c1->cd(9); | |
ae3e319c | 1040 | h24->Draw("p"); |
f5ec6c30 | 1041 | c1->cd(9); |
1042 | c1->cd(); | |
1043 | ||
1044 | TCanvas * c2 =new TCanvas("c2","pTpi, pTK, cT",1100,1600); | |
1045 | c2->Divide(3,3); | |
1046 | c2->cd(1); | |
1047 | h30->Draw("p"); | |
1048 | c2->cd(1); | |
1049 | c2->cd(2); | |
1050 | h31->Draw("p"); | |
1051 | c2->cd(2); | |
1052 | c2->cd(3); | |
ae3e319c | 1053 | h34->Draw("p"); |
f5ec6c30 | 1054 | c2->cd(3); |
1055 | c2->cd(4); | |
1056 | h40->Draw("p"); | |
1057 | c2->cd(4); | |
1058 | c2->cd(5); | |
1059 | h41->Draw("p"); | |
1060 | c2->cd(5); | |
1061 | c2->cd(6); | |
ae3e319c | 1062 | h44->Draw("p"); |
f5ec6c30 | 1063 | c2->cd(6); |
1064 | c2->cd(7); | |
1065 | h50->Draw("p"); | |
1066 | c2->cd(7); | |
1067 | c2->cd(8); | |
1068 | h51->Draw("p"); | |
1069 | c2->cd(8); | |
1070 | c2->cd(9); | |
ae3e319c | 1071 | h54->Draw("p"); |
f5ec6c30 | 1072 | c2->cd(9); |
1073 | c2->cd(); | |
1074 | ||
1075 | TCanvas * c3 =new TCanvas("c3","dca, d0pi, d0K",1100,1600); | |
1076 | c3->Divide(3,3); | |
1077 | c3->cd(1); | |
1078 | h60->Draw("p"); | |
1079 | c3->cd(1); | |
1080 | c3->cd(2); | |
1081 | h61->Draw("p"); | |
1082 | c3->cd(2); | |
1083 | c3->cd(3); | |
ae3e319c | 1084 | h64->Draw("p"); |
f5ec6c30 | 1085 | c3->cd(3); |
1086 | c3->cd(4); | |
1087 | h70->Draw("p"); | |
1088 | c3->cd(4); | |
1089 | c3->cd(5); | |
1090 | h71->Draw("p"); | |
1091 | c3->cd(5); | |
1092 | c3->cd(6); | |
ae3e319c | 1093 | h74->Draw("p"); |
f5ec6c30 | 1094 | c3->cd(6); |
1095 | c3->cd(7); | |
1096 | h80->Draw("p"); | |
1097 | c3->cd(7); | |
1098 | c3->cd(8); | |
1099 | h81->Draw("p"); | |
1100 | c3->cd(8); | |
1101 | c3->cd(9); | |
ae3e319c | 1102 | h84->Draw("p"); |
f5ec6c30 | 1103 | c3->cd(9); |
1104 | c3->cd(); | |
1105 | ||
e8158e56 | 1106 | TCanvas * c4 =new TCanvas("c4","d0xd0, cosPointingAngle, phi",1100,1600); |
1107 | c4->Divide(3,3); | |
f5ec6c30 | 1108 | c4->cd(1); |
1109 | h90->Draw("p"); | |
1110 | c4->cd(1); | |
1111 | c4->cd(2); | |
1112 | h91->Draw("p"); | |
1113 | c4->cd(2); | |
1114 | c4->cd(3); | |
ae3e319c | 1115 | h94->Draw("p"); |
f5ec6c30 | 1116 | c4->cd(3); |
1117 | c4->cd(4); | |
1118 | h100->Draw("p"); | |
1119 | c4->cd(4); | |
1120 | c4->cd(5); | |
1121 | h101->Draw("p"); | |
1122 | c4->cd(5); | |
1123 | c4->cd(6); | |
ae3e319c | 1124 | h104->Draw("p"); |
f5ec6c30 | 1125 | c4->cd(6); |
e8158e56 | 1126 | c4->cd(7); |
1127 | h110->Draw("p"); | |
1128 | c4->cd(7); | |
1129 | c4->cd(8); | |
1130 | h111->Draw("p"); | |
1131 | c4->cd(8); | |
1132 | c4->cd(9); | |
ae3e319c | 1133 | h114->Draw("p"); |
e8158e56 | 1134 | c4->cd(9); |
f5ec6c30 | 1135 | c4->cd(); |
1136 | ||
a5d92cb4 | 1137 | THnSparseD* hcorr = dynamic_cast<THnSparseD*> (GetOutputData(3)); |
1138 | ||
1139 | TH2D* corr1 =hcorr->Projection(0,2); | |
1140 | TH2D* corr2 = hcorr->Projection(1,3); | |
1141 | ||
1142 | TCanvas * c7 =new TCanvas("c7","",800,400); | |
1143 | c7->Divide(2,1); | |
1144 | c7->cd(1); | |
1145 | corr1->Draw("text"); | |
1146 | c7->cd(2); | |
1147 | corr2->Draw("text"); | |
1148 | ||
1149 | ||
c59e1898 | 1150 | TString projection_filename="CFtaskHFprojection"; |
1151 | if(fKeepD0fromBOnly) projection_filename+="_KeepD0fromBOnly"; | |
1152 | else if(fKeepD0fromB) projection_filename+="_KeepD0fromB"; | |
1153 | projection_filename+=".root"; | |
1154 | TFile* file_projection = new TFile(projection_filename.Data(),"RECREATE"); | |
a5d92cb4 | 1155 | |
1156 | corr1->Write(); | |
1157 | corr2->Write(); | |
844d235c | 1158 | h00->Write("pT_D0_step0"); |
1159 | h10->Write("rapidity_step0"); | |
1160 | h20->Write("cosThetaStar_step0"); | |
1161 | h30->Write("pT_pi_step0"); | |
1162 | h40->Write("pT_K_step0"); | |
1163 | h50->Write("cT_step0"); | |
1164 | h60->Write("dca_step0"); | |
1165 | h70->Write("d0_pi_step0"); | |
1166 | h80->Write("d0_K_step0"); | |
1167 | h90->Write("d0xd0_step0"); | |
1168 | h100->Write("cosPointingAngle_step0"); | |
e8158e56 | 1169 | h110->Write("phi_step0"); |
844d235c | 1170 | |
1171 | h01->Write("pT_D0_step1"); | |
1172 | h11->Write("rapidity_step1"); | |
1173 | h21->Write("cosThetaStar_step1"); | |
1174 | h31->Write("pT_pi_step1"); | |
1175 | h41->Write("pT_K_step1"); | |
1176 | h51->Write("cT_step1"); | |
1177 | h61->Write("dca_step1"); | |
1178 | h71->Write("d0_pi_step1"); | |
1179 | h81->Write("d0_K_step1"); | |
1180 | h91->Write("d0xd0_step1"); | |
1181 | h101->Write("cosPointingAngle_step1"); | |
e8158e56 | 1182 | h111->Write("phi_step1"); |
844d235c | 1183 | |
ae3e319c | 1184 | h04->Write("pT_D0_step2"); |
1185 | h14->Write("rapidity_step2"); | |
1186 | h24->Write("cosThetaStar_step2"); | |
1187 | h34->Write("pT_pi_step2"); | |
1188 | h44->Write("pT_K_step2"); | |
1189 | h54->Write("cT_step2"); | |
1190 | h64->Write("dca_step2"); | |
1191 | h74->Write("d0_pi_step2"); | |
844d235c | 1192 | h80->Write("d0_K_step2"); |
ae3e319c | 1193 | h94->Write("d0xd0_step2"); |
1194 | h104->Write("cosPointingAngle_step2"); | |
1195 | h114->Write("phi_step2"); | |
844d235c | 1196 | |
1197 | file_projection->Close(); | |
1198 | ||
a5d92cb4 | 1199 | |
1200 | ||
f5ec6c30 | 1201 | /* |
1202 | c1->SaveAs("Plots/pT_rapidity_cosThetaStar.eps"); | |
1203 | c2->SaveAs("Plots/pTpi_pTK_cT.eps"); | |
1204 | c3->SaveAs("Plots/dca_d0pi_d0TK.eps"); | |
1205 | c4->SaveAs("Plots/d0xd0_cosPointingAngle.eps"); | |
1206 | ||
1207 | c1->SaveAs("Plots/pT_rapidity_cosThetaStar.gif"); | |
1208 | c2->SaveAs("Plots/pTpi_pTK_cT.gif"); | |
1209 | c3->SaveAs("Plots/dca_d0pi_d0TK.gif"); | |
1210 | c4->SaveAs("Plots/d0xd0_cosPointingAngle.gif"); | |
a8b9a95a | 1211 | */ |
f5ec6c30 | 1212 | } |
1213 | ||
1214 | //___________________________________________________________________________ | |
1215 | void AliCFHeavyFlavourTaskMultiVarMultiStep::UserCreateOutputObjects() { | |
1216 | //HERE ONE CAN CREATE OUTPUT OBJECTS, IN PARTICULAR IF THE OBJECT PARAMETERS DON'T NEED | |
1217 | //TO BE SET BEFORE THE EXECUTION OF THE TASK | |
1218 | // | |
1219 | Info("UserCreateOutputObjects","CreateOutputObjects of task %s\n", GetName()); | |
1220 | ||
1221 | //slot #1 | |
1222 | OpenFile(1); | |
a8b9a95a | 1223 | fHistEventsProcessed = new TH1I("CFHFchist0","",1,0,1) ; |
f5ec6c30 | 1224 | } |
1225 | ||
1226 | //___________________________________________________________________________ | |
1227 | Double_t AliCFHeavyFlavourTaskMultiVarMultiStep::CosThetaStar(AliAODMCParticle* mcPart, AliAODMCParticle* mcPartDaughter0, AliAODMCParticle* mcPartDaughter1) const { | |
1228 | ||
1229 | // | |
1230 | // to calculate cos(ThetaStar) for generated particle | |
1231 | // using the K, since mcPartDaughter0 and mcPartDaughter1 always correspond to K and pi respectively | |
1232 | // (see where the function is called) | |
1233 | // | |
1234 | ||
1235 | Int_t pdgvtx = mcPart->GetPdgCode(); | |
1236 | /* if (pdgvtx > 0) { // setting as the first daughter always the kaon, to be used to calculate cos(ThetaStar) | |
1237 | Int_t pdgprong0 = TMath::Abs(mcPartDaughter0->GetPdgCode()); | |
1238 | Int_t pdgprong1 = TMath::Abs(mcPartDaughter1->GetPdgCode()); | |
1239 | AliInfo(Form("D0, with pdgprong0 = %d, pdgprong1 = %d",pdgprong0,pdgprong1)); | |
1240 | AliDebug(2,"This is a D0"); | |
1241 | AliAODMCParticle* mcPartdummy = mcPartDaughter0; | |
1242 | mcPartDaughter0 = mcPartDaughter1; | |
1243 | mcPartDaughter1 = mcPartdummy; | |
1244 | } | |
1245 | else{ | |
1246 | AliInfo("D0bar"); | |
1247 | } | |
1248 | */ | |
1249 | Int_t pdgprong0 = TMath::Abs(mcPartDaughter0->GetPdgCode()); | |
1250 | Int_t pdgprong1 = TMath::Abs(mcPartDaughter1->GetPdgCode()); | |
1251 | if (pdgvtx > 0) { // setting as the first daughter always the kaon, to be used to calculate cos(ThetaStar) | |
1252 | AliDebug(2,"D0"); | |
1253 | } | |
1254 | else{ | |
1255 | AliDebug(2,"D0bar"); | |
1256 | } | |
1257 | if (pdgprong0 == 211){ | |
1258 | AliDebug(2,Form("pdgprong0 = %d, pdgprong1 = %d, switching...",pdgprong0,pdgprong1)); | |
1259 | AliAODMCParticle* mcPartdummy = mcPartDaughter0; | |
1260 | mcPartDaughter0 = mcPartDaughter1; | |
1261 | mcPartDaughter1 = mcPartdummy; | |
1262 | pdgprong0 = TMath::Abs(mcPartDaughter0->GetPdgCode()); | |
1263 | pdgprong1 = TMath::Abs(mcPartDaughter1->GetPdgCode()); | |
1264 | } | |
1265 | ||
1266 | AliDebug(2,Form("After checking, pdgprong0 = %d, pdgprong1 = %d",pdgprong0,pdgprong1)); | |
1267 | Double_t massvtx = TDatabasePDG::Instance()->GetParticle(TMath::Abs(pdgvtx))->Mass(); | |
1268 | Double_t massp[2]; | |
1269 | massp[0] = TDatabasePDG::Instance()->GetParticle(pdgprong0)->Mass(); | |
1270 | massp[1] = TDatabasePDG::Instance()->GetParticle(pdgprong1)->Mass(); | |
1271 | ||
1272 | Double_t pStar = TMath::Sqrt(TMath::Power(massvtx*massvtx-massp[0]*massp[0]-massp[1]*massp[1],2.)-4.*massp[0]*massp[0]*massp[1]*massp[1])/(2.*massvtx); | |
1273 | ||
1274 | Double_t px = mcPartDaughter0->Px()+mcPartDaughter1->Px(); | |
1275 | Double_t py = mcPartDaughter0->Py()+mcPartDaughter1->Py(); | |
1276 | Double_t pz = mcPartDaughter0->Pz()+mcPartDaughter1->Pz(); | |
1277 | Double_t p = TMath::Sqrt(px*px+py*py+pz*pz); | |
1278 | Double_t e = TMath::Sqrt(massvtx*massvtx+p*p); | |
1279 | Double_t beta = p/e; | |
1280 | Double_t gamma = e/massvtx; | |
1281 | TVector3 mom(mcPartDaughter0->Px(),mcPartDaughter0->Py(),mcPartDaughter0->Pz()); | |
1282 | TVector3 momTot(mcPartDaughter0->Px()+mcPartDaughter1->Px(),mcPartDaughter0->Py()+mcPartDaughter1->Py(),mcPartDaughter0->Pz()+mcPartDaughter1->Pz()); | |
1283 | ||
1284 | Double_t qlprong = mom.Dot(momTot)/momTot.Mag(); // analog to AliAODRecoDecay::QlProng(0) | |
1285 | ||
1286 | AliDebug(2,Form("pStar = %f, beta = %f, gamma = %f, qlprong = %f, massp[0] = %f", pStar, beta, gamma, qlprong, massp[0])); | |
1287 | Double_t cts = (qlprong/gamma-beta*TMath::Sqrt(pStar*pStar+massp[0]*massp[0]))/pStar; | |
1288 | AliDebug(2,Form("cts = %f", cts)); | |
1289 | return cts; | |
1290 | } | |
1291 | //___________________________________________________________________________ | |
1292 | Double_t AliCFHeavyFlavourTaskMultiVarMultiStep::CT(AliAODMCParticle* mcPart, AliAODMCParticle* mcPartDaughter0, AliAODMCParticle* mcPartDaughter1) const { | |
1293 | ||
1294 | // | |
1295 | // to calculate cT for generated particle | |
1296 | // | |
1297 | ||
1298 | Double_t xmcPart[3] = {0,0,0}; | |
1299 | Double_t xdaughter0[3] = {0,0,0}; | |
1300 | Double_t xdaughter1[3] = {0,0,0}; | |
1301 | mcPart->XvYvZv(xmcPart); // cm | |
1302 | mcPartDaughter0->XvYvZv(xdaughter0); // cm | |
1303 | mcPartDaughter1->XvYvZv(xdaughter1); //cm | |
1304 | Double_t prodVtxD0 = TMath::Sqrt(xmcPart[0]*xmcPart[0]+ | |
1305 | xmcPart[1]*xmcPart[1]+ | |
1306 | xmcPart[2]*xmcPart[2]); | |
1307 | Double_t prodVtxDaughter0 = TMath::Sqrt(xdaughter0[0]*xdaughter0[0]+ | |
1308 | xdaughter0[1]*xdaughter0[1]+ | |
1309 | xdaughter0[2]*xdaughter0[2]); | |
1310 | Double_t prodVtxDaughter1 = TMath::Sqrt(xdaughter1[0]*xdaughter1[0]+ | |
1311 | xdaughter1[1]*xdaughter1[1]+ | |
1312 | xdaughter1[2]*xdaughter1[2]); | |
1313 | ||
1314 | AliDebug(2, Form("D0: x = %f, y = %f, z = %f, production vertex distance = %f (cm), %f (micron)", xmcPart[0], xmcPart[1], xmcPart[2], prodVtxD0, prodVtxD0*1.E4)); | |
1315 | AliDebug(2, Form("Daughter0: x = %f, y = %f, z = %f, production vertex distance = %f (cm) %f (micron)", xdaughter0[0], xdaughter0[1], xdaughter0[2], prodVtxDaughter0, prodVtxDaughter0*1E4)); | |
1316 | AliDebug(2, Form("Daughter1: x = %f, y = %f, z = %f, production vertex distance = %f (cm) %f (micron)", xdaughter1[0], xdaughter1[1], xdaughter1[2], prodVtxDaughter1, prodVtxDaughter1*1.E4)); | |
1317 | ||
1318 | Double_t cT0 = TMath::Sqrt((xdaughter0[0]-xmcPart[0])*(xdaughter0[0]-xmcPart[0])+ | |
1319 | (xdaughter0[1]-xmcPart[1])*(xdaughter0[1]-xmcPart[1])+ | |
1320 | (xdaughter0[2]-xmcPart[2])*(xdaughter0[2]-xmcPart[2])); | |
1321 | ||
1322 | Double_t cT1 = TMath::Sqrt((xdaughter1[0]-xmcPart[0])*(xdaughter1[0]-xmcPart[0])+ | |
1323 | (xdaughter1[1]-xmcPart[1])*(xdaughter1[1]-xmcPart[1])+ | |
1324 | (xdaughter1[2]-xmcPart[2])*(xdaughter1[2]-xmcPart[2])); | |
1325 | ||
e8158e56 | 1326 | if ((cT0 - cT1)>1E-5) { |
1327 | AliWarning(Form("cT from daughter 0 (%f) different from cT from daughter 1 (%f)! Using cT from daughter 0, but PLEASE, CHECK....",cT0,cT1)); | |
f5ec6c30 | 1328 | } |
1329 | ||
1330 | // calculating cT from cT0 | |
1331 | ||
1332 | Double_t mass = TDatabasePDG::Instance()->GetParticle(mcPart->GetPdgCode())->Mass(); // mcPart->GetPdgCode() should return +/- 421 for the D0/D0bar | |
1333 | Double_t p = mcPart-> P(); | |
1334 | Double_t cT = cT0*mass/p; | |
1335 | AliDebug(2, Form("cT from daughter 0 = %f (micron)", cT0*1E4)); | |
1336 | AliDebug(2, Form("cT from daughter 1 = %f (micron)", cT1*1E4)); | |
1337 | AliDebug(2, Form("cT (with mass = %f and p = %f) = %f (micron)", mass, p, cT*1E4)); | |
1338 | return cT; | |
1339 | } | |
1340 | //________________________________________________________________________________ | |
1341 | Bool_t AliCFHeavyFlavourTaskMultiVarMultiStep::GetGeneratedValuesFromMCParticle(AliAODMCParticle* mcPart, TClonesArray* mcArray, Double_t* vectorMC) const { | |
1342 | ||
1343 | // | |
1344 | // collecting all the necessary info (pt, y, cosThetaStar, ptPi, ptKa, cT) from MC particle | |
1345 | // | |
1346 | ||
1347 | Bool_t isOk = kFALSE; | |
1348 | ||
1349 | // check whether the D0 decays in pi+K | |
1350 | // to be added!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!! | |
1351 | // could use a cut in the CF, but not clear how to define a TDecayChannel | |
1352 | // implemented for the time being as a cut on the number of daughters - see later when | |
1353 | // getting the daughters | |
1354 | ||
1355 | // getting the daughters | |
1356 | Int_t daughter0 = mcPart->GetDaughter(0); | |
1357 | Int_t daughter1 = mcPart->GetDaughter(1); | |
1358 | AliDebug(2, Form("daughter0 = %d and daughter1 = %d",daughter0,daughter1)); | |
1359 | if (daughter0 == 0 || daughter1 == 0) { | |
1360 | AliDebug(2, "Error! the D0 MC doesn't have correct daughters!!"); | |
1361 | return isOk; | |
1362 | } | |
421623bd | 1363 | if (TMath::Abs(daughter1 - daughter0) != 1) { |
f5ec6c30 | 1364 | AliDebug(2, "The D0 MC doesn't come from a 2-prong decay, skipping!!"); |
1365 | return isOk; | |
1366 | } | |
1367 | AliAODMCParticle* mcPartDaughter0 = dynamic_cast<AliAODMCParticle*>(mcArray->At(daughter0)); | |
1368 | AliAODMCParticle* mcPartDaughter1 = dynamic_cast<AliAODMCParticle*>(mcArray->At(daughter1)); | |
1369 | if (!mcPartDaughter0 || !mcPartDaughter1) { | |
1370 | AliWarning("At least one Daughter Particle not found in tree, skipping"); | |
1371 | return isOk; | |
1372 | } | |
2bcc508a | 1373 | if (!(TMath::Abs(mcPartDaughter0->GetPdgCode())==321 && |
1374 | TMath::Abs(mcPartDaughter1->GetPdgCode())==211) && | |
1375 | !(TMath::Abs(mcPartDaughter0->GetPdgCode())==211 && | |
1376 | TMath::Abs(mcPartDaughter1->GetPdgCode())==321)) { | |
1377 | AliDebug(2, "The D0 MC doesn't come from a Kpi decay, skipping!!"); | |
1378 | return isOk; | |
1379 | } | |
1380 | ||
f5ec6c30 | 1381 | Double_t vtx1[3] = {0,0,0}; // primary vertex |
1382 | Double_t vtx2daughter0[3] = {0,0,0}; // secondary vertex from daughter 0 | |
1383 | Double_t vtx2daughter1[3] = {0,0,0}; // secondary vertex from daughter 1 | |
1384 | mcPart->XvYvZv(vtx1); // cm | |
1385 | // getting vertex from daughters | |
1386 | mcPartDaughter0->XvYvZv(vtx2daughter0); // cm | |
1387 | mcPartDaughter1->XvYvZv(vtx2daughter1); //cm | |
1388 | if (vtx2daughter0[0] != vtx2daughter1[0] && vtx2daughter0[1] != vtx2daughter1[1] && vtx2daughter0[2] != vtx2daughter1[2]) { | |
1389 | AliError("Daughters have different secondary vertex, skipping the track"); | |
1390 | return isOk; | |
1391 | } | |
1392 | Int_t nprongs = 2; | |
1393 | Short_t charge = 0; | |
1394 | // always instantiate the AliAODRecoDecay with the positive daughter first, the negative second | |
1395 | AliAODMCParticle* positiveDaugh = mcPartDaughter0; | |
1396 | AliAODMCParticle* negativeDaugh = mcPartDaughter1; | |
1397 | if (mcPartDaughter0->GetPdgCode()<0 && mcPartDaughter1->GetPdgCode()>0){ | |
1398 | // inverting in case the positive daughter is the second one | |
1399 | positiveDaugh = mcPartDaughter1; | |
1400 | negativeDaugh = mcPartDaughter0; | |
1401 | } | |
1402 | // getting the momentum from the daughters | |
1403 | Double_t px[2] = {positiveDaugh->Px(), negativeDaugh->Px()}; | |
1404 | Double_t py[2] = {positiveDaugh->Py(), negativeDaugh->Py()}; | |
1405 | Double_t pz[2] = {positiveDaugh->Pz(), negativeDaugh->Pz()}; | |
1406 | ||
1407 | Double_t d0[2] = {0.,0.}; | |
1408 | ||
1409 | AliAODRecoDecayHF* decay = new AliAODRecoDecayHF(vtx1,vtx2daughter0,nprongs,charge,px,py,pz,d0); | |
1410 | ||
1411 | Double_t cosThetaStar = 0.; | |
1412 | Double_t cosThetaStarD0 = 0.; | |
1413 | Double_t cosThetaStarD0bar = 0.; | |
1414 | cosThetaStarD0 = decay->CosThetaStar(1,421,211,321); | |
1415 | cosThetaStarD0bar = decay->CosThetaStar(0,421,321,211); | |
1416 | if (mcPart->GetPdgCode() == 421){ // D0 | |
1417 | AliDebug(3, Form("D0, with pdgprong0 = %d, pdgprong1 = %d",mcPartDaughter0->GetPdgCode(),mcPartDaughter1->GetPdgCode())); | |
1418 | cosThetaStar = cosThetaStarD0; | |
1419 | } | |
1420 | else if (mcPart->GetPdgCode() == -421){ // D0bar{ | |
1421 | AliDebug(3, Form("D0bar, with pdgprong0 = %d, pdgprong1 = %d",mcPartDaughter0->GetPdgCode(),mcPartDaughter1->GetPdgCode())); | |
1422 | cosThetaStar = cosThetaStarD0bar; | |
1423 | } | |
1424 | else{ | |
1425 | AliWarning("There are problems!! particle was expected to be either a D0 or a D0bar, check..."); | |
1426 | return vectorMC; | |
1427 | } | |
1428 | if (cosThetaStar < -1 || cosThetaStar > 1) { | |
1429 | AliWarning("Invalid value for cosine Theta star, returning"); | |
1430 | return isOk; | |
1431 | } | |
1432 | ||
1433 | // calculate cos(Theta*) according to the method implemented herein | |
1434 | ||
1435 | Double_t cts = 9999.; | |
1436 | cts = CosThetaStar(mcPart, mcPartDaughter0, mcPartDaughter1); | |
1437 | if (cts < -1 || cts > 1) { | |
1438 | AliWarning("Invalid value for cosine Theta star from AliCFHeavyFlavourTaskMultiVarMultiStep method"); | |
1439 | } | |
1440 | if (TMath::Abs(cts - cosThetaStar)>0.001) { | |
1441 | AliError(Form("cosThetaStar automatically calculated different from that manually calculated!!! cosThetaStar = %f, cosThetaStar = %f", cosThetaStar,cts)); | |
1442 | } | |
1443 | ||
1444 | Double_t cT = decay->Ct(421); | |
1445 | ||
1446 | // calculate cT from the method implemented herein | |
1447 | Double_t cT1 = 0.; | |
1448 | cT1 = CT(mcPart, mcPartDaughter0, mcPartDaughter1); | |
1449 | ||
1450 | if (TMath::Abs(cT1 - cT)>0.001) { | |
1451 | AliError(Form("cT automatically calculated different from that manually calculated!!! cT = %f, cT1 = %f",cT,cT1)); | |
1452 | } | |
1453 | ||
1454 | // get the pT of the daughters | |
1455 | ||
1456 | Double_t pTpi = 0.; | |
1457 | Double_t pTK = 0.; | |
1458 | ||
1459 | if (TMath::Abs(mcPartDaughter0->GetPdgCode()) == 211) { | |
1460 | pTpi = mcPartDaughter0->Pt(); | |
1461 | pTK = mcPartDaughter1->Pt(); | |
1462 | } | |
1463 | else { | |
1464 | pTpi = mcPartDaughter1->Pt(); | |
1465 | pTK = mcPartDaughter0->Pt(); | |
1466 | } | |
1467 | ||
1468 | vectorMC[0] = mcPart->Pt(); | |
1469 | vectorMC[1] = mcPart->Y() ; | |
1470 | vectorMC[2] = cosThetaStar ; | |
1471 | vectorMC[3] = pTpi ; | |
1472 | vectorMC[4] = pTK ; | |
1473 | vectorMC[5] = cT*1.E4 ; // in micron | |
e8158e56 | 1474 | vectorMC[6] = mcPart->Phi() ; |
f5ec6c30 | 1475 | isOk = kTRUE; |
1476 | return isOk; | |
1477 | } | |
e8158e56 | 1478 | //_________________________________________________________________________________________________ |
1479 | Int_t AliCFHeavyFlavourTaskMultiVarMultiStep::CheckOrigin(AliAODMCParticle* mcPart, TClonesArray* mcArray)const{ | |
1480 | ||
1481 | // | |
1482 | // checking whether the very mother of the D0 is a charm or a bottom quark | |
1483 | // | |
1484 | ||
1485 | Int_t pdgGranma = 0; | |
1486 | Int_t mother = 0; | |
1487 | mother = mcPart->GetMother(); | |
1488 | Int_t istep = 0; | |
1489 | while (mother >0 ){ | |
1490 | istep++; | |
1491 | AliDebug(2,Form("mother at step %d = %d", istep, mother)); | |
1492 | AliAODMCParticle* mcGranma = dynamic_cast<AliAODMCParticle*>(mcArray->At(mother)); | |
1493 | pdgGranma = mcGranma->GetPdgCode(); | |
1494 | AliDebug(2,Form("Pdg mother at step %d = %d", istep, pdgGranma)); | |
1495 | Int_t abspdgGranma = TMath::Abs(pdgGranma); | |
1496 | if ((abspdgGranma > 500 && abspdgGranma < 600) || (abspdgGranma > 5000 && abspdgGranma < 6000)) { | |
1497 | break; | |
1498 | } | |
1499 | mother = mcGranma->GetMother(); | |
1500 | } | |
1501 | return pdgGranma; | |
1502 | } | |
ae3d971c | 1503 | //__________________________________________________________________________________________________ |
1504 | Double_t AliCFHeavyFlavourTaskMultiVarMultiStep::GetWeight(Float_t pt){ | |
1505 | ||
1506 | // | |
1507 | // calculating the weight to fill the container | |
1508 | // | |
1509 | ||
1510 | // FNOLL central: | |
6d083a82 | 1511 | // p0 = 1.63297e-01 --> 0.322643 |
1512 | // p1 = 2.96275e+00 | |
1513 | // p2 = 2.30301e+00 | |
1514 | // p3 = 2.50000e+00 | |
ae3d971c | 1515 | |
1516 | // PYTHIA | |
6d083a82 | 1517 | // p0 = 1.85906e-01 --> 0.36609 |
1518 | // p1 = 1.94635e+00 | |
1519 | // p2 = 1.40463e+00 | |
1520 | // p3 = 2.50000e+00 | |
ae3d971c | 1521 | |
6d083a82 | 1522 | Double_t func1[4] = {0.322643,2.96275,2.30301,2.5}; |
1523 | Double_t func2[4] = {0.36609,1.94635,1.40463,2.5}; | |
ae3d971c | 1524 | |
1525 | Double_t dndpt_func1 = dNdptFit(pt,func1); | |
1526 | Double_t dndpt_func2 = dNdptFit(pt,func2); | |
1527 | AliDebug(2,Form("pt = %f, FONLL = %f, Pythia = %f, ratio = %f",pt,dndpt_func1,dndpt_func2,dndpt_func1/dndpt_func2)); | |
1528 | return dndpt_func1/dndpt_func2; | |
1529 | } | |
1530 | ||
1531 | //__________________________________________________________________________________________________ | |
1532 | Double_t AliCFHeavyFlavourTaskMultiVarMultiStep::dNdptFit(Float_t pt, Double_t* par){ | |
1533 | ||
1534 | // | |
1535 | // calculating dNdpt | |
1536 | // | |
1537 | ||
1538 | Double_t denom = TMath::Power((pt/par[1]), par[3] ); | |
1539 | Double_t dNdpt = par[0]*pt/TMath::Power(1.+denom, par[2]); | |
1540 | ||
1541 | return dNdpt; | |
1542 | } |