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6ad0bfa0 1/**************************************************************************
2 * Copyright(c) 1998-1999, 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
b2a60966 16/* $Id$ */
17
6ad0bfa0 18//_________________________________________________________________________
efad3788 19// Algorythm class to analyze PHOS events. In this class we demostrate,
20// how to handle reconstructed objects with AliPHSOIndexToObject.
21// As an example we propose sulotions for four most frequently used tasks:
22// DrawRecon(...) - to draw reconstructed objects in the PHOS plane,
23// very usefull in the debuging
24// InvarianMass(...) - to calculate "REAL" and "MIXED" photon pairs
25// invariant mass distributions
26// EnergyResoluition(...) -\ Energy and position resolutions of the
27// PositionResolution(...)-/ reconstructed photons
28// Contamination(...) - calculates contamination of the photon spectrum and
29// pobability of reconstruction of several primaries as
30// kGAMMA,kELECTRON etc.
21cd0c07 31//// User Case:
e4761a49 32// root [0] AliPHOSAnalyze * a = new AliPHOSAnalyze("galice.root")
efad3788 33// // set the file you want to analyse
34// root [1] a->DrawRecon(1,3)
35// // plot RecObjects, made in event 1, PHOS module 3
36// root [2] a->DrawRecon(1,3,"PHOSRP","another PID")
37// // plot RecObjets made in the event 1, PHOS module 3,
38// // produced in the another reconstruction pass,
39// // which produced PHOS RecParticles ("PHOSRP") with
40// // title "another PID".
41// root [3] a->InvariantMass()
42// // Calculates "REAL" and "MIXED" invariant mass
43// // distributions of kGAMMA and (kGAMMA+kNEUTRALEM)
44// // and APPENDS this to the file "invmass.root"
45// root [4] a->PositionResolution()
46// // calculates two dimentional histos: energy of the primary
47// // photon vs distance betwin incedence point and reconstructed
48// // poisition. One can analyse the produced file position.root
49// // with macro PhotonPosition.C
50// root [5] a->EnergyResolution()
51// // calculates two dimentional histos: energy of the primary
52// // photon vs energy of the reconstructed particle. One can
53// // analyse the produced file energy.root
54// // with macro PhotonEnergy.C
55// root [6] a->Contamination()
56// // fills spectra of primary photons and several kinds of
57// // reconstructed particles, so that analyzing them one can
58// // estimate conatmination, efficiency of registration etc.
a3dfe79c 59//*--
efad3788 60//*-- Author: Dmitri Peressounko (SUBATECH & RRC Kurchatov Institute)
6ad0bfa0 61//////////////////////////////////////////////////////////////////////////////
62
baef0810 63
6ad0bfa0 64// --- ROOT system ---
65
92862013 66#include "TFile.h"
67#include "TH1.h"
6ad0bfa0 68#include "TH2.h"
83448140 69#include "TH2.h"
6ad0bfa0 70#include "TParticle.h"
71#include "TClonesArray.h"
6ad0bfa0 72#include "TMath.h"
a88eea6f 73#include "TROOT.h"
6ad0bfa0 74
75// --- Standard library ---
76
77// --- AliRoot header files ---
78
351dd634 79#include "AliLog.h"
88cb7938 80#include "AliStack.h"
e957fea8 81#include "AliPHOSGeometry.h"
6ad0bfa0 82#include "AliPHOSAnalyze.h"
6ad0bfa0 83#include "AliPHOSDigit.h"
efad3788 84#include "AliPHOSSDigitizer.h"
e957fea8 85#include "AliPHOSEmcRecPoint.h"
86#include "AliPHOSCpvRecPoint.h"
6ad0bfa0 87#include "AliPHOSTrackSegment.h"
88#include "AliPHOSRecParticle.h"
88cb7938 89#include "AliPHOSLoader.h"
6ad0bfa0 90
baef0810 91
6ad0bfa0 92ClassImp(AliPHOSAnalyze)
93
6ad0bfa0 94//____________________________________________________________________________
43fbaae1 95AliPHOSAnalyze::AliPHOSAnalyze():
96 fCorrection(1.2), //Value calculated for default parameters of reconstruction
97 fEvt(0),
98 ffileName(),
99 fRunLoader(0)
6ad0bfa0 100{
b2a60966 101 // default ctor (useless)
6ad0bfa0 102}
103
104//____________________________________________________________________________
43fbaae1 105AliPHOSAnalyze::AliPHOSAnalyze(Text_t * fileName):
106 fCorrection(1.05), //Value calculated for default parameters of reconstruction
107 fEvt(0),
108 ffileName(fileName),
109 fRunLoader(0)
6ad0bfa0 110{
83974468 111 // ctor: analyze events from root file "name"
88cb7938 112 fRunLoader = AliRunLoader::Open(fileName,"AliPHOSAnalyze");
113 if (fRunLoader == 0x0)
114 {
351dd634 115 AliError(Form("Error Loading session"));
88cb7938 116 }
6ad0bfa0 117}
118
88714635 119//____________________________________________________________________________
43fbaae1 120AliPHOSAnalyze::AliPHOSAnalyze(const AliPHOSAnalyze & ana):
121 TObject(ana),
122 fCorrection(0.),
123 fEvt(0),
124 ffileName(),
125 fRunLoader(0)
88714635 126{
127 // copy ctor
128 ( (AliPHOSAnalyze &)ana ).Copy(*this) ;
129}
130
6ad0bfa0 131//____________________________________________________________________________
132AliPHOSAnalyze::~AliPHOSAnalyze()
133{
134 // dtor
135
6ad0bfa0 136}
6ad0bfa0 137//____________________________________________________________________________
90cceaf6 138void AliPHOSAnalyze::DrawRecon(Int_t Nevent,Int_t Nmod){
efad3788 139 //Draws pimary particles and reconstructed
140 //digits, RecPoints, RecPartices etc
141 //for event Nevent in the module Nmod.
9688c1dd 142
88cb7938 143 //========== Create ObjectLoader
144 if (fRunLoader == 0x0)
145 {
351dd634 146 AliError(Form("Error Loading session"));
88cb7938 147 return;
148 }
149
150 AliPHOSLoader* gime = dynamic_cast<AliPHOSLoader*>(fRunLoader->GetLoader("PHOSLoader"));
151 if ( gime == 0 )
152 {
351dd634 153 AliError(Form("Could not obtain the Loader object !"));
88cb7938 154 return ;
155 }
156
157
158 if(Nevent >= fRunLoader->GetNumberOfEvents() ) {
351dd634 159 AliError(Form("There is no event %d only %d events available", Nevent, fRunLoader->GetNumberOfEvents() )) ;
1c5cf796 160 return ;
161 }
7b7c1533 162 const AliPHOSGeometry * phosgeom = gime->PHOSGeometry() ;
88cb7938 163 fRunLoader->GetEvent(Nevent);
9688c1dd 164
165 Int_t nx = phosgeom->GetNPhi() ;
166 Int_t nz = phosgeom->GetNZ() ;
167 Float_t * cri= phosgeom->GetEMCAGeometry()->GetCrystalHalfSize() ;
168 Float_t x = nx*cri[0] ;
169 Float_t z = nz*cri[2] ;
170 Int_t nxCPV = (Int_t) (nx*phosgeom->GetPadSizePhi()/(2.*cri[0])) ;
171 Int_t nzCPV = (Int_t) (nz*phosgeom->GetPadSizeZ()/(2.*cri[2])) ;
172
1c5cf796 173 TH2F * emcDigits = (TH2F*) gROOT->FindObject("emcDigits") ;
174 if(emcDigits)
175 emcDigits->Delete() ;
176 emcDigits = new TH2F("emcDigits","EMC digits", nx,-x,x,nz,-z,z);
177 TH2F * emcSdigits =(TH2F*) gROOT->FindObject("emcSdigits") ;
178 if(emcSdigits)
179 emcSdigits->Delete() ;
180 emcSdigits = new TH2F("emcSdigits","EMC sdigits", nx,-x,x,nz,-z,z);
181 TH2F * emcRecPoints = (TH2F*)gROOT->FindObject("emcRecPoints") ;
182 if(emcRecPoints)
183 emcRecPoints->Delete() ;
184 emcRecPoints = new TH2F("emcRecPoints","EMC RecPoints",nx,-x,x,nz,-z,z);
185 TH2F * cpvSdigits =(TH2F*) gROOT->FindObject("cpvSdigits") ;
186 if(cpvSdigits)
187 cpvSdigits->Delete() ;
188 cpvSdigits = new TH2F("cpvSdigits","CPV sdigits", nx,-x,x,nz,-z,z);
189 TH2F * cpvDigits = (TH2F*)gROOT->FindObject("cpvDigits") ;
190 if(cpvDigits)
191 cpvDigits->Delete() ;
192 cpvDigits = new TH2F("cpvDigits","CPV digits", nxCPV,-x,x,nzCPV,-z,z) ;
193 TH2F * cpvRecPoints= (TH2F*)gROOT->FindObject("cpvRecPoints") ;
194 if(cpvRecPoints)
195 cpvRecPoints->Delete() ;
196 cpvRecPoints = new TH2F("cpvRecPoints","CPV RecPoints", nxCPV,-x,x,nzCPV,-z,z) ;
197
198 TH2F * phot = (TH2F*)gROOT->FindObject("phot") ;
199 if(phot)
200 phot->Delete() ;
201 phot = new TH2F("phot","Primary Photon", nx,-x,x,nz,-z,z);
202 TH2F * recPhot = (TH2F*)gROOT->FindObject("recPhot") ;
203 if(recPhot)
204 recPhot->Delete() ;
205 recPhot = new TH2F("recPhot","RecParticles with primary Photon",nx,-x,x,nz,-z,z);
9688c1dd 206
91daaf24 207 //Get Vertex
208 Double_t vtx[3]={0.,0.,0.} ;
209//DP: extract vertex either from Generator or from data
210
88cb7938 211
efad3788 212 //Plot Primary Particles
88cb7938 213
214 if (fRunLoader->Stack() == 0x0) fRunLoader->LoadKinematics("READ");
215
216
7b7c1533 217 const TParticle * primary ;
efad3788 218 Int_t iPrimary ;
88cb7938 219 for ( iPrimary = 0 ; iPrimary < fRunLoader->Stack()->GetNprimary() ; iPrimary++)
efad3788 220 {
88cb7938 221 primary = fRunLoader->Stack()->Particle(iPrimary);
222
223 Int_t primaryType = primary->GetPdgCode();
1c5cf796 224// if( (primaryType == 211)||(primaryType == -211)||(primaryType == 2212)||(primaryType == -2212)
88cb7938 225// ||(primaryType == 11)||(primaryType == -11) ) {
1c5cf796 226// Int_t moduleNumber ;
227// Double_t primX, primZ ;
228// phosgeom->ImpactOnEmc(primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
229// if(moduleNumber==Nmod)
230// charg->Fill(primZ,primX,primary->Energy()) ;
231// }
efad3788 232 if( primaryType == 22 ) {
233 Int_t moduleNumber ;
234 Double_t primX, primZ ;
91daaf24 235 phosgeom->ImpactOnEmc(vtx,primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
7b7c1533 236 if(moduleNumber==Nmod)
efad3788 237 phot->Fill(primZ,primX,primary->Energy()) ;
238 }
1c5cf796 239// else{
240// if( primaryType == -2112 ) {
241// Int_t moduleNumber ;
242// Double_t primX, primZ ;
243// phosgeom->ImpactOnEmc(primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
244// if(moduleNumber==Nmod)
245// nbar->Fill(primZ,primX,primary->Energy()) ;
246// }
247// }
efad3788 248 }
9688c1dd 249
ed4205d8 250
efad3788 251 Int_t iSDigit ;
cce01dd5 252 AliPHOSDigit * sdigit ;
afa51c4e 253 const TClonesArray * sdigits = gime->SDigits() ;
1c5cf796 254 Int_t nsdig[5] = {0,0,0,0,0} ;
9688c1dd 255 if(sdigits){
256 for(iSDigit = 0; iSDigit < sdigits->GetEntriesFast() ; iSDigit++)
efad3788 257 {
88cb7938 258 sdigit = (AliPHOSDigit *) sdigits->At(iSDigit) ;
259 Int_t relid[4];
260 phosgeom->AbsToRelNumbering(sdigit->GetId(), relid) ;
261 Float_t x,z ;
262 phosgeom->RelPosInModule(relid,x,z);
f898e0f3 263 Float_t e = sdigit->GetEnergy() ;
88cb7938 264 nsdig[relid[0]-1]++ ;
265 if(relid[0]==Nmod){
266 if(relid[1]==0) //EMC
267 emcSdigits->Fill(x,z,e) ;
268 if( relid[1]!=0 )
269 cpvSdigits->Fill(x,z,e) ;
270 }
efad3788 271 }
9688c1dd 272 }
21cd0c07 273 TString message ;
274 message = "Number of EMC + CPV SDigits per module: \n" ;
275 message += "%d %d %d %d %d\n";
351dd634 276 AliInfo(Form(message.Data(), nsdig[0], nsdig[1], nsdig[2], nsdig[3], nsdig[4] )) ;
9688c1dd 277
efad3788 278 //Plot digits
279 Int_t iDigit ;
cce01dd5 280 AliPHOSDigit * digit ;
afa51c4e 281 const TClonesArray * digits = gime->Digits();
9688c1dd 282 if(digits) {
cce01dd5 283 for(iDigit = 0; iDigit < digits->GetEntriesFast(); iDigit++)
284 {
88cb7938 285 digit = (AliPHOSDigit *) digits->At(iDigit) ;
286 Int_t relid[4];
287 phosgeom->AbsToRelNumbering(digit->GetId(), relid) ;
288 Float_t x,z ;
289 phosgeom->RelPosInModule(relid,x,z) ;
f898e0f3 290 Float_t e = digit->GetEnergy() ;
88cb7938 291 if(relid[0]==Nmod){
292 if(relid[1]==0) //EMC
293 emcDigits->Fill(x,z,e) ;
294 if( relid[1]!=0 )
295 cpvDigits->Fill(x,z,e) ;
296 }
efad3788 297 }
9688c1dd 298 }
cce01dd5 299
88cb7938 300
efad3788 301 //Plot RecPoints
302 Int_t irecp ;
303 TVector3 pos ;
9688c1dd 304 TObjArray * emcrp = gime->EmcRecPoints() ;
305 if(emcrp) {
cce01dd5 306 for(irecp = 0; irecp < emcrp->GetEntriesFast() ; irecp ++){
9688c1dd 307 AliPHOSEmcRecPoint * emc = (AliPHOSEmcRecPoint *) emcrp->At(irecp) ;
cce01dd5 308 if(emc->GetPHOSMod()==Nmod){
88cb7938 309 emc->GetLocalPosition(pos) ;
310 emcRecPoints->Fill(pos.X(),pos.Z(),emc->GetEnergy());
cce01dd5 311 }
efad3788 312 }
9688c1dd 313 }
cce01dd5 314
9688c1dd 315 TObjArray * cpvrp = gime->CpvRecPoints() ;
316 if(cpvrp) {
cce01dd5 317 for(irecp = 0; irecp < cpvrp->GetEntriesFast() ; irecp ++){
9688c1dd 318 AliPHOSRecPoint * cpv = (AliPHOSCpvRecPoint *) cpvrp->At(irecp) ;
319 if(cpv->GetPHOSMod()==Nmod){
88cb7938 320 cpv->GetLocalPosition(pos) ;
321 cpvRecPoints->Fill(pos.X(),pos.Z(),cpv->GetEnergy());
efad3788 322 }
323 }
9688c1dd 324 }
325
efad3788 326 //Plot RecParticles
9688c1dd 327 AliPHOSRecParticle * recParticle ;
efad3788 328 Int_t iRecParticle ;
9688c1dd 329 TClonesArray * rp = gime->RecParticles() ;
330 TClonesArray * ts = gime->TrackSegments() ;
331 if(rp && ts && emcrp) {
332 for(iRecParticle = 0; iRecParticle < rp->GetEntriesFast() ; iRecParticle++ )
cce01dd5 333 {
88cb7938 334 recParticle = (AliPHOSRecParticle *) rp->At(iRecParticle) ;
335 Int_t moduleNumberRec ;
336 Double_t recX, recZ ;
91daaf24 337 phosgeom->ImpactOnEmc(vtx,recParticle->Theta(), recParticle->Phi(), moduleNumberRec, recX, recZ) ;
88cb7938 338 if(moduleNumberRec == Nmod){
339
340 Double_t minDistance = 5. ;
341 Int_t closestPrimary = -1 ;
342
343 //extract list of primaries: it is stored at EMC RecPoints
344 Int_t emcIndex = ((AliPHOSTrackSegment *) ts->At(recParticle->GetPHOSTSIndex()))->GetEmcIndex() ;
345 Int_t numberofprimaries ;
346 Int_t * listofprimaries = ((AliPHOSRecPoint*) emcrp->At(emcIndex))->GetPrimaries(numberofprimaries) ;
347 Int_t index ;
348 const TParticle * primary ;
349 Double_t distance = minDistance ;
350
351 for ( index = 0 ; index < numberofprimaries ; index++){
352 primary = fRunLoader->Stack()->Particle(listofprimaries[index]) ;
353 Int_t moduleNumber ;
354 Double_t primX, primZ ;
91daaf24 355 phosgeom->ImpactOnEmc(vtx,primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
88cb7938 356 if(moduleNumberRec == moduleNumber)
357 distance = TMath::Sqrt((recX-primX)*(recX-primX)+(recZ-primZ)*(recZ-primZ) ) ;
358 if(minDistance > distance)
359 {
360 minDistance = distance ;
361 closestPrimary = listofprimaries[index] ;
362 }
363 }
364
365 if(closestPrimary >=0 ){
366
367 Int_t primaryType = fRunLoader->Stack()->Particle(closestPrimary)->GetPdgCode() ;
368
369 if(primaryType==22)
370 recPhot->Fill(recZ,recX,recParticle->Energy()) ;
371// else
372// if(primaryType==-2112)
373// recNbar->Fill(recZ,recX,recParticle->Energy()) ;
374 }
375 }
efad3788 376 }
9688c1dd 377
378 }
88cb7938 379
efad3788 380 //Plot made histograms
88cb7938 381 emcSdigits->Draw("box") ;
382 emcDigits->SetLineColor(5) ;
383 emcDigits->Draw("boxsame") ;
9688c1dd 384 emcRecPoints->SetLineColor(2) ;
385 emcRecPoints->Draw("boxsame") ;
386 cpvSdigits->SetLineColor(1) ;
1c5cf796 387 cpvSdigits->Draw("boxsame") ;
2bed9e3e 388
2bed9e3e 389}
e4761a49 390//____________________________________________________________________________
391void AliPHOSAnalyze::Ls(){
392 //lists branches and titles of PHOS-related branches of TreeR, TreeD, TreeS
393
88cb7938 394 if (fRunLoader == 0x0)
395 {
351dd634 396 AliError(Form("Error Loading session"));
88cb7938 397 return;
398 }
399
400 AliPHOSLoader* gime = dynamic_cast<AliPHOSLoader*>(fRunLoader->GetLoader("PHOSLoader"));
401 if ( gime == 0 )
402 {
351dd634 403 AliError(Form("Could not obtain the Loader object !"));
88cb7938 404 return ;
405 }
406
134ce69a 407
e4761a49 408 Int_t ibranch;
409 TObjArray * branches;
410
88cb7938 411 if (gime->TreeS() == 0x0)
412 {
413 if (gime->LoadSDigits("READ"))
414 {
351dd634 415 AliError(Form("Problems with loading summable digits"));
88cb7938 416 return;
417 }
418 }
419 branches = gime->TreeS()->GetListOfBranches() ;
e4761a49 420
21cd0c07 421 TString message ;
422 message = "TreeS:\n" ;
e4761a49 423 for(ibranch = 0;ibranch <branches->GetEntries();ibranch++){
424 TBranch * branch=(TBranch *) branches->At(ibranch) ;
21cd0c07 425 if(strstr(branch->GetName(),"PHOS") ){
426 message += " " ;
427 message += branch->GetName() ;
428 message += " " ;
429 message += branch->GetTitle() ;
430 message += "\n" ;
431 }
e4761a49 432 }
88cb7938 433 if (gime->TreeD() == 0x0)
434 {
435 if (gime->LoadDigits("READ"))
436 {
351dd634 437 AliError(Form("Problems with loading digits"));
88cb7938 438 return;
439 }
440 }
441
442 branches = gime->TreeD()->GetListOfBranches() ;
e4761a49 443
21cd0c07 444 message += "TreeD:\n" ;
e4761a49 445 for(ibranch = 0;ibranch <branches->GetEntries();ibranch++){
446 TBranch * branch=(TBranch *) branches->At(ibranch) ;
21cd0c07 447 if(strstr(branch->GetName(),"PHOS") ) {
448 message += " ";
449 message += branch->GetName() ;
450 message += " " ;
451 message += branch->GetTitle() ;
452 message +="\n" ;
453 }
e4761a49 454 }
e4761a49 455
88cb7938 456 if (gime->TreeR() == 0x0)
457 {
458 if (gime->LoadRecPoints("READ"))
459 {
351dd634 460 AliError(Form("Problems with loading rec points"));
88cb7938 461 return;
462 }
463 }
464
465 branches = gime->TreeR()->GetListOfBranches() ;
e4761a49 466
21cd0c07 467 message += "TreeR: \n" ;
e4761a49 468 for(ibranch = 0;ibranch <branches->GetEntries();ibranch++){
469 TBranch * branch=(TBranch *) branches->At(ibranch) ;
21cd0c07 470 if(strstr(branch->GetName(),"PHOS") ) {
471 message += " " ;
472 message += branch->GetName() ;
473 message += " " ;
474 message += branch->GetTitle() ;
475 message += "\n" ;
476 }
e4761a49 477 }
351dd634 478 AliInfo(Form(message.Data())) ;
e4761a49 479}
2bed9e3e 480//____________________________________________________________________________
90cceaf6 481 void AliPHOSAnalyze::InvariantMass()
2bed9e3e 482{
efad3788 483 // Calculates Real and Mixed invariant mass distributions
88cb7938 484 if (fRunLoader == 0x0)
485 {
351dd634 486 AliError(Form("Error Loading session"));
88cb7938 487 return;
488 }
489
490 AliPHOSLoader* gime = dynamic_cast<AliPHOSLoader*>(fRunLoader->GetLoader("PHOSLoader"));
491 if ( gime == 0 )
492 {
351dd634 493 AliError(Form("Could not obtain the Loader object !"));
88cb7938 494 return ;
495 }
496
497 gime->LoadRecParticles("READ");
498
efad3788 499 Int_t nMixedEvents = 4 ; //# of events used for calculation of 'mixed' distribution
88cb7938 500
501
efad3788 502 //opening file
503 TFile * mfile = new TFile("invmass.root","update");
69183710 504
efad3788 505 //========== Reading /Booking Histograms
506 TH2D * hRealEM = 0 ;
507 hRealEM = (TH2D*) mfile->Get("hRealEM") ;
508 if(hRealEM == 0)
509 hRealEM = new TH2D("hRealEM", "Real for EM particles", 250,0.,1.,40,0.,4.) ;
510 TH2D * hRealPhot = 0 ;
511
512 hRealPhot = (TH2D*)mfile->Get("hRealPhot");
513 if(hRealPhot == 0)
514 hRealPhot = new TH2D("hRealPhot", "Real for kPhoton particles", 250,0.,1.,40,0.,4.) ;
515
516 TH2D * hMixedEM = 0 ;
517 hMixedEM = (TH2D*) mfile->Get("hMixedEM") ;
518 if(hMixedEM == 0)
519 hMixedEM = new TH2D("hMixedEM", "Mixed for EM particles", 250,0.,1.,40,0.,4.) ;
520
521 TH2D * hMixedPhot = 0 ;
522 hMixedPhot = (TH2D*) mfile->Get("hMixedPhot") ;
523 if(hMixedPhot == 0)
524 hMixedPhot = new TH2D("hMixedPhot","Mixed for kPhoton particles",250,0.,1.,40,0.,4.) ;
69183710 525
efad3788 526
527 //reading event and copyng it to TConesArray of all photons
528
529 TClonesArray * allRecParticleList = new TClonesArray("AliPHOSRecParticle", 1000) ;
fd0eb6da 530 Int_t * nRecParticles = new Int_t[nMixedEvents] ; // to mark boundaries of each event in the total list
efad3788 531 for(Int_t index = 0; index < nMixedEvents; index ++)
532 nRecParticles[index] = 0 ;
533 Int_t iRecPhot = 0 ; // number of EM particles in total list
69183710 534
efad3788 535 //scan over all events
536 Int_t event ;
88cb7938 537
538
539 if (fRunLoader->TreeE() == 0x0) fRunLoader->LoadHeader();
540
541
542 Int_t maxevent = (Int_t)fRunLoader->TreeE()->GetEntries();
7b7c1533 543 // for(event = 0; event < gime->MaxEvent(); event++ ){
88cb7938 544
545
546
7b7c1533 547 for(event = 0; event < maxevent; event++ ){
88cb7938 548 fRunLoader->GetEvent(event); //will read only TreeR
efad3788 549
550 //copy EM RecParticles to the "total" list
7b7c1533 551 const AliPHOSRecParticle * recParticle ;
efad3788 552 Int_t iRecParticle ;
9688c1dd 553 TClonesArray * rp = gime->RecParticles() ;
554 if(!rp){
351dd634 555 AliError(Form("Can't find RecParticles")) ;
9688c1dd 556 return ;
557 }
558
559 for(iRecParticle = 0; iRecParticle < rp->GetEntriesFast(); iRecParticle++ )
560 {
88cb7938 561 recParticle = (AliPHOSRecParticle *) rp->At(iRecParticle) ;
562 if((recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST)||
563 (recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMSLOW))
564 new( (*allRecParticleList)[iRecPhot++] ) AliPHOSRecParticle(*recParticle) ;
9688c1dd 565 }
efad3788 566
567 Int_t mevent = event%nMixedEvents ; //event number in the "mixed" cicle
568 nRecParticles[mevent] = iRecPhot-1 ;
9688c1dd 569
efad3788 570 //check, if it is time to calculate invariant mass?
154fc86d 571 Int_t maxevent = (Int_t)gAlice->TreeE()->GetEntries() ;
7b7c1533 572 if((mevent == 0) && (event +1 == maxevent)){
9688c1dd 573
574 // if((mevent == 0) && (event +1 == gime->MaxEvent())){
69183710 575
efad3788 576 //calculate invariant mass:
577 Int_t irp1,irp2 ;
578 Int_t nCurEvent = 0 ;
69183710 579
efad3788 580 for(irp1 = 0; irp1 < allRecParticleList->GetEntries()-1; irp1++){
88cb7938 581 AliPHOSRecParticle * rp1 = (AliPHOSRecParticle *)allRecParticleList->At(irp1) ;
582
583 for(irp2 = irp1+1; irp2 < allRecParticleList->GetEntries(); irp2++){
584 AliPHOSRecParticle * rp2 = (AliPHOSRecParticle *)allRecParticleList->At(irp2) ;
585
586 Double_t invMass ;
587 invMass = (rp1->Energy()+rp2->Energy())*(rp1->Energy()+rp2->Energy())-
588 (rp1->Px()+rp2->Px())*(rp1->Px()+rp2->Px())-
589 (rp1->Py()+rp2->Py())*(rp1->Py()+rp2->Py())-
590 (rp1->Pz()+rp2->Pz())*(rp1->Pz()+rp2->Pz()) ;
591
592 if(invMass> 0)
593 invMass = TMath::Sqrt(invMass);
594
595 Double_t pt ;
596 pt = TMath::Sqrt((rp1->Px()+rp2->Px() )*( rp1->Px()+rp2->Px() ) +
597 (rp1->Py()+rp2->Py() )*( rp1->Py()+rp2->Py() ) );
598
599 if(irp1 > nRecParticles[nCurEvent])
600 nCurEvent++;
601
602 if(irp2 <= nRecParticles[nCurEvent]){ //'Real' event
603 hRealEM->Fill(invMass,pt);
604 if((rp1->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST)&&
605 (rp2->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST) )
606 hRealPhot->Fill(invMass,pt);
607 }
608 else{
609 hMixedEM->Fill(invMass,pt);
610 if((rp1->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST)&&
611 (rp2->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST) )
612 hMixedPhot->Fill(invMass,pt);
613 } //real-mixed
614
efad3788 615 } //loop over second rp
616 }//loop over first rp
ed4205d8 617
efad3788 618 //Make some cleanings
619 for(Int_t index = 0; index < nMixedEvents; index ++)
88cb7938 620 nRecParticles[index] = 0 ;
efad3788 621 iRecPhot = 0 ;
622 allRecParticleList->Clear() ;
69183710 623
efad3788 624 }
625 }
626 delete allRecParticleList ;
69183710 627
efad3788 628 //writing output
629 mfile->cd();
69183710 630
efad3788 631 hRealEM->Write(0,kOverwrite) ;
632 hRealPhot->Write(0,kOverwrite) ;
633 hMixedEM->Write(0,kOverwrite) ;
634 hMixedPhot->Write(0,kOverwrite) ;
69183710 635
efad3788 636 mfile->Write();
637 mfile->Close();
638 delete mfile ;
fd0eb6da 639 delete nRecParticles;
c3b9b3f9 640
641}
642
ed4205d8 643//____________________________________________________________________________
90cceaf6 644 void AliPHOSAnalyze::EnergyResolution()
ed4205d8 645{
efad3788 646 //fills two dimentional histo: energy of primary vs. energy of reconstructed
ed4205d8 647
efad3788 648 TH2F * hAllEnergy = 0 ; //all reconstructed with primary photon
649 TH2F * hPhotEnergy= 0 ; //kGamma with primary photon
650 TH2F * hEMEnergy = 0 ; //electromagnetic with primary photon
ed4205d8 651
efad3788 652 //opening file and reading histograms if any
653 TFile * efile = new TFile("energy.root","update");
ed4205d8 654
efad3788 655 hAllEnergy = (TH2F*)efile->Get("hAllEnergy") ;
656 if(hAllEnergy == 0)
657 hAllEnergy = new TH2F("hAllEnergy", "Energy of any RP with primary photon",100, 0., 5., 100, 0., 5.);
658
659 hPhotEnergy =(TH2F*) efile->Get("hPhotEnergy") ;
660 if(hPhotEnergy == 0)
661 hPhotEnergy = new TH2F("hPhotEnergy", "Energy of kGAMMA with primary photon",100, 0., 5., 100, 0., 5.);
662
663 hEMEnergy =(TH2F*) efile->Get("hEMEnergy");
664 if(hEMEnergy == 0)
665 hEMEnergy = new TH2F("hEMEnergy", "Energy of EM with primary photon", 100, 0., 5., 100, 0., 5.);
ed4205d8 666
ed4205d8 667
88cb7938 668 if (fRunLoader == 0x0)
669 {
351dd634 670 AliError(Form("Error Loading session"));
88cb7938 671 return;
672 }
673
674 AliPHOSLoader* gime = dynamic_cast<AliPHOSLoader*>(fRunLoader->GetLoader("PHOSLoader"));
675 if ( gime == 0 )
676 {
351dd634 677 AliError(Form("Could not obtain the Loader object !"));
88cb7938 678 return ;
679 }
680
681
682 const AliPHOSGeometry * phosgeom = gime->PHOSGeometry();
efad3788 683
684 Int_t ievent;
88cb7938 685 Int_t maxevent = (Int_t)fRunLoader->TreeE()->GetEntries();
686
687 fRunLoader->LoadKinematics("READ");
688 gime->LoadTracks("READ");
689
7b7c1533 690 for ( ievent=0; ievent < maxevent ; ievent++){
efad3788 691
692 //read the current event
88cb7938 693 fRunLoader->GetEvent(ievent) ;
efad3788 694
91daaf24 695 Double_t vtx[3]={0.,0.,0.} ;
696
7b7c1533 697 const AliPHOSRecParticle * recParticle ;
efad3788 698 Int_t iRecParticle ;
9688c1dd 699 TClonesArray * rp = gime->RecParticles() ;
700 if(!rp) {
351dd634 701 AliError(Form("Event %d, Can't find RecParticles ", ievent)) ;
9688c1dd 702 return ;
703 }
704 TClonesArray * ts = gime->TrackSegments() ;
705 if(!ts) {
351dd634 706 AliError(Form("Event %d, Can't find TrackSegments", ievent)) ;
9688c1dd 707 return ;
708 }
709 TObjArray * emcrp = gime->EmcRecPoints() ;
710 if(!emcrp){
351dd634 711 AliError(Form("Event %d, Can't find EmcRecPoints")) ;
9688c1dd 712 return ;
713 }
714
715 for(iRecParticle = 0; iRecParticle < rp->GetEntriesFast() ;iRecParticle++ ){
716 recParticle = (AliPHOSRecParticle *) rp->At(iRecParticle) ;
717
718 //find the closest primary
719 Int_t moduleNumberRec ;
720 Double_t recX, recZ ;
91daaf24 721 phosgeom->ImpactOnEmc(vtx,recParticle->Theta(), recParticle->Phi(), moduleNumberRec, recX, recZ) ;
9688c1dd 722
723 Double_t minDistance = 100. ;
724 Int_t closestPrimary = -1 ;
725
726 //extract list of primaries: it is stored at EMC RecPoints
727 Int_t emcIndex = ((AliPHOSTrackSegment*) ts->At(recParticle->GetPHOSTSIndex()))->GetEmcIndex() ;
728 Int_t numberofprimaries ;
729 Int_t * listofprimaries = ((AliPHOSEmcRecPoint*) emcrp->At(emcIndex))->GetPrimaries(numberofprimaries) ;
730
731 Int_t index ;
732 const TParticle * primary ;
733 Double_t distance = minDistance ;
734 Double_t dX, dZ;
735 Double_t dXmin = 0.;
736 Double_t dZmin = 0. ;
737 for ( index = 0 ; index < numberofprimaries ; index++){
88cb7938 738
739 primary = fRunLoader->Stack()->Particle(listofprimaries[index]) ;
740
741 Int_t moduleNumber ;
742 Double_t primX, primZ ;
91daaf24 743 phosgeom->ImpactOnEmc(vtx,primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
88cb7938 744 if(moduleNumberRec == moduleNumber) {
745 dX = recX - primX;
746 dZ = recZ - primZ;
747 distance = TMath::Sqrt(dX*dX + dZ*dZ) ;
748 if(minDistance > distance) {
749 minDistance = distance ;
750 dXmin = dX;
751 dZmin = dZ;
752 closestPrimary = listofprimaries[index] ;
753 }
754 }
9688c1dd 755 }
756
757 //if found primary, fill histograms
758 if(closestPrimary >=0 ){
88cb7938 759 const TParticle * primary = fRunLoader->Stack()->Particle(closestPrimary) ;
760 if(primary->GetPdgCode() == 22){
761 hAllEnergy->Fill(primary->Energy(), recParticle->Energy()) ;
762 if(recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST){
763 hPhotEnergy->Fill(primary->Energy(), recParticle->Energy() ) ;
764 hEMEnergy->Fill(primary->Energy(), recParticle->Energy() ) ;
765 }
766 else
767 if(recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMSLOW)
768 hEMEnergy->Fill(primary->Energy(), recParticle->Energy() ) ;
769 }
efad3788 770 }
9688c1dd 771 }
efad3788 772 }
9688c1dd 773
efad3788 774 //write filled histograms
775 efile->cd() ;
776 hAllEnergy->Write(0,kOverwrite) ;
777 hPhotEnergy->Write(0,kOverwrite) ;
778 hEMEnergy->Write(0,kOverwrite) ;
779 // efile->Write() ;
780 efile->Close() ;
781 delete efile ;
9688c1dd 782
efad3788 783}
fc879520 784//____________________________________________________________________________
90cceaf6 785void AliPHOSAnalyze::PositionResolution()
fc879520 786{
efad3788 787 //fills two dimentional histo: energy vs. primary - reconstructed distance
788
789
790
791 TH2F * hAllPosition = 0; // Position of any RP with primary photon
792 TH2F * hPhotPosition = 0; // Position of kGAMMA with primary photon
793 TH2F * hEMPosition = 0; // Position of EM with primary photon
794
795 TH1F * hAllPositionX = 0; // X-Position Resolution of photons with photon primary
796 TH1F * hAllPositionZ = 0; // Z-Position Resolution of photons with photon primary
797
798
799 //opening file and reading histograms if any
800 TFile * pfile = new TFile("position.root","update");
801
802 hAllPosition = (TH2F*)pfile->Get("hAllPosition");
803 if(hAllPosition == 0)
804 hAllPosition = new TH2F("hAllPosition",
88cb7938 805 "Position of any RP with primary photon",100, 0., 5., 100, 0., 5.);
efad3788 806 hPhotPosition= (TH2F*)pfile->Get("hPhotPosition");
807 if(hPhotPosition == 0)
808 hPhotPosition = new TH2F("hPhotPosition",
88cb7938 809 "Position of kGAMMA with primary photon",100, 0., 5., 100, 0., 5.);
efad3788 810 hEMPosition= (TH2F*)pfile->Get("hEMPosition") ;
811 if(hEMPosition == 0)
812 hEMPosition = new TH2F("hEMPosition",
88cb7938 813 "Position of EM with primary photon", 100, 0., 5., 100, 0., 5.);
814 hAllPositionX = (TH1F*)pfile->Get("hAllPositionX") ;
efad3788 815 if(hAllPositionX == 0)
816 hAllPositionX = new TH1F("hAllPositionX",
88cb7938 817 "Delta X of any RP with primary photon",100, -2., 2.);
efad3788 818 hAllPositionZ =(TH1F*) pfile->Get("hAllPositionZ") ;
819 if(hAllPositionZ == 0)
820 hAllPositionZ = new TH1F("hAllPositionZ",
88cb7938 821 "Delta X of any RP with primary photon",100, -2., 2.);
efad3788 822
88cb7938 823 if (fRunLoader == 0x0)
824 {
351dd634 825 AliError(Form("Error Loading session"));
88cb7938 826 return;
827 }
828
829 AliPHOSLoader* gime = dynamic_cast<AliPHOSLoader*>(fRunLoader->GetLoader("PHOSLoader"));
830 if ( gime == 0 )
831 {
351dd634 832 AliError(Form("Could not obtain the Loader object !"));
88cb7938 833 return ;
834 }
835
836 if (fRunLoader->TreeE() == 0x0) fRunLoader->LoadHeader();
efad3788 837
7b7c1533 838 const AliPHOSGeometry * phosgeom = gime->PHOSGeometry() ;
a88eea6f 839
efad3788 840 Int_t ievent;
88cb7938 841 Int_t maxevent = (Int_t)fRunLoader->TreeE()->GetEntries() ;
7b7c1533 842 for ( ievent=0; ievent < maxevent ; ievent++){
9688c1dd 843
efad3788 844 //read the current event
88cb7938 845 fRunLoader->GetEvent(ievent) ;
91daaf24 846
847 //DP:Extract vertex position
848 Double_t vtx[3]={0.,0.,0.} ;
849
9688c1dd 850 TClonesArray * rp = gime->RecParticles() ;
851 if(!rp) {
351dd634 852 AliError(Form("Event %d, Can't find RecParticles", ievent)) ;
9688c1dd 853 return ;
854 }
855 TClonesArray * ts = gime->TrackSegments() ;
856 if(!ts) {
351dd634 857 AliError(Form("Event %d, Can't find TrackSegments", ievent)) ;
9688c1dd 858 return ;
859 }
860 TObjArray * emcrp = gime->EmcRecPoints() ;
861 if(!emcrp){
351dd634 862 AliError(Form("Event %d, Can't find EmcRecPoints", ievent)) ;
9688c1dd 863 return ;
864 }
efad3788 865
9688c1dd 866
7b7c1533 867 const AliPHOSRecParticle * recParticle ;
efad3788 868 Int_t iRecParticle ;
9688c1dd 869 for(iRecParticle = 0; iRecParticle < rp->GetEntriesFast(); iRecParticle++ ){
870 recParticle = (AliPHOSRecParticle *) rp->At(iRecParticle) ;
871
872 //find the closest primary
873 Int_t moduleNumberRec ;
874 Double_t recX, recZ ;
91daaf24 875 phosgeom->ImpactOnEmc(vtx,recParticle->Theta(), recParticle->Phi(), moduleNumberRec, recX, recZ) ;
9688c1dd 876
877 Double_t minDistance = 100. ;
878 Int_t closestPrimary = -1 ;
879
880 //extract list of primaries: it is stored at EMC RecPoints
881 Int_t emcIndex = ((AliPHOSTrackSegment*) ts->At(recParticle->GetPHOSTSIndex()))->GetEmcIndex() ;
882 Int_t numberofprimaries ;
883 Int_t * listofprimaries = ((AliPHOSEmcRecPoint *) emcrp->At(emcIndex))->GetPrimaries(numberofprimaries) ;
884
885 Int_t index ;
886 const TParticle * primary ;
887 Double_t distance = minDistance ;
888 Double_t dX = 1000; // incredible number
889 Double_t dZ = 1000; // for the case if no primary will be found
890 Double_t dXmin = 0.;
891 Double_t dZmin = 0. ;
892 for ( index = 0 ; index < numberofprimaries ; index++){
88cb7938 893 primary = fRunLoader->Stack()->Particle(listofprimaries[index]) ;
894 Int_t moduleNumber ;
895 Double_t primX, primZ ;
91daaf24 896 phosgeom->ImpactOnEmc(vtx,primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
88cb7938 897 if(moduleNumberRec == moduleNumber) {
898 dX = recX - primX;
899 dZ = recZ - primZ;
900 distance = TMath::Sqrt(dX*dX + dZ*dZ) ;
901 if(minDistance > distance) {
902 minDistance = distance ;
903 dXmin = dX;
904 dZmin = dZ;
905 closestPrimary = listofprimaries[index] ;
906 }
907 }
9688c1dd 908 }
909
910 //if found primary, fill histograms
911 if(closestPrimary >=0 ){
88cb7938 912 const TParticle * primary = fRunLoader->Stack()->Particle(closestPrimary) ;
913 if(primary->GetPdgCode() == 22){
914 hAllPosition->Fill(primary->Energy(), minDistance) ;
915 hAllPositionX->Fill(primary->Energy(), dX) ;
916 hAllPositionZ->Fill(primary->Energy(), dZ) ;
917 if(recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST){
918 hPhotPosition->Fill(primary->Energy(), minDistance ) ;
919 hEMPosition->Fill(primary->Energy(), minDistance ) ;
920 }
921 else
922 if(recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMSLOW)
923 hEMPosition->Fill(primary->Energy(), minDistance ) ;
924 }
efad3788 925 }
9688c1dd 926 }
efad3788 927 }
928
929 //Write output histgrams
930 pfile->cd() ;
931 hAllPosition->Write(0,kOverwrite) ;
932 hAllPositionX->Write(0,kOverwrite) ;
933 hAllPositionZ->Write(0,kOverwrite) ;
934 hPhotPosition->Write(0,kOverwrite) ;
935 hEMPosition->Write(0,kOverwrite) ;
936 pfile->Write() ;
937 pfile->Close() ;
938 delete pfile ;
9688c1dd 939
940
efad3788 941}
92862013 942//____________________________________________________________________________
90cceaf6 943void AliPHOSAnalyze::Contamination(){
efad3788 944// fills spectra of primary photons and several kinds of
945// reconstructed particles, so that analyzing them one can
946// estimate conatmination, efficiency of registration etc.
947
948 //define several general histograms
949 TH1F * hPrimary = 0; //spectrum (P_t distribution) of primary photons
950 TH1F * hAllRP = 0; //spectrum of all RecParticles in PHOS
951 TH1F * hPhot = 0; //spectrum of kGAMMA RecParticles
efad3788 952 TH1F * hShape = 0; //spectrum of all EM RecParticles
953 TH1F * hVeto = 0; //spectrum of all neutral RecParticles
954
955 //Now separate histograms in accoradance with primary
956 //primary - photon
957 TH1F * hPhotReg = 0; //Registeres as photon
958 TH1F * hPhotEM = 0; //Registered as EM
efad3788 959
960 //primary - n
961 TH1F * hNReg = 0; //Registeres as photon
962 TH1F * hNEM = 0; //Registered as EM
efad3788 963
964 //primary - nBar
965 TH1F * hNBarReg = 0; //Registeres as photon
966 TH1F * hNBarEM = 0; //Registered as EM
efad3788 967
968 //primary - charged hadron (pBar excluded)
969 TH1F * hChargedReg = 0; //Registeres as photon
970 TH1F * hChargedEM = 0; //Registered as EM
efad3788 971
972 //primary - pBar
973 TH1F * hPbarReg = 0; //Registeres as photon
974 TH1F * hPbarEM = 0; //Registered as EM
efad3788 975
976
977 //Reading histograms from the file
978 TFile * cfile = new TFile("contamination.root","update") ;
979
980 //read general histograms
981 hPrimary = (TH1F*) cfile->Get("hPrimary") ;
982 if(hPrimary == 0)
983 hPrimary= new TH1F("hPrimary", "Primary photon spectrum", 100, 0., 5.);
984 hAllRP = (TH1F*)cfile->Get("hAllRP") ;
985 if(hAllRP == 0)
986 hAllRP = new TH1F("hAllRP","All Reconstructed particles", 100, 0., 5.);
987 hPhot = (TH1F*)cfile->Get("hPhot") ;
988 if(hPhot == 0)
989 hPhot = new TH1F("hPhot","All kGAMMA RecParticles",100, 0., 5.);
efad3788 990 hShape = (TH1F*) cfile->Get("hShape") ;
991 if(hShape == 0)
992 hShape = new TH1F("hShape","All particles with EM shower",100, 0., 5.);
993 hVeto= (TH1F*)cfile->Get("hVeto") ;
994 if(hVeto == 0)
995 hVeto = new TH1F("hVeto", "All uncharged particles", 100, 0., 5.);
996
997
998 //primary - photon
999 hPhotReg = (TH1F*)cfile->Get("hPhotReg");
1000 if(hPhotReg == 0)
1001 hPhotReg = new TH1F("hPhotReg","Photon registered as photon",100, 0., 5.);
1002 hPhotEM =(TH1F*)cfile->Get("hPhotEM");
1003 if(hPhotEM== 0)
1004 hPhotEM = new TH1F("hPhotEM", "Photon registered as EM", 100, 0., 5.);
efad3788 1005
1006 //primary - n
1007 hNReg = (TH1F*)cfile->Get("hNReg");
1008 if(hNReg== 0)
1009 hNReg = new TH1F("hNReg", "N registered as photon", 100, 0., 5.);
1010 hNEM = (TH1F*)cfile->Get("hNEM");
1011 if(hNEM== 0)
1012 hNEM = new TH1F("hNEM", "N registered as EM", 100, 0., 5.);
efad3788 1013
1014 //primary - nBar
1015 hNBarReg =(TH1F*)cfile->Get("hNBarReg");
1016 if(hNBarReg== 0)
1017 hNBarReg = new TH1F("hNBarReg", "NBar registered as photon", 100, 0., 5.);
1018 hNBarEM =(TH1F*)cfile->Get("hNBarEM");
1019 if(hNBarEM== 0)
1020 hNBarEM = new TH1F("hNBarEM", "NBar registered as EM", 100, 0., 5.);
efad3788 1021
1022 //primary - charged hadron (pBar excluded)
1023 hChargedReg = (TH1F*)cfile->Get("hChargedReg");
1024 if(hChargedReg== 0)
1025 hChargedReg= new TH1F("hChargedReg", "Charged hadron registered as photon",100, 0., 5.);
1026 hChargedEM = (TH1F*)cfile->Get("hChargedEM");
1027 if(hChargedEM== 0)
1028 hChargedEM= new TH1F("hChargedEM","Charged registered as EM",100, 0., 5.);
9688c1dd 1029
efad3788 1030 //primary - pBar
1031 hPbarReg = (TH1F*)cfile->Get("hPbarReg");
1032 if(hPbarReg== 0)
1033 hPbarReg= new TH1F("hPbarReg", "pBar registered as photon",100, 0., 5.);
1034 hPbarEM = (TH1F*)cfile->Get("hPbarEM");
1035 if(hPbarEM== 0)
1036 hPbarEM= new TH1F("hPbarEM","Pbar registered as EM",100, 0., 5.);
eecb6765 1037
92862013 1038
efad3788 1039 //Now make some initializations
1040
1041 Int_t counter[8][5] ; //# of registered particles
1042 Int_t i1,i2 ;
1043 for(i1 = 0; i1<8; i1++)
1044 for(i2 = 0; i2<5; i2++)
1045 counter[i1][i2] = 0 ;
1046
1047
1048
88cb7938 1049 if (fRunLoader == 0x0)
1050 {
351dd634 1051 AliError(Form("Error Loading session"));
88cb7938 1052 return;
1053 }
1054
1055 AliPHOSLoader* gime = dynamic_cast<AliPHOSLoader*>(fRunLoader->GetLoader("PHOSLoader"));
1056 if ( gime == 0 )
1057 {
351dd634 1058 AliError(Form("Could not obtain the Loader object !"));
88cb7938 1059 return ;
1060 }
1061
1062 if (fRunLoader->TreeE() == 0x0) fRunLoader->LoadHeader();
7b7c1533 1063 const AliPHOSGeometry * phosgeom = gime->PHOSGeometry() ;
154fc86d 1064
efad3788 1065 Int_t ievent;
88cb7938 1066 Int_t maxevent = (Int_t)fRunLoader->TreeE()->GetEntries() ;
7b7c1533 1067 for ( ievent=0; ievent < maxevent ; ievent++){
efad3788 1068
88cb7938 1069 fRunLoader->GetEvent(ievent) ;
efad3788 1070
91daaf24 1071 //DP:Extract vertex position
1072 Double_t vtx[3]={0.,0.,0.} ;
1073
9688c1dd 1074 TClonesArray * rp = gime->RecParticles() ;
1075 if(!rp) {
351dd634 1076 AliError(Form("Event %d, Can't find RecParticles", ievent)) ;
9688c1dd 1077 return ;
1078 }
1079 TClonesArray * ts = gime->TrackSegments() ;
1080 if(!ts) {
351dd634 1081 AliError(Form("Event %d, Can't find TrackSegments", ievent)) ;
9688c1dd 1082 return ;
1083 }
1084 TObjArray * emcrp = gime->EmcRecPoints() ;
1085 if(!emcrp){
351dd634 1086 AliError(Form("Event %d, Can't find EmcRecPoints", ievent)) ;
9688c1dd 1087 return ;
1088 }
1089
1090
efad3788 1091 //=========== Make spectrum of the primary photons
7b7c1533 1092 const TParticle * primary ;
efad3788 1093 Int_t iPrimary ;
88cb7938 1094 for( iPrimary = 0 ; iPrimary < fRunLoader->Stack()->GetNprimary() ; iPrimary++){
1095 primary = fRunLoader->Stack()->Particle(iPrimary) ;
efad3788 1096 Int_t primaryType = primary->GetPdgCode() ;
1097 if( primaryType == 22 ) {
88cb7938 1098 //check, if photons folls onto PHOS
1099 Int_t moduleNumber ;
1100 Double_t primX, primZ ;
91daaf24 1101 phosgeom->ImpactOnEmc(vtx,primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
88cb7938 1102 if(moduleNumber)
1103 hPrimary->Fill(primary->Energy()) ;
1104
efad3788 1105 }
1106
1107 }
9688c1dd 1108
efad3788 1109 //========== Now scan over RecParticles
7b7c1533 1110 const AliPHOSRecParticle * recParticle ;
efad3788 1111 Int_t iRecParticle ;
9688c1dd 1112 for(iRecParticle = 0; iRecParticle < rp->GetEntriesFast(); iRecParticle++ ){
1113 recParticle = (AliPHOSRecParticle *) rp->At(iRecParticle) ;
1114 //fill histo spectrum of all RecParticles
1115 hAllRP->Fill(CorrectedEnergy(recParticle->Energy())) ;
1116
88cb7938 1117 //==========find the closest primary
9688c1dd 1118 Int_t moduleNumberRec ;
1119 Double_t recX, recZ ;
91daaf24 1120 phosgeom->ImpactOnEmc(vtx,recParticle->Theta(), recParticle->Phi(), moduleNumberRec, recX, recZ) ;
9688c1dd 1121
1122 Double_t minDistance = 100. ;
1123 Int_t closestPrimary = -1 ;
1124
1125 //extract list of primaries: it is stored at EMC RecPoints
1126 Int_t emcIndex = ((AliPHOSTrackSegment *) ts->At(recParticle->GetPHOSTSIndex()))->GetEmcIndex() ;
1127 Int_t numberofprimaries ;
1128 Int_t * listofprimaries = ((AliPHOSEmcRecPoint *) emcrp->At(emcIndex))->GetPrimaries(numberofprimaries) ;
1129 Int_t index ;
1130 const TParticle * primary ;
1131 Double_t distance = minDistance ;
1132 Double_t dX, dZ;
1133 Double_t dXmin = 0.;
1134 Double_t dZmin = 0. ;
1135 for ( index = 0 ; index < numberofprimaries ; index++){
88cb7938 1136 primary = fRunLoader->Stack()->Particle(listofprimaries[index]) ;
1137 Int_t moduleNumber ;
1138 Double_t primX, primZ ;
91daaf24 1139 phosgeom->ImpactOnEmc(vtx,primary->Theta(), primary->Phi(), moduleNumber, primX, primZ) ;
88cb7938 1140 if(moduleNumberRec == moduleNumber) {
1141 dX = recX - primX;
1142 dZ = recZ - primZ;
1143 distance = TMath::Sqrt(dX*dX + dZ*dZ) ;
1144 if(minDistance > distance) {
1145 minDistance = distance ;
1146 dXmin = dX;
1147 dZmin = dZ;
1148 closestPrimary = listofprimaries[index] ;
1149 }
1150 }
9688c1dd 1151 }
1152
1153 //===========define the "type" of closest primary
1154 if(closestPrimary >=0 ){
88cb7938 1155 Int_t primaryCode = -1;
1156 const TParticle * primary = fRunLoader->Stack()->Particle(closestPrimary) ;
1157 Int_t primaryType = primary->GetPdgCode() ;
1158 if(primaryType == 22) // photon ?
1159 primaryCode = 0 ;
1160 else
1161 if(primaryType == 2112) // neutron
1162 primaryCode = 1 ;
1163 else
1164 if(primaryType == -2112) // Anti neutron
1165 primaryCode = 2 ;
1166 else
1167 if(primaryType == -2122) //Anti proton
1168 primaryCode = 4 ;
1169 else {
1170 TParticle tempo(*primary) ;
1171 if(tempo.GetPDG()->Charge())
1172 primaryCode = 3 ;
1173 }
1174
1175 //==========Now look at the type of RecParticle
1176 Float_t energy = CorrectedEnergy(recParticle->Energy()) ;
1177 if(recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST){
1178 hPhot->Fill(energy ) ;
1179 switch(primaryCode){
1180 case 0:
1181 hPhotReg->Fill(energy ) ;
1182 break ;
1183 case 1:
1184 hNReg->Fill(energy ) ;
1185 break ;
1186 case 2:
1187 hNBarReg->Fill(energy ) ;
1188 break ;
1189 case 3:
1190 hChargedReg->Fill(energy ) ;
1191 break ;
1192 case 4:
1193 hPbarReg->Fill(energy ) ;
1194 break ;
1195 default:
1196 break ;
1197 }
1198 }
1199 if((recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST)||
1200 (recParticle->GetType() == AliPHOSFastRecParticle::kCHARGEDEMFAST)||
1201 (recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMSLOW)||
1202 (recParticle->GetType() == AliPHOSFastRecParticle::kCHARGEDEMSLOW) ){ //with EM shower
1203 hShape->Fill(energy ) ;
1204 switch(primaryCode){
1205 case 0:
1206 hPhotEM->Fill(energy ) ;
1207 break ;
1208 case 1:
1209 hNEM->Fill(energy ) ;
1210 break ;
1211 case 2:
1212 hNBarEM->Fill(energy ) ;
1213 break ;
1214 case 3:
1215 hChargedEM->Fill(energy ) ;
1216 break ;
1217 case 4:
1218 hPbarEM->Fill(energy ) ;
1219 break ;
1220 default:
1221 break ;
1222 }
1223 }
1224
1225 if((recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMFAST)||
1226 (recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALHAFAST) ||
1227 (recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALEMSLOW) ||
1228 (recParticle->GetType() == AliPHOSFastRecParticle::kNEUTRALHASLOW) ) //nuetral
1229 hVeto->Fill(energy ) ;
1230
1231 //fill number of primaries identified as ...
1232 if(primaryCode >= 0) // Primary code defined
1233 counter[recParticle->GetType()][primaryCode]++ ;
1234
9688c1dd 1235 }
1236
1237 } // no closest primary found
efad3788 1238 }
46b146ca 1239
46b146ca 1240
efad3788 1241 //=================== SaveHistograms
1242 cfile->cd() ;
1243 hPrimary->Write(0,kOverwrite);
1244 hAllRP->Write(0,kOverwrite);
1245 hPhot->Write(0,kOverwrite);
efad3788 1246 hShape->Write(0,kOverwrite);
1247 hVeto->Write(0,kOverwrite);
1248 hPhotReg->Write(0,kOverwrite);
1249 hPhotEM->Write(0,kOverwrite);
efad3788 1250 hNReg ->Write(0,kOverwrite);
1251 hNEM ->Write(0,kOverwrite);
efad3788 1252 hNBarReg ->Write(0,kOverwrite);
1253 hNBarEM ->Write(0,kOverwrite);
efad3788 1254 hChargedReg ->Write(0,kOverwrite);
1255 hChargedEM ->Write(0,kOverwrite);
efad3788 1256 hPbarReg ->Write(0,kOverwrite);
1257 hPbarEM ->Write(0,kOverwrite);
46b146ca 1258
efad3788 1259 cfile->Write(0,kOverwrite);
1260 cfile->Close();
1261 delete cfile ;
1262
69183710 1263
efad3788 1264 //print Final Table
154fc86d 1265 maxevent = (Int_t)gAlice->TreeE()->GetEntries() ;
2aad621e 1266
21cd0c07 1267 TString message ;
1268 message = "Resolutions: Analyzed %d event(s)\n" ;
1269
1270 message += " Primary: Photon Neutron Antineutron Charged hadron AntiProton\n" ;
1271 message += "--------------------------------------------------------------------------------\n" ;
1272 message += " kGAMMA: " ;
1273 message += "%d %d %d %d %d\n" ;
1274 message += " kGAMMAHA: " ;
1275 message += "%d %d %d %d %d\n" ;
1276 message += " kNEUTRALEM: " ;
1277 message += "%d %d %d %d %d\n" ;
1278 message += " kNEUTRALHA: " ;
1279 message += "%d %d %d %d %d\n" ;
1280 message += " kABSURDEM: ";
1281 message += "%d %d %d %d %d\n" ;
1282 message += " kABSURDHA: " ;
1283 message += "%d %d %d %d %d\n" ;
1284 message += " kELECTRON: " ;
1285 message += "%d %d %d %d %d\n" ;
1286 message += " kCHARGEDHA: " ;
1287 message += "%d %d %d %d %d\n" ;
1288
1289 message += "--------------------------------------------------------------------------------" ;
1290
1291
efad3788 1292 Int_t totalInd = 0 ;
1293 for(i1 = 0; i1<8; i1++)
1294 for(i2 = 0; i2<5; i2++)
1295 totalInd+=counter[i1][i2] ;
21cd0c07 1296 message += "Indentified particles: %d" ;
46b146ca 1297
351dd634 1298 AliInfo(Form(message.Data(), maxevent,
21cd0c07 1299 counter[2][0], counter[2][1], counter[2][2], counter[2][3], counter[2][4],
1300 counter[3][0], counter[3][1], counter[3][2], counter[3][3], counter[3][4],
1301 counter[0][0], counter[0][1], counter[0][2], counter[0][3], counter[0][4],
1302 counter[1][0], counter[1][1], counter[1][2], counter[1][3], counter[1][4],
1303 counter[4][0], counter[4][1], counter[4][2], counter[4][3], counter[4][4],
1304 counter[5][0], counter[5][1], counter[5][2], counter[5][3], counter[5][4],
1305 counter[6][0], counter[6][1], counter[6][2], counter[6][3], counter[6][4],
1306 counter[7][0], counter[7][1], counter[7][2], counter[7][3], counter[7][4],
351dd634 1307 totalInd )) ;
21cd0c07 1308
69183710 1309}