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updating primary particle selection for high multiplicty trigger in pythia simulation
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8d2cd130 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
7cdba479 16/* $Id$ */
8d2cd130 17
18//
19// Generator using the TPythia interface (via AliPythia)
20// to generate pp collisions.
21// Using SetNuclei() also nuclear modifications to the structure functions
22// can be taken into account. This makes, of course, only sense for the
23// generation of the products of hard processes (heavy flavor, jets ...)
24//
25// andreas.morsch@cern.ch
26//
27
37b09b91 28#include <TClonesArray.h>
8d2cd130 29#include <TDatabasePDG.h>
30#include <TParticle.h>
31#include <TPDGCode.h>
1058d9df 32#include <TObjArray.h>
8d2cd130 33#include <TSystem.h>
34#include <TTree.h>
8d2cd130 35#include "AliConst.h"
36#include "AliDecayerPythia.h"
37#include "AliGenPythia.h"
cd07c39b 38#include "AliFastGlauber.h"
5fa4b20b 39#include "AliHeader.h"
8d2cd130 40#include "AliGenPythiaEventHeader.h"
41#include "AliPythia.h"
7cdba479 42#include "AliPythiaRndm.h"
8d2cd130 43#include "AliRun.h"
7ea3ea5b 44#include "AliStack.h"
45#include "AliRunLoader.h"
5d12ce38 46#include "AliMC.h"
e2d34d35 47#include "PyquenCommon.h"
8d2cd130 48
014a9521 49ClassImp(AliGenPythia)
8d2cd130 50
e8a8adcd 51
52AliGenPythia::AliGenPythia():
53 AliGenMC(),
54 fProcess(kPyCharm),
efe3b1cd 55 fItune(-1),
e8a8adcd 56 fStrucFunc(kCTEQ5L),
e8a8adcd 57 fKineBias(0.),
58 fTrials(0),
59 fTrialsRun(0),
60 fQ(0.),
61 fX1(0.),
62 fX2(0.),
63 fEventTime(0.),
64 fInteractionRate(0.),
65 fTimeWindow(0.),
66 fCurSubEvent(0),
67 fEventsTime(0),
68 fNev(0),
69 fFlavorSelect(0),
70 fXsection(0.),
71 fPythia(0),
72 fPtHardMin(0.),
73 fPtHardMax(1.e4),
74 fYHardMin(-1.e10),
75 fYHardMax(1.e10),
76 fGinit(1),
77 fGfinal(1),
78 fHadronisation(1),
79 fNpartons(0),
80 fReadFromFile(0),
81 fQuench(0),
cd07c39b 82 fQhat(0.),
83 fLength(0.),
e6fe9b82 84 fImpact(0.),
e8a8adcd 85 fPtKick(1.),
86 fFullEvent(kTRUE),
87 fDecayer(new AliDecayerPythia()),
88 fDebugEventFirst(-1),
89 fDebugEventLast(-1),
90 fEtMinJet(0.),
91 fEtMaxJet(1.e4),
92 fEtaMinJet(-20.),
93 fEtaMaxJet(20.),
94 fPhiMinJet(0.),
95 fPhiMaxJet(2.* TMath::Pi()),
96 fJetReconstruction(kCell),
97 fEtaMinGamma(-20.),
98 fEtaMaxGamma(20.),
99 fPhiMinGamma(0.),
100 fPhiMaxGamma(2. * TMath::Pi()),
101 fPycellEtaMax(2.),
102 fPycellNEta(274),
103 fPycellNPhi(432),
104 fPycellThreshold(0.),
105 fPycellEtSeed(4.),
106 fPycellMinEtJet(10.),
107 fPycellMaxRadius(1.),
108 fStackFillOpt(kFlavorSelection),
109 fFeedDownOpt(kTRUE),
110 fFragmentation(kTRUE),
111 fSetNuclei(kFALSE),
112 fNewMIS(kFALSE),
113 fHFoff(kFALSE),
20e47f08 114 fNucPdf(0),
e8a8adcd 115 fTriggerParticle(0),
116 fTriggerEta(0.9),
700b9416 117 fTriggerMultiplicity(0),
118 fTriggerMultiplicityEta(0),
e8a8adcd 119 fCountMode(kCountAll),
120 fHeader(0),
121 fRL(0),
ec2c406e 122 fFileName(0),
9fd8e520 123 fFragPhotonInCalo(kFALSE),
ec2c406e 124 fPi0InCalo(kFALSE) ,
90a236ce 125 fPhotonInCalo(kFALSE),
9dfe63b3 126 fEleInEMCAL(kFALSE),
9fd8e520 127 fCheckEMCAL(kFALSE),
128 fCheckPHOS(kFALSE),
90a236ce 129 fCheckPHOSeta(kFALSE),
9fd8e520 130 fFragPhotonOrPi0MinPt(0),
90a236ce 131 fPhotonMinPt(0),
9dfe63b3 132 fElectronMinPt(0),
9fd8e520 133 fPHOSMinPhi(219.),
134 fPHOSMaxPhi(321.),
135 fPHOSEta(0.13),
136 fEMCALMinPhi(79.),
137 fEMCALMaxPhi(191.),
138 fEMCALEta(0.71)
ec2c406e 139
8d2cd130 140{
141// Default Constructor
e7c989e4 142 fEnergyCMS = 5500.;
2d9f9817 143 SetNuclei(0,0);
7cdba479 144 if (!AliPythiaRndm::GetPythiaRandom())
e8a8adcd 145 AliPythiaRndm::SetPythiaRandom(GetRandom());
8d2cd130 146}
147
148AliGenPythia::AliGenPythia(Int_t npart)
e8a8adcd 149 :AliGenMC(npart),
150 fProcess(kPyCharm),
efe3b1cd 151 fItune(-1),
e8a8adcd 152 fStrucFunc(kCTEQ5L),
e8a8adcd 153 fKineBias(0.),
154 fTrials(0),
155 fTrialsRun(0),
156 fQ(0.),
157 fX1(0.),
158 fX2(0.),
159 fEventTime(0.),
160 fInteractionRate(0.),
161 fTimeWindow(0.),
162 fCurSubEvent(0),
163 fEventsTime(0),
164 fNev(0),
165 fFlavorSelect(0),
166 fXsection(0.),
167 fPythia(0),
168 fPtHardMin(0.),
169 fPtHardMax(1.e4),
170 fYHardMin(-1.e10),
171 fYHardMax(1.e10),
172 fGinit(kTRUE),
173 fGfinal(kTRUE),
174 fHadronisation(kTRUE),
175 fNpartons(0),
176 fReadFromFile(kFALSE),
177 fQuench(kFALSE),
cd07c39b 178 fQhat(0.),
179 fLength(0.),
e6fe9b82 180 fImpact(0.),
e8a8adcd 181 fPtKick(1.),
182 fFullEvent(kTRUE),
183 fDecayer(new AliDecayerPythia()),
184 fDebugEventFirst(-1),
185 fDebugEventLast(-1),
186 fEtMinJet(0.),
187 fEtMaxJet(1.e4),
188 fEtaMinJet(-20.),
189 fEtaMaxJet(20.),
190 fPhiMinJet(0.),
191 fPhiMaxJet(2.* TMath::Pi()),
192 fJetReconstruction(kCell),
193 fEtaMinGamma(-20.),
194 fEtaMaxGamma(20.),
195 fPhiMinGamma(0.),
196 fPhiMaxGamma(2. * TMath::Pi()),
197 fPycellEtaMax(2.),
198 fPycellNEta(274),
199 fPycellNPhi(432),
200 fPycellThreshold(0.),
201 fPycellEtSeed(4.),
202 fPycellMinEtJet(10.),
203 fPycellMaxRadius(1.),
204 fStackFillOpt(kFlavorSelection),
205 fFeedDownOpt(kTRUE),
206 fFragmentation(kTRUE),
207 fSetNuclei(kFALSE),
208 fNewMIS(kFALSE),
209 fHFoff(kFALSE),
20e47f08 210 fNucPdf(0),
e8a8adcd 211 fTriggerParticle(0),
212 fTriggerEta(0.9),
700b9416 213 fTriggerMultiplicity(0),
214 fTriggerMultiplicityEta(0),
e8a8adcd 215 fCountMode(kCountAll),
216 fHeader(0),
217 fRL(0),
ec2c406e 218 fFileName(0),
9fd8e520 219 fFragPhotonInCalo(kFALSE),
ec2c406e 220 fPi0InCalo(kFALSE) ,
90a236ce 221 fPhotonInCalo(kFALSE),
9dfe63b3 222 fEleInEMCAL(kFALSE),
9fd8e520 223 fCheckEMCAL(kFALSE),
224 fCheckPHOS(kFALSE),
90a236ce 225 fCheckPHOSeta(kFALSE),
9fd8e520 226 fFragPhotonOrPi0MinPt(0),
90a236ce 227 fPhotonMinPt(0),
9dfe63b3 228 fElectronMinPt(0),
9fd8e520 229 fPHOSMinPhi(219.),
230 fPHOSMaxPhi(321.),
231 fPHOSEta(0.13),
232 fEMCALMinPhi(79.),
233 fEMCALMaxPhi(191.),
234 fEMCALEta(0.71)
8d2cd130 235{
236// default charm production at 5. 5 TeV
237// semimuonic decay
238// structure function GRVHO
239//
e7c989e4 240 fEnergyCMS = 5500.;
8d2cd130 241 fName = "Pythia";
242 fTitle= "Particle Generator using PYTHIA";
8d2cd130 243 SetForceDecay();
8d2cd130 244 // Set random number generator
7cdba479 245 if (!AliPythiaRndm::GetPythiaRandom())
246 AliPythiaRndm::SetPythiaRandom(GetRandom());
2d9f9817 247 SetNuclei(0,0);
76d6ba9a 248 }
8d2cd130 249
8d2cd130 250AliGenPythia::~AliGenPythia()
251{
252// Destructor
9d7108a7 253 if(fEventsTime) delete fEventsTime;
254}
255
256void AliGenPythia::SetInteractionRate(Float_t rate,Float_t timewindow)
257{
258// Generate pileup using user specified rate
259 fInteractionRate = rate;
260 fTimeWindow = timewindow;
261 GeneratePileup();
262}
263
264void AliGenPythia::GeneratePileup()
265{
266// Generate sub events time for pileup
267 fEventsTime = 0;
268 if(fInteractionRate == 0.) {
269 Warning("GeneratePileup","Zero interaction specified. Skipping pileup generation.\n");
270 return;
271 }
272
273 Int_t npart = NumberParticles();
274 if(npart < 0) {
275 Warning("GeneratePileup","Negative number of particles. Skipping pileup generation.\n");
276 return;
277 }
278
279 if(fEventsTime) delete fEventsTime;
280 fEventsTime = new TArrayF(npart);
281 TArrayF &array = *fEventsTime;
282 for(Int_t ipart = 0; ipart < npart; ipart++)
283 array[ipart] = 0.;
284
285 Float_t eventtime = 0.;
286 while(1)
287 {
288 eventtime += (AliPythiaRndm::GetPythiaRandom())->Exp(1./fInteractionRate);
289 if(eventtime > fTimeWindow) break;
290 array.Set(array.GetSize()+1);
291 array[array.GetSize()-1] = eventtime;
292 }
293
294 eventtime = 0.;
295 while(1)
296 {
297 eventtime -= (AliPythiaRndm::GetPythiaRandom())->Exp(1./fInteractionRate);
298 if(TMath::Abs(eventtime) > fTimeWindow) break;
299 array.Set(array.GetSize()+1);
300 array[array.GetSize()-1] = eventtime;
301 }
302
303 SetNumberParticles(fEventsTime->GetSize());
8d2cd130 304}
305
592f8307 306void AliGenPythia::SetPycellParameters(Float_t etamax, Int_t neta, Int_t nphi,
307 Float_t thresh, Float_t etseed, Float_t minet, Float_t r)
308{
309// Set pycell parameters
310 fPycellEtaMax = etamax;
311 fPycellNEta = neta;
312 fPycellNPhi = nphi;
313 fPycellThreshold = thresh;
314 fPycellEtSeed = etseed;
315 fPycellMinEtJet = minet;
316 fPycellMaxRadius = r;
317}
318
319
320
8d2cd130 321void AliGenPythia::SetEventListRange(Int_t eventFirst, Int_t eventLast)
322{
323 // Set a range of event numbers, for which a table
324 // of generated particle will be printed
325 fDebugEventFirst = eventFirst;
326 fDebugEventLast = eventLast;
327 if (fDebugEventLast==-1) fDebugEventLast=fDebugEventFirst;
328}
329
330void AliGenPythia::Init()
331{
332// Initialisation
333
334 SetMC(AliPythia::Instance());
b88f5cea 335 fPythia=(AliPythia*) fMCEvGen;
e2bddf81 336
8d2cd130 337//
338 fParentWeight=1./Float_t(fNpart);
339//
8d2cd130 340
341
342 fPythia->SetCKIN(3,fPtHardMin);
343 fPythia->SetCKIN(4,fPtHardMax);
344 fPythia->SetCKIN(7,fYHardMin);
345 fPythia->SetCKIN(8,fYHardMax);
346
20e47f08 347 if (fAProjectile > 0 && fATarget > 0) fPythia->SetNuclei(fAProjectile, fATarget, fNucPdf);
8d2cd130 348 // Fragmentation?
349 if (fFragmentation) {
350 fPythia->SetMSTP(111,1);
351 } else {
352 fPythia->SetMSTP(111,0);
353 }
354
355
356// initial state radiation
357 fPythia->SetMSTP(61,fGinit);
358// final state radiation
359 fPythia->SetMSTP(71,fGfinal);
360// pt - kick
361 if (fPtKick > 0.) {
362 fPythia->SetMSTP(91,1);
688950ef 363 fPythia->SetPARP(91,fPtKick);
364 fPythia->SetPARP(93, 4. * fPtKick);
8d2cd130 365 } else {
366 fPythia->SetMSTP(91,0);
367 }
368
5fa4b20b 369
370 if (fReadFromFile) {
371 fRL = AliRunLoader::Open(fFileName, "Partons");
372 fRL->LoadKinematics();
373 fRL->LoadHeader();
374 } else {
375 fRL = 0x0;
376 }
fdea4387 377 //
efe3b1cd 378 fPythia->ProcInit(fProcess,fEnergyCMS,fStrucFunc, fItune);
fdea4387 379 // Forward Paramters to the AliPythia object
380 fDecayer->SetForceDecay(fForceDecay);
beac474c 381// Switch off Heavy Flavors on request
382 if (fHFoff) {
51387949 383 // Maximum number of quark flavours used in pdf
beac474c 384 fPythia->SetMSTP(58, 3);
51387949 385 // Maximum number of flavors that can be used in showers
beac474c 386 fPythia->SetMSTJ(45, 3);
51387949 387 // Switch off g->QQbar splitting in decay table
388 ((AliDecayerPythia*) fDecayer)->HeavyFlavourOff();
beac474c 389 }
fdea4387 390
51387949 391 fDecayer->Init();
392
8d2cd130 393
394// Parent and Children Selection
395 switch (fProcess)
396 {
65f2626c 397 case kPyOldUEQ2ordered:
398 case kPyOldUEQ2ordered2:
399 case kPyOldPopcorn:
400 break;
8d2cd130 401 case kPyCharm:
402 case kPyCharmUnforced:
adf4d898 403 case kPyCharmPbPbMNR:
aabc7187 404 case kPyCharmpPbMNR:
e0e89f40 405 case kPyCharmppMNR:
406 case kPyCharmppMNRwmi:
8d2cd130 407 fParentSelect[0] = 411;
408 fParentSelect[1] = 421;
409 fParentSelect[2] = 431;
410 fParentSelect[3] = 4122;
9ccc3d0e 411 fParentSelect[4] = 4232;
412 fParentSelect[5] = 4132;
413 fParentSelect[6] = 4332;
8d2cd130 414 fFlavorSelect = 4;
415 break;
adf4d898 416 case kPyD0PbPbMNR:
417 case kPyD0pPbMNR:
418 case kPyD0ppMNR:
8d2cd130 419 fParentSelect[0] = 421;
420 fFlavorSelect = 4;
421 break;
90d7b703 422 case kPyDPlusPbPbMNR:
423 case kPyDPluspPbMNR:
424 case kPyDPlusppMNR:
425 fParentSelect[0] = 411;
426 fFlavorSelect = 4;
427 break;
e0e89f40 428 case kPyDPlusStrangePbPbMNR:
429 case kPyDPlusStrangepPbMNR:
430 case kPyDPlusStrangeppMNR:
431 fParentSelect[0] = 431;
432 fFlavorSelect = 4;
433 break;
8d2cd130 434 case kPyBeauty:
9dfe63b3 435 case kPyBeautyJets:
adf4d898 436 case kPyBeautyPbPbMNR:
437 case kPyBeautypPbMNR:
438 case kPyBeautyppMNR:
e0e89f40 439 case kPyBeautyppMNRwmi:
8d2cd130 440 fParentSelect[0]= 511;
441 fParentSelect[1]= 521;
442 fParentSelect[2]= 531;
443 fParentSelect[3]= 5122;
444 fParentSelect[4]= 5132;
445 fParentSelect[5]= 5232;
446 fParentSelect[6]= 5332;
447 fFlavorSelect = 5;
448 break;
449 case kPyBeautyUnforced:
450 fParentSelect[0] = 511;
451 fParentSelect[1] = 521;
452 fParentSelect[2] = 531;
453 fParentSelect[3] = 5122;
454 fParentSelect[4] = 5132;
455 fParentSelect[5] = 5232;
456 fParentSelect[6] = 5332;
457 fFlavorSelect = 5;
458 break;
459 case kPyJpsiChi:
460 case kPyJpsi:
461 fParentSelect[0] = 443;
462 break;
f529e69b 463 case kPyMbDefault:
8d2cd130 464 case kPyMb:
04081a91 465 case kPyMbWithDirectPhoton:
8d2cd130 466 case kPyMbNonDiffr:
d7de4a67 467 case kPyMbMSEL1:
8d2cd130 468 case kPyJets:
469 case kPyDirectGamma:
e33acb67 470 case kPyLhwgMb:
8d2cd130 471 break;
589380c6 472 case kPyW:
0f6ee828 473 case kPyZ:
589380c6 474 break;
8d2cd130 475 }
476//
592f8307 477//
478// JetFinder for Trigger
479//
480// Configure detector (EMCAL like)
481//
d7de4a67 482 fPythia->SetPARU(51, fPycellEtaMax);
483 fPythia->SetMSTU(51, fPycellNEta);
484 fPythia->SetMSTU(52, fPycellNPhi);
592f8307 485//
486// Configure Jet Finder
487//
d7de4a67 488 fPythia->SetPARU(58, fPycellThreshold);
489 fPythia->SetPARU(52, fPycellEtSeed);
490 fPythia->SetPARU(53, fPycellMinEtJet);
491 fPythia->SetPARU(54, fPycellMaxRadius);
492 fPythia->SetMSTU(54, 2);
592f8307 493//
8d2cd130 494// This counts the total number of calls to Pyevnt() per run.
495 fTrialsRun = 0;
496 fQ = 0.;
497 fX1 = 0.;
498 fX2 = 0.;
499 fNev = 0 ;
500//
1d568bc2 501//
502//
8d2cd130 503 AliGenMC::Init();
1d568bc2 504//
505//
506//
507 if (fSetNuclei) {
508 fDyBoost = 0;
509 Warning("Init","SetNuclei used. Use SetProjectile + SetTarget instead. fDyBoost has been reset to 0\n");
510 }
d7de4a67 511
cd07c39b 512 fPythia->SetPARJ(200, 0.0);
513 fPythia->SetPARJ(199, 0.0);
514 fPythia->SetPARJ(198, 0.0);
515 fPythia->SetPARJ(197, 0.0);
516
517 if (fQuench == 1) {
5fa4b20b 518 fPythia->InitQuenching(0., 0.1, 0.6e6, 0);
32d6ef7d 519 }
3a709cfa 520
b976f7d8 521 if (fQuench == 3) {
522 // Nestor's change of the splittings
523 fPythia->SetPARJ(200, 0.8);
524 fPythia->SetMSTJ(41, 1); // QCD radiation only
525 fPythia->SetMSTJ(42, 2); // angular ordering
526 fPythia->SetMSTJ(44, 2); // option to run alpha_s
527 fPythia->SetMSTJ(47, 0); // No correction back to hard scattering element
528 fPythia->SetMSTJ(50, 0); // No coherence in first branching
529 fPythia->SetPARJ(82, 1.); // Cut off for parton showers
cd07c39b 530 } else if (fQuench == 4) {
531 // Armesto-Cunqueiro-Salgado change of the splittings.
532 AliFastGlauber* glauber = AliFastGlauber::Instance();
533 glauber->Init(2);
534 //read and store transverse almonds corresponding to differnt
535 //impact parameters.
cd07c39b 536 glauber->SetCentralityClass(0.,0.1);
537 fPythia->SetPARJ(200, 1.);
538 fPythia->SetPARJ(198, fQhat);
539 fPythia->SetPARJ(199, fLength);
cd07c39b 540 fPythia->SetMSTJ(42, 2); // angular ordering
541 fPythia->SetMSTJ(44, 2); // option to run alpha_s
cd07c39b 542 fPythia->SetPARJ(82, 1.); // Cut off for parton showers
b976f7d8 543 }
8d2cd130 544}
545
546void AliGenPythia::Generate()
547{
548// Generate one event
19ef8cf0 549 if (!fPythia) fPythia=(AliPythia*) fMCEvGen;
8d2cd130 550 fDecayer->ForceDecay();
551
552 Float_t polar[3] = {0,0,0};
553 Float_t origin[3] = {0,0,0};
a920faf9 554 Float_t p[4];
8d2cd130 555// converts from mm/c to s
556 const Float_t kconv=0.001/2.999792458e8;
557//
558 Int_t nt=0;
559 Int_t jev=0;
560 Int_t j, kf;
561 fTrials=0;
f913ec4f 562 fEventTime = 0.;
563
2590ccf9 564
8d2cd130 565
566 // Set collision vertex position
2590ccf9 567 if (fVertexSmear == kPerEvent) Vertex();
568
8d2cd130 569// event loop
570 while(1)
571 {
32d6ef7d 572//
5fa4b20b 573// Produce event
32d6ef7d 574//
32d6ef7d 575//
5fa4b20b 576// Switch hadronisation off
577//
578 fPythia->SetMSTJ(1, 0);
cd07c39b 579
580 if (fQuench ==4){
581 Double_t bimp;
582 // Quenching comes through medium-modified splitting functions.
583 AliFastGlauber::Instance()->GetRandomBHard(bimp);
e6fe9b82 584 fPythia->SetPARJ(197, bimp);
585 fImpact = bimp;
cd07c39b 586 }
32d6ef7d 587//
5fa4b20b 588// Either produce new event or read partons from file
589//
590 if (!fReadFromFile) {
beac474c 591 if (!fNewMIS) {
592 fPythia->Pyevnt();
593 } else {
594 fPythia->Pyevnw();
595 }
5fa4b20b 596 fNpartons = fPythia->GetN();
597 } else {
33c3c91a 598 printf("Loading Event %d\n",AliRunLoader::Instance()->GetEventNumber());
599 fRL->GetEvent(AliRunLoader::Instance()->GetEventNumber());
5fa4b20b 600 fPythia->SetN(0);
601 LoadEvent(fRL->Stack(), 0 , 1);
602 fPythia->Pyedit(21);
603 }
604
32d6ef7d 605//
606// Run quenching routine
607//
5fa4b20b 608 if (fQuench == 1) {
609 fPythia->Quench();
610 } else if (fQuench == 2){
611 fPythia->Pyquen(208., 0, 0.);
b976f7d8 612 } else if (fQuench == 3) {
613 // Quenching is via multiplicative correction of the splittings
5fa4b20b 614 }
b976f7d8 615
32d6ef7d 616//
5fa4b20b 617// Switch hadronisation on
32d6ef7d 618//
20e47f08 619 if (fHadronisation) {
620 fPythia->SetMSTJ(1, 1);
5fa4b20b 621//
622// .. and perform hadronisation
aea21c57 623// printf("Calling hadronisation %d\n", fPythia->GetN());
20e47f08 624 fPythia->Pyexec();
625 }
8d2cd130 626 fTrials++;
8507138f 627 fPythia->ImportParticles(&fParticles,"All");
1d568bc2 628 Boost();
8d2cd130 629//
630//
631//
632 Int_t i;
633
dbd64db6 634 fNprimaries = 0;
8507138f 635 Int_t np = fParticles.GetEntriesFast();
5fa4b20b 636
7c21f297 637 if (np == 0) continue;
8d2cd130 638//
2590ccf9 639
8d2cd130 640//
641 Int_t* pParent = new Int_t[np];
642 Int_t* pSelected = new Int_t[np];
643 Int_t* trackIt = new Int_t[np];
5fa4b20b 644 for (i = 0; i < np; i++) {
8d2cd130 645 pParent[i] = -1;
646 pSelected[i] = 0;
647 trackIt[i] = 0;
648 }
649
650 Int_t nc = 0; // Total n. of selected particles
651 Int_t nParents = 0; // Selected parents
652 Int_t nTkbles = 0; // Trackable particles
f529e69b 653 if (fProcess != kPyMbDefault &&
654 fProcess != kPyMb &&
04081a91 655 fProcess != kPyMbWithDirectPhoton &&
f529e69b 656 fProcess != kPyJets &&
8d2cd130 657 fProcess != kPyDirectGamma &&
589380c6 658 fProcess != kPyMbNonDiffr &&
d7de4a67 659 fProcess != kPyMbMSEL1 &&
f529e69b 660 fProcess != kPyW &&
661 fProcess != kPyZ &&
662 fProcess != kPyCharmppMNRwmi &&
9dfe63b3 663 fProcess != kPyBeautyppMNRwmi &&
664 fProcess != kPyBeautyJets) {
8d2cd130 665
5fa4b20b 666 for (i = 0; i < np; i++) {
8507138f 667 TParticle* iparticle = (TParticle *) fParticles.At(i);
8d2cd130 668 Int_t ks = iparticle->GetStatusCode();
669 kf = CheckPDGCode(iparticle->GetPdgCode());
670// No initial state partons
671 if (ks==21) continue;
672//
673// Heavy Flavor Selection
674//
675 // quark ?
676 kf = TMath::Abs(kf);
677 Int_t kfl = kf;
9ff6c04c 678 // Resonance
f913ec4f 679
9ff6c04c 680 if (kfl > 100000) kfl %= 100000;
183a5ca9 681 if (kfl > 10000) kfl %= 10000;
8d2cd130 682 // meson ?
683 if (kfl > 10) kfl/=100;
684 // baryon
685 if (kfl > 10) kfl/=10;
8d2cd130 686 Int_t ipa = iparticle->GetFirstMother()-1;
687 Int_t kfMo = 0;
f913ec4f 688//
689// Establish mother daughter relation between heavy quarks and mesons
690//
691 if (kf >= fFlavorSelect && kf <= 6) {
692 Int_t idau = iparticle->GetFirstDaughter() - 1;
693 if (idau > -1) {
8507138f 694 TParticle* daughter = (TParticle *) fParticles.At(idau);
f913ec4f 695 Int_t pdgD = daughter->GetPdgCode();
696 if (pdgD == 91 || pdgD == 92) {
697 Int_t jmin = daughter->GetFirstDaughter() - 1;
698 Int_t jmax = daughter->GetLastDaughter() - 1;
2ab330c9 699 for (Int_t jp = jmin; jp <= jmax; jp++)
700 ((TParticle *) fParticles.At(jp))->SetFirstMother(i+1);
f913ec4f 701 } // is string or cluster
702 } // has daughter
703 } // heavy quark
8d2cd130 704
f913ec4f 705
8d2cd130 706 if (ipa > -1) {
8507138f 707 TParticle * mother = (TParticle *) fParticles.At(ipa);
8d2cd130 708 kfMo = TMath::Abs(mother->GetPdgCode());
709 }
f913ec4f 710
8d2cd130 711 // What to keep in Stack?
712 Bool_t flavorOK = kFALSE;
713 Bool_t selectOK = kFALSE;
714 if (fFeedDownOpt) {
32d6ef7d 715 if (kfl >= fFlavorSelect) flavorOK = kTRUE;
8d2cd130 716 } else {
32d6ef7d 717 if (kfl > fFlavorSelect) {
718 nc = -1;
719 break;
720 }
721 if (kfl == fFlavorSelect) flavorOK = kTRUE;
8d2cd130 722 }
723 switch (fStackFillOpt) {
724 case kFlavorSelection:
32d6ef7d 725 selectOK = kTRUE;
726 break;
8d2cd130 727 case kParentSelection:
32d6ef7d 728 if (ParentSelected(kf) || kf <= 10) selectOK = kTRUE;
729 break;
8d2cd130 730 }
731 if (flavorOK && selectOK) {
732//
733// Heavy flavor hadron or quark
734//
735// Kinematic seletion on final state heavy flavor mesons
736 if (ParentSelected(kf) && !KinematicSelection(iparticle, 0))
737 {
9ff6c04c 738 continue;
8d2cd130 739 }
740 pSelected[i] = 1;
741 if (ParentSelected(kf)) ++nParents; // Update parent count
742// printf("\n particle (HF) %d %d %d", i, pSelected[i], kf);
743 } else {
744// Kinematic seletion on decay products
745 if (fCutOnChild && ParentSelected(kfMo) && ChildSelected(kf)
9ff6c04c 746 && !KinematicSelection(iparticle, 1))
8d2cd130 747 {
9ff6c04c 748 continue;
8d2cd130 749 }
750//
751// Decay products
752// Select if mother was selected and is not tracked
753
754 if (pSelected[ipa] &&
755 !trackIt[ipa] && // mother will be tracked ?
756 kfMo != 5 && // mother is b-quark, don't store fragments
757 kfMo != 4 && // mother is c-quark, don't store fragments
758 kf != 92) // don't store string
759 {
760//
761// Semi-stable or de-selected: diselect decay products:
762//
763//
764 if (pSelected[i] == -1 || fDecayer->GetLifetime(kf) > fMaxLifeTime)
765 {
766 Int_t ipF = iparticle->GetFirstDaughter();
767 Int_t ipL = iparticle->GetLastDaughter();
768 if (ipF > 0) for (j = ipF-1; j < ipL; j++) pSelected[j] = -1;
769 }
770// printf("\n particle (decay) %d %d %d", i, pSelected[i], kf);
771 pSelected[i] = (pSelected[i] == -1) ? 0 : 1;
772 }
773 }
774 if (pSelected[i] == -1) pSelected[i] = 0;
775 if (!pSelected[i]) continue;
776 // Count quarks only if you did not include fragmentation
777 if (fFragmentation && kf <= 10) continue;
9ff6c04c 778
8d2cd130 779 nc++;
780// Decision on tracking
781 trackIt[i] = 0;
782//
783// Track final state particle
784 if (ks == 1) trackIt[i] = 1;
785// Track semi-stable particles
d25cfd65 786 if ((ks == 1) || (fDecayer->GetLifetime(kf) > fMaxLifeTime)) trackIt[i] = 1;
8d2cd130 787// Track particles selected by process if undecayed.
788 if (fForceDecay == kNoDecay) {
789 if (ParentSelected(kf)) trackIt[i] = 1;
790 } else {
791 if (ParentSelected(kf)) trackIt[i] = 0;
792 }
793 if (trackIt[i] == 1) ++nTkbles; // Update trackable counter
794//
795//
796
797 } // particle selection loop
798 if (nc > 0) {
799 for (i = 0; i<np; i++) {
800 if (!pSelected[i]) continue;
8507138f 801 TParticle * iparticle = (TParticle *) fParticles.At(i);
8d2cd130 802 kf = CheckPDGCode(iparticle->GetPdgCode());
803 Int_t ks = iparticle->GetStatusCode();
804 p[0] = iparticle->Px();
805 p[1] = iparticle->Py();
806 p[2] = iparticle->Pz();
a920faf9 807 p[3] = iparticle->Energy();
808
2590ccf9 809 origin[0] = fVertex[0]+iparticle->Vx()/10; // [cm]
810 origin[1] = fVertex[1]+iparticle->Vy()/10; // [cm]
811 origin[2] = fVertex[2]+iparticle->Vz()/10; // [cm]
812
8d2cd130 813 Float_t tof = kconv*iparticle->T();
814 Int_t ipa = iparticle->GetFirstMother()-1;
815 Int_t iparent = (ipa > -1) ? pParent[ipa] : -1;
a920faf9 816
817 PushTrack(fTrackIt*trackIt[i], iparent, kf,
818 p[0], p[1], p[2], p[3],
819 origin[0], origin[1], origin[2], tof,
820 polar[0], polar[1], polar[2],
821 kPPrimary, nt, 1., ks);
8d2cd130 822 pParent[i] = nt;
dbd64db6 823 KeepTrack(nt);
824 fNprimaries++;
642f15cf 825 } // PushTrack loop
8d2cd130 826 }
827 } else {
828 nc = GenerateMB();
829 } // mb ?
f913ec4f 830
831 GetSubEventTime();
8d2cd130 832
234f6d32 833 delete[] pParent;
834 delete[] pSelected;
835 delete[] trackIt;
8d2cd130 836
837 if (nc > 0) {
838 switch (fCountMode) {
839 case kCountAll:
840 // printf(" Count all \n");
841 jev += nc;
842 break;
843 case kCountParents:
844 // printf(" Count parents \n");
845 jev += nParents;
846 break;
847 case kCountTrackables:
848 // printf(" Count trackable \n");
849 jev += nTkbles;
850 break;
851 }
852 if (jev >= fNpart || fNpart == -1) {
853 fKineBias=Float_t(fNpart)/Float_t(fTrials);
e0e89f40 854
8d2cd130 855 fQ += fPythia->GetVINT(51);
856 fX1 += fPythia->GetVINT(41);
857 fX2 += fPythia->GetVINT(42);
858 fTrialsRun += fTrials;
859 fNev++;
860 MakeHeader();
861 break;
862 }
863 }
864 } // event loop
865 SetHighWaterMark(nt);
866// adjust weight due to kinematic selection
b88f5cea 867// AdjustWeights();
8d2cd130 868// get cross-section
869 fXsection=fPythia->GetPARI(1);
870}
871
872Int_t AliGenPythia::GenerateMB()
873{
874//
875// Min Bias selection and other global selections
876//
877 Int_t i, kf, nt, iparent;
878 Int_t nc = 0;
bf950da8 879 Float_t p[4];
8d2cd130 880 Float_t polar[3] = {0,0,0};
881 Float_t origin[3] = {0,0,0};
882// converts from mm/c to s
883 const Float_t kconv=0.001/2.999792458e8;
884
e0e89f40 885
886
8507138f 887 Int_t np = (fHadronisation) ? fParticles.GetEntriesFast() : fNpartons;
aea21c57 888
5fa4b20b 889
e0e89f40 890
8d2cd130 891 Int_t* pParent = new Int_t[np];
892 for (i=0; i< np; i++) pParent[i] = -1;
2f405d65 893 if (fProcess == kPyJets || fProcess == kPyDirectGamma || fProcess == kPyBeautyJets || fProcess == kPyBeautyppMNRwmi) {
8507138f 894 TParticle* jet1 = (TParticle *) fParticles.At(6);
895 TParticle* jet2 = (TParticle *) fParticles.At(7);
234f6d32 896 if (!CheckTrigger(jet1, jet2)) {
897 delete [] pParent;
898 return 0;
899 }
8d2cd130 900 }
e0e89f40 901
9fd8e520 902 // Select jets with fragmentation photon or pi0 going to PHOS or EMCAL
903 if (fProcess == kPyJets && (fFragPhotonInCalo || fPi0InCalo) ) {
ec2c406e 904
905 Bool_t ok = kFALSE;
906
907 Int_t pdg = 0;
9fd8e520 908 if (fFragPhotonInCalo) pdg = 22 ; // Photon
82e0bdff 909 else if (fPi0InCalo) pdg = 111 ; // Pi0
ec2c406e 910
911 for (i=0; i< np; i++) {
8507138f 912 TParticle* iparticle = (TParticle *) fParticles.At(i);
ec2c406e 913 if(iparticle->GetStatusCode()==1 && iparticle->GetPdgCode()==pdg &&
9fd8e520 914 iparticle->Pt() > fFragPhotonOrPi0MinPt){
562cbbcf 915 Int_t imother = iparticle->GetFirstMother() - 1;
8507138f 916 TParticle* pmother = (TParticle *) fParticles.At(imother);
9fd8e520 917 if(pdg == 111 ||
82e0bdff 918 (pdg == 22 && pmother->GetStatusCode() != 11)) //No photon from hadron decay
9fd8e520 919 {
920 Float_t phi = iparticle->Phi()*180./TMath::Pi(); //Convert to degrees
82e0bdff 921 Float_t eta =TMath::Abs(iparticle->Eta()); //in calos etamin=-etamax
9fd8e520 922 if((fCheckEMCAL && IsInEMCAL(phi,eta)) ||
923 (fCheckPHOS && IsInPHOS(phi,eta)) )
924 ok =kTRUE;
925 }
ec2c406e 926 }
927 }
928 if(!ok)
929 return 0;
930 }
9dfe63b3 931
932 // Select beauty jets with electron in EMCAL
933 if (fProcess == kPyBeautyJets && fEleInEMCAL) {
934
935 Bool_t ok = kFALSE;
936
937 Int_t pdg = 11; //electron
938
70574ff8 939 Float_t pt = 0.;
940 Float_t eta = 0.;
941 Float_t phi = 0.;
9dfe63b3 942 for (i=0; i< np; i++) {
943 TParticle* iparticle = (TParticle *) fParticles.At(i);
944 if(iparticle->GetStatusCode()==1 && TMath::Abs(iparticle->GetPdgCode())==pdg &&
945 iparticle->Pt() > fElectronMinPt){
946 pt = iparticle->Pt();
947 phi = iparticle->Phi()*180./TMath::Pi(); //Convert to degrees
948 eta =TMath::Abs(iparticle->Eta()); //in calos etamin=-etamax
949 if(IsInEMCAL(phi,eta))
950 ok =kTRUE;
951 }
952 }
953 if(!ok)
954 return 0;
955 AliDebug(5,Form("Found an electron jet (pt,eta,phi) = (%f,%f,%f)",pt,eta,phi));
956 }
ec2c406e 957
700b9416 958 // Check for minimum multiplicity
959 if (fTriggerMultiplicity > 0) {
960 Int_t multiplicity = 0;
961 for (i = 0; i < np; i++) {
8507138f 962 TParticle * iparticle = (TParticle *) fParticles.At(i);
700b9416 963
964 Int_t statusCode = iparticle->GetStatusCode();
965
966 // Initial state particle
e296848e 967 if (statusCode != 1)
700b9416 968 continue;
969
970 if (fTriggerMultiplicityEta > 0 && TMath::Abs(iparticle->Eta()) > fTriggerMultiplicityEta)
971 continue;
972
973 TParticlePDG* pdgPart = iparticle->GetPDG();
974 if (pdgPart && pdgPart->Charge() == 0)
975 continue;
976
977 ++multiplicity;
978 }
979
980 if (multiplicity < fTriggerMultiplicity) {
981 delete [] pParent;
982 return 0;
983 }
984
985 Printf("Triggered on event with multiplicity of %d > %d", multiplicity, fTriggerMultiplicity);
986 }
90a236ce 987
988 // Select events with a photon pt > min pt going to PHOS eta acceptance or exactly PHOS eta phi
989 if ((fProcess == kPyJets || fProcess == kPyDirectGamma) && fPhotonInCalo && (fCheckPHOSeta || fCheckPHOS)){
990
991 Bool_t okd = kFALSE;
992
993 Int_t pdg = 22;
994 Int_t iphcand = -1;
995 for (i=0; i< np; i++) {
8507138f 996 TParticle* iparticle = (TParticle *) fParticles.At(i);
90a236ce 997 Float_t phi = iparticle->Phi()*180./TMath::Pi(); //Convert to degrees
998 Float_t eta =TMath::Abs(iparticle->Eta());//in calos etamin=-etamax
999
1000 if(iparticle->GetStatusCode() == 1
1001 && iparticle->GetPdgCode() == pdg
1002 && iparticle->Pt() > fPhotonMinPt
04a26b0a 1003 && eta < fPHOSEta){
90a236ce 1004
1005 // first check if the photon is in PHOS phi
1006 if(IsInPHOS(phi,eta)){
1007 okd = kTRUE;
1008 break;
1009 }
1010 if(fCheckPHOSeta) iphcand = i; // candiate photon to rotate in phi
1011
1012 }
1013 }
1014
1015 if(!okd && iphcand != -1) // execute rotation in phi
1016 RotatePhi(iphcand,okd);
1017
1018 if(!okd)
1019 return 0;
1020 }
1021
7ce1321b 1022 if (fTriggerParticle) {
1023 Bool_t triggered = kFALSE;
1024 for (i = 0; i < np; i++) {
8507138f 1025 TParticle * iparticle = (TParticle *) fParticles.At(i);
7ce1321b 1026 kf = CheckPDGCode(iparticle->GetPdgCode());
38db0ee6 1027 if (kf != fTriggerParticle) continue;
7ce1321b 1028 if (iparticle->Pt() == 0.) continue;
1029 if (TMath::Abs(iparticle->Eta()) > fTriggerEta) continue;
1030 triggered = kTRUE;
1031 break;
1032 }
234f6d32 1033 if (!triggered) {
1034 delete [] pParent;
1035 return 0;
1036 }
7ce1321b 1037 }
e0e89f40 1038
1039
1040 // Check if there is a ccbar or bbbar pair with at least one of the two
1041 // in fYMin < y < fYMax
2f405d65 1042
9dfe63b3 1043 if (fProcess == kPyCharmppMNRwmi || fProcess == kPyBeautyppMNRwmi || fProcess == kPyBeautyJets) {
9ccc3d0e 1044 TParticle *partCheck;
1045 TParticle *mother;
e0e89f40 1046 Bool_t theQ=kFALSE,theQbar=kFALSE,inYcut=kFALSE;
9ccc3d0e 1047 Bool_t theChild=kFALSE;
1048 Float_t y;
1049 Int_t pdg,mpdg,mpdgUpperFamily;
e0e89f40 1050 for(i=0; i<np; i++) {
9ccc3d0e 1051 partCheck = (TParticle*)fParticles.At(i);
1052 pdg = partCheck->GetPdgCode();
1053 if(TMath::Abs(pdg) == fFlavorSelect) { // quark
1054 if(pdg>0) { theQ=kTRUE; } else { theQbar=kTRUE; }
1055 y = 0.5*TMath::Log((partCheck->Energy()+partCheck->Pz()+1.e-13)/
1056 (partCheck->Energy()-partCheck->Pz()+1.e-13));
1057 if(y>fYMin && y<fYMax) inYcut=kTRUE;
1058 }
1059 if(fCutOnChild && TMath::Abs(pdg) == fPdgCodeParticleforAcceptanceCut) {
1060 Int_t mi = partCheck->GetFirstMother() - 1;
1061 if(mi<0) continue;
1062 mother = (TParticle*)fParticles.At(mi);
1063 mpdg=TMath::Abs(mother->GetPdgCode());
75fde694 1064 mpdgUpperFamily=(mpdg>1000 ? mpdg+1000 : mpdg+100); // keep e from c from b
9ccc3d0e 1065 if ( ParentSelected(mpdg) ||
1066 (fFlavorSelect==5 && ParentSelected(mpdgUpperFamily))) {
1067 if (KinematicSelection(partCheck,1)) {
1068 theChild=kTRUE;
1069 }
1070 }
1071 }
e0e89f40 1072 }
9ccc3d0e 1073 if (!theQ || !theQbar || !inYcut) { // one of the c/b conditions not satisfied
234f6d32 1074 delete[] pParent;
e0e89f40 1075 return 0;
1076 }
9ccc3d0e 1077 if (fCutOnChild && !theChild) { // one of the child conditions not satisfied
1078 delete[] pParent;
1079 return 0;
1080 }
1081
e0e89f40 1082 }
aea21c57 1083
0f6ee828 1084 //Introducing child cuts in case kPyW, kPyZ, kPyMb, and kPyMbNonDiff
f529e69b 1085 if ( (fProcess == kPyW ||
1086 fProcess == kPyZ ||
1087 fProcess == kPyMbDefault ||
1088 fProcess == kPyMb ||
04081a91 1089 fProcess == kPyMbWithDirectPhoton ||
f529e69b 1090 fProcess == kPyMbNonDiffr)
0f6ee828 1091 && (fCutOnChild == 1) ) {
1092 if ( !CheckKinematicsOnChild() ) {
234f6d32 1093 delete[] pParent;
0f6ee828 1094 return 0;
1095 }
aea21c57 1096 }
1097
1098
f913ec4f 1099 for (i = 0; i < np; i++) {
8d2cd130 1100 Int_t trackIt = 0;
8507138f 1101 TParticle * iparticle = (TParticle *) fParticles.At(i);
8d2cd130 1102 kf = CheckPDGCode(iparticle->GetPdgCode());
1103 Int_t ks = iparticle->GetStatusCode();
1104 Int_t km = iparticle->GetFirstMother();
1105 if ((ks == 1 && kf!=0 && KinematicSelection(iparticle, 0)) ||
1106 (ks != 1) ||
9dfe63b3 1107 ((fProcess == kPyJets || fProcess == kPyBeautyJets) && ks == 21 && km == 0 && i>1)) {
8d2cd130 1108 nc++;
1109 if (ks == 1) trackIt = 1;
1110 Int_t ipa = iparticle->GetFirstMother()-1;
1111
1112 iparent = (ipa > -1) ? pParent[ipa] : -1;
1113
1114//
1115// store track information
1116 p[0] = iparticle->Px();
1117 p[1] = iparticle->Py();
1118 p[2] = iparticle->Pz();
a920faf9 1119 p[3] = iparticle->Energy();
1406f599 1120
a920faf9 1121
2590ccf9 1122 origin[0] = fVertex[0]+iparticle->Vx()/10; // [cm]
1123 origin[1] = fVertex[1]+iparticle->Vy()/10; // [cm]
1124 origin[2] = fVertex[2]+iparticle->Vz()/10; // [cm]
1125
f913ec4f 1126 Float_t tof = fEventTime + kconv * iparticle->T();
a920faf9 1127
1128 PushTrack(fTrackIt*trackIt, iparent, kf,
1129 p[0], p[1], p[2], p[3],
1130 origin[0], origin[1], origin[2], tof,
1131 polar[0], polar[1], polar[2],
1132 kPPrimary, nt, 1., ks);
dbd64db6 1133 fNprimaries++;
8d2cd130 1134 KeepTrack(nt);
1135 pParent[i] = nt;
f913ec4f 1136 SetHighWaterMark(nt);
1137
8d2cd130 1138 } // select particle
1139 } // particle loop
1140
234f6d32 1141 delete[] pParent;
e0e89f40 1142
f913ec4f 1143 return 1;
8d2cd130 1144}
1145
1146
1147void AliGenPythia::FinishRun()
1148{
1149// Print x-section summary
1150 fPythia->Pystat(1);
2779fc64 1151
1152 if (fNev > 0.) {
1153 fQ /= fNev;
1154 fX1 /= fNev;
1155 fX2 /= fNev;
1156 }
1157
8d2cd130 1158 printf("\nTotal number of Pyevnt() calls %d\n", fTrialsRun);
1159 printf("\nMean Q, x1, x2: %f %f %f\n", fQ, fX1, fX2);
8d2cd130 1160}
1161
7184e472 1162void AliGenPythia::AdjustWeights() const
8d2cd130 1163{
1164// Adjust the weights after generation of all events
1165//
e2bddf81 1166 if (gAlice) {
1167 TParticle *part;
1168 Int_t ntrack=gAlice->GetMCApp()->GetNtrack();
1169 for (Int_t i=0; i<ntrack; i++) {
1170 part= gAlice->GetMCApp()->Particle(i);
1171 part->SetWeight(part->GetWeight()*fKineBias);
1172 }
8d2cd130 1173 }
1174}
1175
20e47f08 1176void AliGenPythia::SetNuclei(Int_t a1, Int_t a2, Int_t pdfset)
8d2cd130 1177{
1178// Treat protons as inside nuclei with mass numbers a1 and a2
1d568bc2 1179
1a626d4e 1180 fAProjectile = a1;
1181 fATarget = a2;
20e47f08 1182 fNucPdf = pdfset; // 0 EKS98 1 EPS08
1d568bc2 1183 fSetNuclei = kTRUE;
8d2cd130 1184}
1185
1186
1187void AliGenPythia::MakeHeader()
1188{
7184e472 1189//
1190// Make header for the simulated event
1191//
183a5ca9 1192 if (gAlice) {
1193 if (gAlice->GetEvNumber()>=fDebugEventFirst &&
f913ec4f 1194 gAlice->GetEvNumber()<=fDebugEventLast) fPythia->Pylist(2);
183a5ca9 1195 }
1196
8d2cd130 1197// Builds the event header, to be called after each event
e5c87a3d 1198 if (fHeader) delete fHeader;
1199 fHeader = new AliGenPythiaEventHeader("Pythia");
8d2cd130 1200//
1201// Event type
e5c87a3d 1202 ((AliGenPythiaEventHeader*) fHeader)->SetProcessType(fPythia->GetMSTI(1));
8d2cd130 1203//
1204// Number of trials
e5c87a3d 1205 ((AliGenPythiaEventHeader*) fHeader)->SetTrials(fTrials);
8d2cd130 1206//
1207// Event Vertex
d25cfd65 1208 fHeader->SetPrimaryVertex(fVertex);
dbd64db6 1209
1210//
1211// Number of primaries
1212 fHeader->SetNProduced(fNprimaries);
8d2cd130 1213//
1214// Jets that have triggered
f913ec4f 1215
9dfe63b3 1216 //Need to store jets for b-jet studies too!
2f405d65 1217 if (fProcess == kPyJets || fProcess == kPyDirectGamma || fProcess == kPyBeautyJets || fProcess == kPyBeautyppMNRwmi)
8d2cd130 1218 {
1219 Int_t ntrig, njet;
1220 Float_t jets[4][10];
1221 GetJets(njet, ntrig, jets);
9ff6c04c 1222
8d2cd130 1223
1224 for (Int_t i = 0; i < ntrig; i++) {
e5c87a3d 1225 ((AliGenPythiaEventHeader*) fHeader)->AddJet(jets[0][i], jets[1][i], jets[2][i],
8d2cd130 1226 jets[3][i]);
1227 }
1228 }
5fa4b20b 1229//
1230// Copy relevant information from external header, if present.
1231//
1232 Float_t uqJet[4];
1233
1234 if (fRL) {
1235 AliGenPythiaEventHeader* exHeader = (AliGenPythiaEventHeader*) (fRL->GetHeader()->GenEventHeader());
1236 for (Int_t i = 0; i < exHeader->NTriggerJets(); i++)
1237 {
1238 printf("Adding Jet %d %d \n", i, exHeader->NTriggerJets());
1239
1240
1241 exHeader->TriggerJet(i, uqJet);
1242 ((AliGenPythiaEventHeader*) fHeader)->AddUQJet(uqJet[0], uqJet[1], uqJet[2], uqJet[3]);
1243 }
1244 }
1245//
1246// Store quenching parameters
1247//
1248 if (fQuench){
1249 Double_t z[4];
1250 Double_t xp, yp;
7c21f297 1251 if (fQuench == 1) {
1252 // Pythia::Quench()
1253 fPythia->GetQuenchingParameters(xp, yp, z);
1bab4b79 1254 } else if (fQuench == 2){
7c21f297 1255 // Pyquen
1256 Double_t r1 = PARIMP.rb1;
1257 Double_t r2 = PARIMP.rb2;
1258 Double_t b = PARIMP.b1;
1259 Double_t r = 0.5 * TMath::Sqrt(2. * (r1 * r1 + r2 * r2) - b * b);
1260 Double_t phi = PARIMP.psib1;
1261 xp = r * TMath::Cos(phi);
1262 yp = r * TMath::Sin(phi);
1263
1bab4b79 1264 } else if (fQuench == 4) {
1265 // QPythia
5831e75f 1266 Double_t xy[2];
e9719084 1267 Double_t i0i1[2];
1268 AliFastGlauber::Instance()->GetSavedXY(xy);
1269 AliFastGlauber::Instance()->GetSavedI0I1(i0i1);
5831e75f 1270 xp = xy[0];
1271 yp = xy[1];
e6fe9b82 1272 ((AliGenPythiaEventHeader*) fHeader)->SetImpactParameter(fImpact);
7c21f297 1273 }
1bab4b79 1274
7c21f297 1275 ((AliGenPythiaEventHeader*) fHeader)->SetXYJet(xp, yp);
1276 ((AliGenPythiaEventHeader*) fHeader)->SetZQuench(z);
1bab4b79 1277 }
beac474c 1278//
1279// Store pt^hard
1280 ((AliGenPythiaEventHeader*) fHeader)->SetPtHard(fPythia->GetVINT(47));
5fa4b20b 1281//
cf57b268 1282// Pass header
5fa4b20b 1283//
cf57b268 1284 AddHeader(fHeader);
4c4eac97 1285 fHeader = 0x0;
8d2cd130 1286}
cf57b268 1287
8d2cd130 1288Bool_t AliGenPythia::CheckTrigger(TParticle* jet1, TParticle* jet2)
1289{
1290// Check the kinematic trigger condition
1291//
1292 Double_t eta[2];
1293 eta[0] = jet1->Eta();
1294 eta[1] = jet2->Eta();
1295 Double_t phi[2];
1296 phi[0] = jet1->Phi();
1297 phi[1] = jet2->Phi();
1298 Int_t pdg[2];
1299 pdg[0] = jet1->GetPdgCode();
1300 pdg[1] = jet2->GetPdgCode();
1301 Bool_t triggered = kFALSE;
1302
2f405d65 1303 if (fProcess == kPyJets || fProcess == kPyBeautyJets || fProcess == kPyBeautyppMNRwmi) {
8d2cd130 1304 Int_t njets = 0;
1305 Int_t ntrig = 0;
1306 Float_t jets[4][10];
1307//
1308// Use Pythia clustering on parton level to determine jet axis
1309//
1310 GetJets(njets, ntrig, jets);
1311
76d6ba9a 1312 if (ntrig || fEtMinJet == 0.) triggered = kTRUE;
8d2cd130 1313//
1314 } else {
1315 Int_t ij = 0;
1316 Int_t ig = 1;
1317 if (pdg[0] == kGamma) {
1318 ij = 1;
1319 ig = 0;
1320 }
1321 //Check eta range first...
1322 if ((eta[ij] < fEtaMaxJet && eta[ij] > fEtaMinJet) &&
1323 (eta[ig] < fEtaMaxGamma && eta[ig] > fEtaMinGamma))
1324 {
1325 //Eta is okay, now check phi range
1326 if ((phi[ij] < fPhiMaxJet && phi[ij] > fPhiMinJet) &&
1327 (phi[ig] < fPhiMaxGamma && phi[ig] > fPhiMinGamma))
1328 {
1329 triggered = kTRUE;
1330 }
1331 }
1332 }
1333 return triggered;
1334}
aea21c57 1335
1336
aea21c57 1337
7184e472 1338Bool_t AliGenPythia::CheckKinematicsOnChild(){
1339//
1340//Checking Kinematics on Child (status code 1, particle code ?, kin cuts
1341//
aea21c57 1342 Bool_t checking = kFALSE;
1343 Int_t j, kcode, ks, km;
1344 Int_t nPartAcc = 0; //number of particles in the acceptance range
1345 Int_t numberOfAcceptedParticles = 1;
1346 if (fNumberOfAcceptedParticles != 0) { numberOfAcceptedParticles = fNumberOfAcceptedParticles; }
8507138f 1347 Int_t npart = fParticles.GetEntriesFast();
aea21c57 1348
0f6ee828 1349 for (j = 0; j<npart; j++) {
8507138f 1350 TParticle * jparticle = (TParticle *) fParticles.At(j);
aea21c57 1351 kcode = TMath::Abs( CheckPDGCode(jparticle->GetPdgCode()) );
1352 ks = jparticle->GetStatusCode();
1353 km = jparticle->GetFirstMother();
1354
1355 if( (ks == 1) && (kcode == fPdgCodeParticleforAcceptanceCut) && (KinematicSelection(jparticle,1)) ){
1356 nPartAcc++;
1357 }
0f6ee828 1358 if( numberOfAcceptedParticles <= nPartAcc){
1359 checking = kTRUE;
1360 break;
1361 }
aea21c57 1362 }
0f6ee828 1363
aea21c57 1364 return checking;
aea21c57 1365}
1366
5fa4b20b 1367void AliGenPythia::LoadEvent(AliStack* stack, Int_t flag, Int_t reHadr)
8d2cd130 1368{
1058d9df 1369 //
1370 // Load event into Pythia Common Block
1371 //
1372
1373 Int_t npart = stack -> GetNprimary();
1374 Int_t n0 = 0;
1375
1376 if (!flag) {
1377 (fPythia->GetPyjets())->N = npart;
1378 } else {
1379 n0 = (fPythia->GetPyjets())->N;
1380 (fPythia->GetPyjets())->N = n0 + npart;
1381 }
1382
1383
1384 for (Int_t part = 0; part < npart; part++) {
1385 TParticle *mPart = stack->Particle(part);
32d6ef7d 1386
1058d9df 1387 Int_t kf = mPart->GetPdgCode();
1388 Int_t ks = mPart->GetStatusCode();
1389 Int_t idf = mPart->GetFirstDaughter();
1390 Int_t idl = mPart->GetLastDaughter();
1391
1392 if (reHadr) {
1393 if (ks == 11 || ks == 12) {
1394 ks -= 10;
1395 idf = -1;
1396 idl = -1;
1397 }
32d6ef7d 1398 }
1399
1058d9df 1400 Float_t px = mPart->Px();
1401 Float_t py = mPart->Py();
1402 Float_t pz = mPart->Pz();
1403 Float_t e = mPart->Energy();
1404 Float_t m = mPart->GetCalcMass();
32d6ef7d 1405
1058d9df 1406
1407 (fPythia->GetPyjets())->P[0][part+n0] = px;
1408 (fPythia->GetPyjets())->P[1][part+n0] = py;
1409 (fPythia->GetPyjets())->P[2][part+n0] = pz;
1410 (fPythia->GetPyjets())->P[3][part+n0] = e;
1411 (fPythia->GetPyjets())->P[4][part+n0] = m;
1412
1413 (fPythia->GetPyjets())->K[1][part+n0] = kf;
1414 (fPythia->GetPyjets())->K[0][part+n0] = ks;
1415 (fPythia->GetPyjets())->K[3][part+n0] = idf + 1;
1416 (fPythia->GetPyjets())->K[4][part+n0] = idl + 1;
1417 (fPythia->GetPyjets())->K[2][part+n0] = mPart->GetFirstMother() + 1;
1418 }
1419}
1420
1421void AliGenPythia::LoadEvent(TObjArray* stack, Int_t flag, Int_t reHadr)
1422{
1423 //
1424 // Load event into Pythia Common Block
1425 //
1426
1427 Int_t npart = stack -> GetEntries();
1428 Int_t n0 = 0;
1429
1430 if (!flag) {
1431 (fPythia->GetPyjets())->N = npart;
1432 } else {
1433 n0 = (fPythia->GetPyjets())->N;
1434 (fPythia->GetPyjets())->N = n0 + npart;
1435 }
1436
1437
1438 for (Int_t part = 0; part < npart; part++) {
1439 TParticle *mPart = dynamic_cast<TParticle *>(stack->At(part));
1440 Int_t kf = mPart->GetPdgCode();
1441 Int_t ks = mPart->GetStatusCode();
1442 Int_t idf = mPart->GetFirstDaughter();
1443 Int_t idl = mPart->GetLastDaughter();
1444
1445 if (reHadr) {
5fa4b20b 1446 if (ks == 11 || ks == 12) {
1058d9df 1447 ks -= 10;
1448 idf = -1;
1449 idl = -1;
5fa4b20b 1450 }
8d2cd130 1451 }
1058d9df 1452
1453 Float_t px = mPart->Px();
1454 Float_t py = mPart->Py();
1455 Float_t pz = mPart->Pz();
1456 Float_t e = mPart->Energy();
1457 Float_t m = mPart->GetCalcMass();
1458
1459
1460 (fPythia->GetPyjets())->P[0][part+n0] = px;
1461 (fPythia->GetPyjets())->P[1][part+n0] = py;
1462 (fPythia->GetPyjets())->P[2][part+n0] = pz;
1463 (fPythia->GetPyjets())->P[3][part+n0] = e;
1464 (fPythia->GetPyjets())->P[4][part+n0] = m;
1465
1466 (fPythia->GetPyjets())->K[1][part+n0] = kf;
1467 (fPythia->GetPyjets())->K[0][part+n0] = ks;
1468 (fPythia->GetPyjets())->K[3][part+n0] = idf + 1;
1469 (fPythia->GetPyjets())->K[4][part+n0] = idl + 1;
1470 (fPythia->GetPyjets())->K[2][part+n0] = mPart->GetFirstMother() + 1;
1471 }
8d2cd130 1472}
1473
5fa4b20b 1474
014a9521 1475void AliGenPythia::RecJetsUA1(Int_t& njets, Float_t jets [4][50])
8d2cd130 1476{
1477//
1478// Calls the Pythia jet finding algorithm to find jets in the current event
1479//
1480//
8d2cd130 1481//
1482// Save jets
1483 Int_t n = fPythia->GetN();
1484
1485//
1486// Run Jet Finder
1487 fPythia->Pycell(njets);
1488 Int_t i;
1489 for (i = 0; i < njets; i++) {
1490 Float_t px = (fPythia->GetPyjets())->P[0][n+i];
1491 Float_t py = (fPythia->GetPyjets())->P[1][n+i];
1492 Float_t pz = (fPythia->GetPyjets())->P[2][n+i];
1493 Float_t e = (fPythia->GetPyjets())->P[3][n+i];
1494
1495 jets[0][i] = px;
1496 jets[1][i] = py;
1497 jets[2][i] = pz;
1498 jets[3][i] = e;
1499 }
1500}
1501
1502
1503
1504void AliGenPythia::GetJets(Int_t& nJets, Int_t& nJetsTrig, Float_t jets[4][10])
1505{
1506//
1507// Calls the Pythia clustering algorithm to find jets in the current event
1508//
1509 Int_t n = fPythia->GetN();
1510 nJets = 0;
1511 nJetsTrig = 0;
1512 if (fJetReconstruction == kCluster) {
1513//
1514// Configure cluster algorithm
1515//
1516 fPythia->SetPARU(43, 2.);
1517 fPythia->SetMSTU(41, 1);
1518//
1519// Call cluster algorithm
1520//
1521 fPythia->Pyclus(nJets);
1522//
1523// Loading jets from common block
1524//
1525 } else {
592f8307 1526
8d2cd130 1527//
1528// Run Jet Finder
1529 fPythia->Pycell(nJets);
1530 }
1531
1532 Int_t i;
1533 for (i = 0; i < nJets; i++) {
1534 Float_t px = (fPythia->GetPyjets())->P[0][n+i];
1535 Float_t py = (fPythia->GetPyjets())->P[1][n+i];
1536 Float_t pz = (fPythia->GetPyjets())->P[2][n+i];
1537 Float_t e = (fPythia->GetPyjets())->P[3][n+i];
1538 Float_t pt = TMath::Sqrt(px * px + py * py);
a920faf9 1539 Float_t phi = TMath::Pi() + TMath::ATan2(-py, -px);
8d2cd130 1540 Float_t theta = TMath::ATan2(pt,pz);
1541 Float_t et = e * TMath::Sin(theta);
1542 Float_t eta = -TMath::Log(TMath::Tan(theta / 2.));
8d2cd130 1543 if (
1544 eta > fEtaMinJet && eta < fEtaMaxJet &&
675eb105 1545 phi > fPhiMinJet && phi < fPhiMaxJet &&
8d2cd130 1546 et > fEtMinJet && et < fEtMaxJet
1547 )
1548 {
1549 jets[0][nJetsTrig] = px;
1550 jets[1][nJetsTrig] = py;
1551 jets[2][nJetsTrig] = pz;
1552 jets[3][nJetsTrig] = e;
1553 nJetsTrig++;
5fa4b20b 1554// printf("\n........-Jet #%d: %10.3f %10.3f %10.3f %10.3f \n", i, pt, et, eta, phi * kRaddeg);
8d2cd130 1555 } else {
1556// printf("\n........-Jet #%d: %10.3f %10.3f %10.3f %10.3f \n", i, pt, et, eta, phi * kRaddeg);
1557 }
1558 }
1559}
1560
f913ec4f 1561void AliGenPythia::GetSubEventTime()
1562{
1563 // Calculates time of the next subevent
9d7108a7 1564 fEventTime = 0.;
1565 if (fEventsTime) {
1566 TArrayF &array = *fEventsTime;
1567 fEventTime = array[fCurSubEvent++];
1568 }
1569 // printf(" Event time: %d %f %p",fCurSubEvent,fEventTime,fEventsTime);
1570 return;
f913ec4f 1571}
8d2cd130 1572
ec2c406e 1573Bool_t AliGenPythia::IsInEMCAL(Float_t phi, Float_t eta)
1574{
1575 // Is particle in EMCAL acceptance?
ec2c406e 1576 // phi in degrees, etamin=-etamax
9fd8e520 1577 if(phi > fEMCALMinPhi && phi < fEMCALMaxPhi &&
1578 eta < fEMCALEta )
ec2c406e 1579 return kTRUE;
1580 else
1581 return kFALSE;
1582}
1583
1584Bool_t AliGenPythia::IsInPHOS(Float_t phi, Float_t eta)
1585{
1586 // Is particle in PHOS acceptance?
1587 // Acceptance slightly larger considered.
1588 // phi in degrees, etamin=-etamax
9fd8e520 1589 if(phi > fPHOSMinPhi && phi < fPHOSMaxPhi &&
1590 eta < fPHOSEta )
ec2c406e 1591 return kTRUE;
1592 else
1593 return kFALSE;
1594}
1595
90a236ce 1596void AliGenPythia::RotatePhi(Int_t iphcand, Bool_t& okdd)
1597{
1598 //calculate the new position random between fPHOSMinPhi and fPHOSMaxPhi
1599 Double_t phiPHOSmin = TMath::Pi()*fPHOSMinPhi/180;
1600 Double_t phiPHOSmax = TMath::Pi()*fPHOSMaxPhi/180;
1601 Double_t phiPHOS = gRandom->Uniform(phiPHOSmin,phiPHOSmax);
1602
1603 //calculate deltaphi
8507138f 1604 TParticle* ph = (TParticle *) fParticles.At(iphcand);
90a236ce 1605 Double_t phphi = ph->Phi();
1606 Double_t deltaphi = phiPHOS - phphi;
1607
1608
1609
1610 //loop for all particles and produce the phi rotation
8507138f 1611 Int_t np = (fHadronisation) ? fParticles.GetEntriesFast() : fNpartons;
90a236ce 1612 Double_t oldphi, newphi;
1613 Double_t newVx, newVy, R, Vz, time;
1614 Double_t newPx, newPy, pt, Pz, e;
1615 for(Int_t i=0; i< np; i++) {
8507138f 1616 TParticle* iparticle = (TParticle *) fParticles.At(i);
90a236ce 1617 oldphi = iparticle->Phi();
1618 newphi = oldphi + deltaphi;
1619 if(newphi < 0) newphi = 2*TMath::Pi() + newphi; // correct angle
1620 if(newphi > 2*TMath::Pi()) newphi = newphi - 2*TMath::Pi(); // correct angle
1621
1622 R = iparticle->R();
1623 newVx = R*TMath::Cos(newphi);
1624 newVy = R*TMath::Sin(newphi);
1625 Vz = iparticle->Vz(); // don't transform
1626 time = iparticle->T(); // don't transform
1627
1628 pt = iparticle->Pt();
1629 newPx = pt*TMath::Cos(newphi);
1630 newPy = pt*TMath::Sin(newphi);
1631 Pz = iparticle->Pz(); // don't transform
1632 e = iparticle->Energy(); // don't transform
1633
1634 // apply rotation
1635 iparticle->SetProductionVertex(newVx, newVy, Vz, time);
1636 iparticle->SetMomentum(newPx, newPy, Pz, e);
1637
1638 } //end particle loop
1639
1640 // now let's check that we put correctly the candidate photon in PHOS
1641 Float_t phi = ph->Phi()*180./TMath::Pi(); //Convert to degrees
1642 Float_t eta =TMath::Abs(ph->Eta());//in calos etamin=-etamax
1643 if(IsInPHOS(phi,eta))
1644 okdd = kTRUE;
1645}
ec2c406e 1646
1647
8d2cd130 1648#ifdef never
1649void AliGenPythia::Streamer(TBuffer &R__b)
1650{
1651 // Stream an object of class AliGenPythia.
1652
1653 if (R__b.IsReading()) {
1654 Version_t R__v = R__b.ReadVersion(); if (R__v) { }
1655 AliGenerator::Streamer(R__b);
1656 R__b >> (Int_t&)fProcess;
1657 R__b >> (Int_t&)fStrucFunc;
1658 R__b >> (Int_t&)fForceDecay;
1659 R__b >> fEnergyCMS;
1660 R__b >> fKineBias;
1661 R__b >> fTrials;
1662 fParentSelect.Streamer(R__b);
1663 fChildSelect.Streamer(R__b);
1664 R__b >> fXsection;
1665// (AliPythia::Instance())->Streamer(R__b);
1666 R__b >> fPtHardMin;
1667 R__b >> fPtHardMax;
1668// if (fDecayer) fDecayer->Streamer(R__b);
1669 } else {
1670 R__b.WriteVersion(AliGenPythia::IsA());
1671 AliGenerator::Streamer(R__b);
1672 R__b << (Int_t)fProcess;
1673 R__b << (Int_t)fStrucFunc;
1674 R__b << (Int_t)fForceDecay;
1675 R__b << fEnergyCMS;
1676 R__b << fKineBias;
1677 R__b << fTrials;
1678 fParentSelect.Streamer(R__b);
1679 fChildSelect.Streamer(R__b);
1680 R__b << fXsection;
1681// R__b << fPythia;
1682 R__b << fPtHardMin;
1683 R__b << fPtHardMax;
1684 // fDecayer->Streamer(R__b);
1685 }
1686}
1687#endif
1688
90d7b703 1689
589380c6 1690