+// One can use the configuration macro in compiled mode by
+// root [0] gSystem->Load("libgeant321");
+// root [0] gSystem->SetIncludePath("-I$ROOTSYS/include -I$ALICE_ROOT/include\
+// -I$ALICE_ROOT -I$ALICE/geant3/TGeant3");
+// root [0] .x grun.C(1,"ConfigPPR.C++")
+
#if !defined(__CINT__) || defined(__MAKECINT__)
#include <Riostream.h>
#include <TRandom.h>
#include "EVGEN/AliGenCocktail.h"
#include "EVGEN/AliGenSlowNucleons.h"
#include "EVGEN/AliSlowNucleonModelExp.h"
+#include "EVGEN/AliGenParam.h"
+#include "EVGEN/AliGenGSIlib.h"
+#include "EVGEN/AliGenMUONCocktail.h"
#include "PYTHIA6/AliGenPythia.h"
#include "STEER/AliMagFMaps.h"
#include "STRUCT/AliBODY.h"
#include "STRUCT/AliFRAMEv2.h"
#include "STRUCT/AliSHILv2.h"
#include "STRUCT/AliPIPEv0.h"
-#include "ITS/AliITSvPPRasymm.h"
+#include "ITS/AliITSvPPRasymmFMD.h"
#include "TPC/AliTPCv2.h"
-#include "TOF/AliTOFv2FHoles.h"
#include "TOF/AliTOFv4T0.h"
-#include "RICH/AliRICHv3.h"
+#include "RICH/AliRICHv1.h"
#include "ZDC/AliZDCv2.h"
#include "TRD/AliTRDv1.h"
#include "FMD/AliFMDv1.h"
#include "MUON/AliMUONv1.h"
+#include "MUON/AliMUONSt1GeometryBuilderV2.h"
+#include "MUON/AliMUONSt2GeometryBuilder.h"
+#include "MUON/AliMUONSlatGeometryBuilder.h"
+#include "MUON/AliMUONTriggerGeometryBuilder.h"
#include "PHOS/AliPHOSv1.h"
#include "PMD/AliPMDv1.h"
#include "START/AliSTARTv1.h"
kHijing_per1, kHijing_per2, kHijing_per3, kHijing_per4, kHijing_per5,
kHijing_jj25, kHijing_jj50, kHijing_jj75, kHijing_jj100, kHijing_jj200,
kHijing_gj25, kHijing_gj50, kHijing_gj75, kHijing_gj100, kHijing_gj200,
- kHijing_pA, kPythia
+ kHijing_pA, kPythia6,
+ kPythia6Jets20_24, kPythia6Jets24_29, kPythia6Jets29_35,
+ kPythia6Jets35_42, kPythia6Jets42_50, kPythia6Jets50_60,
+ kPythia6Jets60_72, kPythia6Jets72_86, kPythia6Jets86_104,
+ kPythia6Jets104_125, kPythia6Jets125_150, kPythia6Jets150_180,
+ kD0PbPb5500, kCharmSemiElPbPb5500, kBeautySemiElPbPb5500,
+ kD_TRD, kB_TRD, kJpsi_TRD,
+ kU_TRD, kPyJJ, kPyGJ,
+ kMuonCocktailCent1, kMuonCocktailPer1, kMuonCocktailPer4,
+ kMuonCocktailCent1HighPt, kMuonCocktailPer1HighPt, kMuonCocktailPer4HighPt,
+ kMuonCocktailCent1Single, kMuonCocktailPer1Single, kMuonCocktailPer4Single,
+ kRunMax
+};
+
+const char* pprRunName[kRunMax] = {
+ "test50",
+ "kParam_8000", "kParam_4000", "kParam_2000",
+ "kHijing_cent1", "kHijing_cent2",
+ "kHijing_per1", "kHijing_per2", "kHijing_per3", "kHijing_per4",
+ "kHijing_per5",
+ "kHijing_jj25", "kHijing_jj50", "kHijing_jj75", "kHijing_jj100",
+ "kHijing_jj200",
+ "kHijing_gj25", "kHijing_gj50", "kHijing_gj75", "kHijing_gj100",
+ "kHijing_gj200", "kHijing_pA", "kPythia6",
+ "kPythia6Jets20_24", "kPythia6Jets24_29", "kPythia6Jets29_35",
+ "kPythia6Jets35_42", "kPythia6Jets42_50", "kPythia6Jets50_60",
+ "kPythia6Jets60_72", "kPythia6Jets72_86", "kPythia6Jets86_104",
+ "kPythia6Jets104_125", "kPythia6Jets125_150", "kPythia6Jets150_180",
+ "kD0PbPb5500", "kCharmSemiElPbPb5500", "kBeautySemiElPbPb5500",
+ "kD_TRD", "kB_TRD", "kJpsi_TRD",
+ "kU_TRD", "kPyJJ", "kPyGJ",
+ "kMuonCocktailCent1", "kMuonCocktailPer1", "kMuonCocktailPer4",
+ "kMuonCocktailCent1HighPt", "kMuonCocktailPer1HighPt", "kMuonCocktailPer4HighPt",
+ "kMuonCocktailCent1Single", "kMuonCocktailPer1Single", "kMuonCocktailPer4Single"
};
enum PprGeo_t
// This part for configuration
//static PprRun_t srun = test50;
-static PprRun_t srun = kPythia;
+static PprRun_t srun = kMuonCocktailCent1HighPt;
static PprGeo_t sgeo = kHoles;
static PprRad_t srad = kGluonRadiation;
-static PprMag_t smag = k4kG;
+static PprMag_t smag = k5kG;
+static Int_t sseed = 12345; //Set 0 to use the current time
// Comment line
static TString comment;
Float_t EtaToTheta(Float_t arg);
AliGenerator* GeneratorFactory(PprRun_t srun);
AliGenHijing* HijingStandard();
+void ProcessEnvironmentVars();
void Config()
{
// ThetaRange is (0., 180.). It was (0.28,179.72) 7/12/00 09:00
// Theta range given through pseudorapidity limits 22/6/2001
+ // Get settings from environment variables
+ ProcessEnvironmentVars();
+
// Set Random Number seed
- gRandom->SetSeed(12345); //Set 0 to use the current time
+ gRandom->SetSeed(sseed);
cout<<"Seed for random number generation= "<<gRandom->GetSeed()<<endl;
cout<<"Config.C: Creating Run Loader ..."<<endl;
rl = AliRunLoader::Open("galice.root",
- AliConfig::fgkDefaultEventFolderName,
+ AliConfig::GetDefaultEventFolderName(),
"recreate");
if (rl == 0x0)
{
// Set External decayer
AliDecayer *decayer = new AliDecayerPythia();
- decayer->SetForceDecay(kAll);
+
+ switch (srun) {
+ case kD0PbPb5500:
+ decayer->SetForceDecay(kHadronicD);
+ break;
+ case kCharmSemiElPbPb5500:
+ decayer->SetForceDecay(kSemiElectronic);
+ break;
+ case kBeautySemiElPbPb5500:
+ decayer->SetForceDecay(kSemiElectronic);
+ break;
+ default:
+ decayer->SetForceDecay(kAll);
+ break;
+ }
decayer->Init();
gMC->SetExternalDecayer(decayer);
//
// Generator Configuration
- gAlice->SetDebug(1);
+ gAlice->SetDebug(0);
AliGenerator* gener = GeneratorFactory(srun);
gener->SetOrigin(0, 0, 0); // vertex position
gener->SetSigma(0, 0, 5.3); // Sigma in (X,Y,Z) (cm) on IP position
// Field (L3 0.4 T)
AliMagFMaps* field = new AliMagFMaps("Maps","Maps", 2, 1., 10., smag);
+ field->SetL3ConstField(0); //Using const. field in the barrel
rl->CdGAFile();
-
+ gAlice->SetField(field);
//
Int_t iABSO = 1;
Int_t iDIPO = 1;
//
//AliITS *ITS = new AliITSv5asymm("ITS","Updates ITS TDR detailed version with asymmetric services");
//
- AliITSvPPRasymm *ITS = new AliITSvPPRasymm("ITS","New ITS PPR detailed version with asymmetric services");
- ITS->SetMinorVersion(2); // don't touch this parameter if you're not an ITS developer
- ITS->SetReadDet(kFALSE); // don't touch this parameter if you're not an ITS developer
+ AliITSvPPRasymmFMD *ITS = new AliITSvPPRasymmFMD("ITS","New ITS PPR detailed version with asymmetric services");
+ ITS->SetMinorVersion(2); // don't touch this parameter if you're not an ITS developer
+ ITS->SetReadDet(kTRUE); // don't touch this parameter if you're not an ITS developer
// ITS->SetWriteDet("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"); // don't touch this parameter if you're not an ITS developer
ITS->SetThicknessDet1(200.); // detector thickness on layer 1 must be in the range [100,300]
ITS->SetThicknessDet2(200.); // detector thickness on layer 2 must be in the range [100,300]
ITS->SetThicknessChip2(200.); // chip thickness on layer 2 must be in the range [150,300]
ITS->SetRails(0); // 1 --> rails in ; 0 --> rails out
ITS->SetCoolingFluid(1); // 1 --> water ; 0 --> freon
- //
- //AliITSvPPRsymm *ITS = new AliITSvPPRsymm("ITS","New ITS PPR detailed version with symmetric services");
- //ITS->SetMinorVersion(2); // don't touch this parameter if you're not an ITS developer
- //ITS->SetReadDet(kFALSE); // don't touch this parameter if you're not an ITS developer
- //ITS->SetWriteDet("$ALICE_ROOT/ITS/ITSgeometry_vPPRsymm2.det"); // don't touch this parameter if you're not an ITS developer
- //ITS->SetThicknessDet1(200.); // detector thickness on layer 1 must be in the range [100,300]
- //ITS->SetThicknessDet2(200.); // detector thickness on layer 2 must be in the range [100,300]
- //ITS->SetThicknessChip1(200.); // chip thickness on layer 1 must be in the range [150,300]
- //ITS->SetThicknessChip2(200.); // chip thickness on layer 2 must be in the range [150,300]
- //ITS->SetRails(0); // 1 --> rails in ; 0 --> rails out
- //ITS->SetCoolingFluid(1); // 1 --> water ; 0 --> freon
- //
- //
+
// Coarse geometries (warning: no hits are produced with these coarse geometries and they unuseful
// for reconstruction !):
//
if (iTOF) {
- if (sgeo == kHoles) {
//=================== TOF parameters ============================
- AliTOF *TOF = new AliTOFv2FHoles("TOF", "TOF with Holes");
- } else {
- AliTOF *TOF = new AliTOFv4T0("TOF", "normal TOF");
- }
+ AliTOF *TOF = new AliTOFv4T0("TOF", "normal TOF");
}
if (iRICH)
{
//=================== RICH parameters ===========================
- AliRICH *RICH = new AliRICHv3("RICH", "normal RICH");
+ AliRICH *RICH = new AliRICHv1("RICH", "normal RICH");
}
//=================== MUON parameters ===========================
AliMUON *MUON = new AliMUONv1("MUON", "default");
+ MUON->AddGeometryBuilder(new AliMUONSt1GeometryBuilderV2(MUON));
+ MUON->AddGeometryBuilder(new AliMUONSt2GeometryBuilder(MUON));
+ MUON->AddGeometryBuilder(new AliMUONSlatGeometryBuilder(MUON));
+ MUON->AddGeometryBuilder(new AliMUONTriggerGeometryBuilder(MUON));
}
//=================== PHOS parameters ===========================
if (iEMCAL)
{
//=================== EMCAL parameters ============================
- AliEMCAL *EMCAL = new AliEMCALv1("EMCAL", "G56_2_55_19");
+ AliEMCAL *EMCAL = new AliEMCALv1("EMCAL", "EMCAL_55_25");
}
if (iCRT)
gener->SetThetaRange(thmin,thmax);
gGener=gener;
}
- break;
+ break;
case kParam_8000:
{
comment = comment.Append(":HIJINGparam N=8000");
gener->SetThetaRange(thmin,thmax);
gGener=gener;
}
- break;
+ break;
case kParam_4000:
{
comment = comment.Append("HIJINGparam N=4000");
gener->SetThetaRange(thmin,thmax);
gGener=gener;
}
- break;
+ break;
//
// Hijing Central
//
gener->SetImpactParameterRange(0., 5.);
gGener=gener;
}
- break;
+ break;
case kHijing_cent2:
{
comment = comment.Append("HIJING cent2");
// impact parameter range
gener->SetImpactParameterRange(0., 2.);
gGener=gener;
- break;
}
+ break;
//
// Hijing Peripheral
//
gener->SetImpactParameterRange(5., 8.6);
gGener=gener;
}
- break;
+ break;
case kHijing_per2:
{
comment = comment.Append("HIJING per2");
gener->SetImpactParameterRange(8.6, 11.2);
gGener=gener;
}
- break;
+ break;
case kHijing_per3:
{
comment = comment.Append("HIJING per3");
gener->SetImpactParameterRange(11.2, 13.2);
gGener=gener;
}
- break;
+ break;
case kHijing_per4:
{
comment = comment.Append("HIJING per4");
gener->SetImpactParameterRange(13.2, 15.);
gGener=gener;
}
- break;
+ break;
case kHijing_per5:
{
comment = comment.Append("HIJING per5");
gener->SetImpactParameterRange(15., 100.);
gGener=gener;
}
- break;
+ break;
//
// Jet-Jet
//
gener->SetJetPhiRange(75., 165.);
gGener=gener;
}
- break;
+ break;
case kHijing_jj50:
{
gener->SetJetPhiRange(75., 165.);
gGener=gener;
}
- break;
+ break;
case kHijing_jj100:
{
gener->SetJetPhiRange(75., 165.);
gGener=gener;
}
- break;
+ break;
case kHijing_jj200:
{
gener->SetJetPhiRange(75., 165.);
gGener=gener;
}
- break;
+ break;
//
// Gamma-Jet
//
gener->SetJetPhiRange(220., 320.);
gGener=gener;
}
- break;
+ break;
case kHijing_gj50:
{
gener->SetJetPhiRange(220., 320.);
gGener=gener;
}
- break;
+ break;
case kHijing_gj75:
{
gener->SetJetPhiRange(220., 320.);
gGener=gener;
}
- break;
+ break;
case kHijing_gj100:
{
gener->SetJetPhiRange(220., 320.);
gGener=gener;
}
- break;
+ break;
case kHijing_gj200:
{
gener->SetJetPhiRange(220., 320.);
gGener=gener;
}
- break;
+ break;
case kHijing_pA:
{
comment = comment.Append("HIJING pA");
AliGenCocktail *gener = new AliGenCocktail();
-// gener->SetTrackingFlag(0);
- gener->SetOrigin(0, 0, 0); // vertex position
- gener->SetSigma(0, 0, 5.3); // Sigma in (X,Y,Z) (cm) on IP position
- gener->SetCutVertexZ(1.); // Truncate at 1 sigma
- gener->SetVertexSmear(kPerEvent);
+
AliGenHijing *hijing = new AliGenHijing(-1);
// centre of mass energy
hijing->SetEnergyCMS(TMath::Sqrt(82./208.) * 14000.);
gener->AddGenerator(gray, "Gray Particles",1);
gGener=gener;
}
- break;
- case kPythia:
+ break;
+ case kPythia6:
{
comment = comment.Append(":Pythia p-p @ 14 TeV");
AliGenPythia *gener = new AliGenPythia(-1);
gener->SetMomentumRange(0,999999);
- gener->SetPhiRange(-180,180);
gener->SetThetaRange(0., 180.);
gener->SetYRange(-12,12);
gener->SetPtRange(0,1000);
- gener->SetStrucFunc(kCTEQ4L);
gener->SetProcess(kPyMb);
gener->SetEnergyCMS(14000.);
gGener=gener;
}
- break;
+ break;
+ case kPythia6Jets20_24:
+ {
+ comment = comment.Append(":Pythia jets 20-24 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(20., 24.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets24_29:
+ {
+ comment = comment.Append(":Pythia jets 24-29 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(24., 29.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets29_35:
+ {
+ comment = comment.Append(":Pythia jets 29-35 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(29., 35.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets35_42:
+ {
+ comment = comment.Append(":Pythia jets 35-42 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(35., 42.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets42_50:
+ {
+ comment = comment.Append(":Pythia jets 42-50 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(42., 50.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets50_60:
+ {
+ comment = comment.Append(":Pythia jets 50-60 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(50., 60.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets60_72:
+ {
+ comment = comment.Append(":Pythia jets 60-72 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(60., 72.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets72_86:
+ {
+ comment = comment.Append(":Pythia jets 72-86 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(72., 86.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets86_104:
+ {
+ comment = comment.Append(":Pythia jets 86-104 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(86., 104.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets104_125:
+ {
+ comment = comment.Append(":Pythia jets 105-125 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(104., 125.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets125_150:
+ {
+ comment = comment.Append(":Pythia jets 125-150 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(125., 150.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kPythia6Jets150_180:
+ {
+ comment = comment.Append(":Pythia jets 150-180 GeV @ 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);// Centre of mass energy
+ gener->SetProcess(kPyJets);// Process type
+ gener->SetJetEtaRange(-0.5, 0.5);// Final state kinematic cuts
+ gener->SetJetPhiRange(0., 360.);
+ gener->SetJetEtRange(10., 1000.);
+ gener->SetGluonRadiation(1,1);
+ // gener->SetPtKick(0.);
+ // Structure function
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(150., 180.);// Pt transfer of the hard scattering
+ gener->SetPycellParameters(2., 274, 432, 0., 4., 5., 1.0);
+ gener->SetForceDecay(kAll);// Decay type (semielectronic, etc.)
+ gGener=gener;
+ }
+ break;
+ case kD0PbPb5500:
+ {
+ comment = comment.Append(" D0 in Pb-Pb at 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(10);
+ gener->SetProcess(kPyD0PbPbMNR);
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(2.1,-1.0);
+ gener->SetEnergyCMS(5500.);
+ gener->SetNuclei(208,208);
+ gener->SetForceDecay(kHadronicD);
+ gener->SetYRange(-2,2);
+ gener->SetFeedDownHigherFamily(kFALSE);
+ gener->SetStackFillOpt(AliGenPythia::kParentSelection);
+ gener->SetCountMode(AliGenPythia::kCountParents);
+ gGener=gener;
+ }
+ break;
+ case kCharmSemiElPbPb5500:
+ {
+ comment = comment.Append(" Charm in Pb-Pb at 5.5 TeV");
+ AliGenPythia * gener = new AliGenPythia(10);
+ gener->SetProcess(kPyCharmPbPbMNR);
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(2.1,-1.0);
+ gener->SetEnergyCMS(5500.);
+ gener->SetNuclei(208,208);
+ gener->SetForceDecay(kSemiElectronic);
+ gener->SetYRange(-2,2);
+ gener->SetFeedDownHigherFamily(kFALSE);
+ gener->SetCountMode(AliGenPythia::kCountParents);
+ gGener=gener;
+ }
+ break;
+ case kBeautySemiElPbPb5500:
+ {
+ comment = comment.Append(" Beauty in Pb-Pb at 5.5 TeV");
+ AliGenPythia *gener = new AliGenPythia(10);
+ gener->SetProcess(kPyBeautyPbPbMNR);
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetPtHard(2.75,-1.0);
+ gener->SetEnergyCMS(5500.);
+ gener->SetNuclei(208,208);
+ gener->SetForceDecay(kSemiElectronic);
+ gener->SetYRange(-2,2);
+ gener->SetFeedDownHigherFamily(kFALSE);
+ gener->SetCountMode(AliGenPythia::kCountParents);
+ gGener=gener;
+ }
+ break;
+ case kD_TRD:
+ {
+ comment = comment.Append(" Charm for TRD at 5.5 TeV");
+ AliGenPythia *gener = new AliGenPythia(1);
+ gener->SetCutOnChild(0);
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetProcess(kPyCharm);
+ gener->SetPtHard(0.,-1);
+ gener->SetEnergyCMS(5500.);
+ gener->SetNuclei(208,208);
+ gGener=gener;
+ }
+ break;
+ case kB_TRD:
+ {
+ comment = comment.Append(" Beauty for TRD at 5.5 TeV");
+ AliGenPythia *gener = new AliGenPythia(1);
+ gener->SetCutOnChild(0);
+ gener->SetStrucFunc(kCTEQ4L);
+ gener->SetProcess(kPyBeauty);
+ gener->SetPtHard(0.,-1);
+ gener->SetEnergyCMS(5500.);
+ gener->SetNuclei(208,208);
+ gGener=gener;
+ }
+ break;
+ case kJpsi_TRD:
+ {
+ comment = comment.Append(" J/psi for TRD at 5.5 TeV");
+ AliGenParam *gener = new AliGenParam(1,new AliGenGSIlib(),
+ AliGenGSIlib::kJPsi,"MUON");
+ gener->SetMomentumRange(0,999);
+ gener->SetPtRange(0,30.);
+ gener->SetPhiRange(0., 360.);
+ gener->SetYRange(-0.9,+0.9);
+ gener->SetForceDecay(kDiElectron);
+ gGener=gener;
+ }
+ break;
+ case kU_TRD:
+ {
+ comment = comment.Append(" Upsilon for TRD at 5.5 TeV");
+ AliGenParam *gener = new AliGenParam(1,new AliGenGSIlib(),
+ AliGenGSIlib::kUpsilon,"RITMAN");
+ gener->SetMomentumRange(0,999);
+ gener->SetPtRange(0,30.);
+ gener->SetPhiRange(0., 360.);
+ gener->SetYRange(-0.9,0.9);
+ gener->SetForceDecay(kDiElectron);
+ gGener=gener;
+ }
+ break;
+ case kPyJJ:
+ {
+ comment = comment.Append(" Jet-jet at 5.5 TeV");
+ AliGenPythia *gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);
+ gener->SetProcess(kPyJets);
+ Double_t ptHardMin=10.0, ptHardMax=-1.0;
+ gener->SetPtHard(ptHardMin,ptHardMax);
+ gener->SetYHard(-0.7,0.7);
+ gener->SetJetEtaRange(-0.2,0.2);
+ gener->SetEventListRange(0,1);
+ gGener=gener;
+ }
+ break;
+ case kPyGJ:
+ {
+ comment = comment.Append(" Gamma-jet at 5.5 TeV");
+ AliGenPythia *gener = new AliGenPythia(-1);
+ gener->SetEnergyCMS(5500.);
+ gener->SetProcess(kPyDirectGamma);
+ Double_t ptHardMin=10.0, ptHardMax=-1.0;
+ gener->SetPtHard(ptHardMin,ptHardMax);
+ gener->SetYHard(-1.0,1.0);
+ gener->SetGammaEtaRange(-0.13,0.13);
+ gener->SetGammaPhiRange(210.,330.);
+ gener->SetEventListRange(0,1);
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailCent1:
+ {
+ comment = comment.Append(" Muon Cocktail Cent1");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(0.8);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(2);
+ gener->SetNumberOfCollisions(1626.); //Centrality class Cent1 for PDC04
+ gener->SetNumberOfParticipants(359.4);//Centrality class Cent1 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailPer1:
+ {
+ comment = comment.Append(" Muon Cocktail Per1");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(0.8);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(2);
+ gener->SetNumberOfCollisions(820.0);//Centrality class Per1 for PDC04
+ gener->SetNumberOfParticipants(229.3);//Centrality class Per1 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailPer4:
+ {
+ comment = comment.Append(" Muon Cocktail Per4");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(0.8);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(2);
+ gener->SetNumberOfCollisions(13.6);//Centrality class Per4 for PDC04
+ gener->SetNumberOfParticipants(13.3);//Centrality class Per4 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailCent1HighPt:
+ {
+ comment = comment.Append(" Muon Cocktail HighPt Cent1");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(2.5);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(2);
+ gener->SetNumberOfCollisions(1626.); //Centrality class Cent1 for PDC04
+ gener->SetNumberOfParticipants(359.4);//Centrality class Cent1 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailPer1HighPt :
+ {
+ comment = comment.Append(" Muon Cocktail HighPt Per1");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(2.5);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(2);
+ gener->SetNumberOfCollisions(820.0);//Centrality class Per1 for PDC04
+ gener->SetNumberOfParticipants(229.3);//Centrality class Per1 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailPer4HighPt:
+ {
+ comment = comment.Append(" Muon Cocktail HighPt Per4");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(2.5);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(2);
+ gener->SetNumberOfCollisions(13.6);//Centrality class Per4 for PDC04
+ gener->SetNumberOfParticipants(13.3);//Centrality class Per4 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailCent1Single:
+ {
+ comment = comment.Append(" Muon Cocktail Single Cent1");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(0.8);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(1);
+ gener->SetNumberOfCollisions(1626.); //Centrality class Cent1 for PDC04
+ gener->SetNumberOfParticipants(359.4);//Centrality class Cent1 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailPer1Single :
+ {
+ comment = comment.Append(" Muon Cocktail Single Per1");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(0.8);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(1);
+ gener->SetNumberOfCollisions(820.0);//Centrality class Per1 for PDC04
+ gener->SetNumberOfParticipants(229.3);//Centrality class Per1 for PDC04
+ gGener=gener;
+ }
+ break;
+ case kMuonCocktailPer4Single:
+ {
+ comment = comment.Append(" Muon Cocktail Single Per4");
+ AliGenMUONCocktail * gener = new AliGenMUONCocktail();
+ gener->SetPtRange(1.0,100.); // Transverse momentum range
+ gener->SetPhiRange(0.,360.); // Azimuthal angle range
+ gener->SetYRange(-4.0,-2.4);
+ gener->SetMuonPtCut(0.8);
+ gener->SetMuonThetaCut(171.,178.);
+ gener->SetMuonMultiplicity(1);
+ gener->SetNumberOfCollisions(13.6);//Centrality class Per4 for PDC04
+ gener->SetNumberOfParticipants(13.3);//Centrality class Per4 for PDC04
+ gGener=gener;
+ }
+ break;
+ default: break;
}
return gGener;
}
// tell hijing to keep the full parent child chain
gener->KeepFullEvent();
// enable jet quenching
- gener->SetJetQuenching(4);
+ gener->SetJetQuenching(1);
// enable shadowing
gener->SetShadowing(1);
// neutral pion and heavy particle decays switched off
}
+void ProcessEnvironmentVars()
+{
+ // Run type
+ if (gSystem->Getenv("CONFIG_RUN_TYPE")) {
+ for (Int_t iRun = 0; iRun < kRunMax; iRun++) {
+ if (strcmp(gSystem->Getenv("CONFIG_RUN_TYPE"), pprRunName[iRun])==0) {
+ srun = (PprRun_t)iRun;
+ cout<<"Run type set to "<<pprRunName[iRun]<<endl;
+ }
+ }
+ }
+ // Random Number seed
+ if (gSystem->Getenv("CONFIG_SEED")) {
+ sseed = atoi(gSystem->Getenv("CONFIG_SEED"));
+ }
+}