X-Git-Url: http://git.uio.no/git/?a=blobdiff_plain;ds=sidebyside;f=macros%2FConfigPPR.C;h=b72db9f85c5710b729ea1c0abeb4c2215922c1b6;hb=c54404bf5f2c787e1f5cf109626a13966c2b0088;hp=4c450bd48c10c7613969cc6d4489e3ffa6a335d4;hpb=e810b5b525bac2db6b1bc5e3f060aca6e6bb9e8d;p=u%2Fmrichter%2FAliRoot.git diff --git a/macros/ConfigPPR.C b/macros/ConfigPPR.C index 4c450bd48c1..b72db9f85c5 100644 --- a/macros/ConfigPPR.C +++ b/macros/ConfigPPR.C @@ -1,11 +1,100 @@ +// 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 +#include +#include +#include +#include +#include "STEER/AliRunLoader.h" +#include "STEER/AliRun.h" +#include "STEER/AliConfig.h" +#include "STEER/AliGenerator.h" +#include "PYTHIA6/AliDecayerPythia.h" +#include "EVGEN/AliGenHIJINGpara.h" +#include "THijing/AliGenHijing.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/AliMAG.h" +#include "STRUCT/AliABSOv0.h" +#include "STRUCT/AliDIPOv2.h" +#include "STRUCT/AliHALL.h" +#include "STRUCT/AliFRAMEv2.h" +#include "STRUCT/AliSHILv2.h" +#include "STRUCT/AliPIPEv0.h" +#include "ITS/AliITSvPPRasymmFMD.h" +#include "TPC/AliTPCv2.h" +#include "TOF/AliTOFv4T0.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" +#include "EMCAL/AliEMCALv1.h" +#include "CRT/AliCRTv0.h" +#include "VZERO/AliVZEROv2.h" +#endif + enum PprRun_t { 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_jj125, - kHijing_gj25, kHijing_gj50, kHijing_gj75, kHijing_gj100, kHijing_gj125 + 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, + 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 @@ -25,89 +114,121 @@ enum PprMag_t // This part for configuration -static PprRun_t run = test50; -static PprGeo_t geo = kHoles; -static PprRad_t rad = kGluonRadiation; -static PprMag_t mag = k4kG; +//static PprRun_t srun = test50; +static PprRun_t srun = kMuonCocktailCent1HighPt; +static PprGeo_t sgeo = kHoles; +static PprRad_t srad = kGluonRadiation; +static PprMag_t smag = k5kG; +static Int_t sseed = 12345; //Set 0 to use the current time // Comment line static TString comment; - +// Functions +Float_t EtaToTheta(Float_t arg); +AliGenerator* GeneratorFactory(PprRun_t srun); +AliGenHijing* HijingStandard(); +void ProcessEnvironmentVars(); void Config() { - - // 7-DEC-2000 09:00 - // Switch on Transition adiation simulation. 6/12/00 18:00 - // iZDC=1 7/12/00 09:00 // 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); + gRandom->SetSeed(sseed); + cout<<"Seed for random number generation= "<GetSeed()<Getenv("CONFIG_FILE")) - { - TFile *rootfile = new TFile("galice.root", "recreate"); + // libraries required by geant321 +#if defined(__CINT__) + gSystem->Load("libgeant321"); +#endif - rootfile->SetCompressionLevel(2); - } + new TGeant3("C++ Interface to Geant3"); - TGeant3 *geant3 = (TGeant3 *) gMC; + AliRunLoader* rl=0x0; + + cout<<"Config.C: Creating Run Loader ..."<Fatal("Config.C","Can not instatiate the Run Loader"); + return; + } + rl->SetCompressionLevel(2); + rl->SetNumberOfEventsPerFile(3); + gAlice->SetRunLoader(rl); // // 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); // // //======================================================================= - // ******* GEANT STEERING parameters FOR ALICE SIMULATION ******* - geant3->SetTRIG(1); //Number of events to be processed - geant3->SetSWIT(4, 10); - geant3->SetDEBU(0, 0, 1); - //geant3->SetSWIT(2,2); - geant3->SetDCAY(1); - geant3->SetPAIR(1); - geant3->SetCOMP(1); - geant3->SetPHOT(1); - geant3->SetPFIS(0); - geant3->SetDRAY(0); - geant3->SetANNI(1); - geant3->SetBREM(1); - geant3->SetMUNU(1); - geant3->SetCKOV(1); - geant3->SetHADR(1); //Select pure GEANH (HADR 1) or GEANH/NUCRIN (HADR 3) - geant3->SetLOSS(2); - geant3->SetMULS(1); - geant3->SetRAYL(1); - geant3->SetAUTO(1); //Select automatic STMIN etc... calc. (AUTO 1) or manual (AUTO 0) - geant3->SetABAN(0); //Restore 3.16 behaviour for abandoned tracks - geant3->SetOPTI(2); //Select optimisation level for GEANT geometry searches (0,1,2) - geant3->SetERAN(5.e-7); - - Float_t cut = 1.e-3; // 1MeV cut by default - Float_t tofmax = 1.e10; - - // GAM ELEC NHAD CHAD MUON EBREM MUHAB EDEL MUDEL MUPA TOFMAX - geant3->SetCUTS(cut, cut, cut, cut, cut, cut, cut, cut, cut, cut, - tofmax); // //======================================================================= // ************* STEERING parameters FOR ALICE SIMULATION ************** // --- Specify event type to be tracked through the ALICE setup // --- All positions are in cm, angles in degrees, and P and E in GeV + gMC->SetProcess("DCAY",1); + gMC->SetProcess("PAIR",1); + gMC->SetProcess("COMP",1); + gMC->SetProcess("PHOT",1); + gMC->SetProcess("PFIS",0); + gMC->SetProcess("DRAY",0); + gMC->SetProcess("ANNI",1); + gMC->SetProcess("BREM",1); + gMC->SetProcess("MUNU",1); + gMC->SetProcess("CKOV",1); + gMC->SetProcess("HADR",1); + gMC->SetProcess("LOSS",2); + gMC->SetProcess("MULS",1); + gMC->SetProcess("RAYL",1); + + Float_t cut = 1.e-3; // 1MeV cut by default + Float_t tofmax = 1.e10; + + gMC->SetCut("CUTGAM", cut); + gMC->SetCut("CUTELE", cut); + gMC->SetCut("CUTNEU", cut); + gMC->SetCut("CUTHAD", cut); + gMC->SetCut("CUTMUO", cut); + gMC->SetCut("BCUTE", cut); + gMC->SetCut("BCUTM", cut); + gMC->SetCut("DCUTE", cut); + gMC->SetCut("DCUTM", cut); + gMC->SetCut("PPCUTM", cut); + gMC->SetCut("TOFMAX", tofmax); + // Generator Configuration - gAlice->SetDebug(1); - AliGenerator* gener = GeneratorFactory(run); + 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 gener->SetCutVertexZ(1.); // Truncate at 1 sigma @@ -115,16 +236,16 @@ void Config() gener->SetTrackingFlag(1); gener->Init(); - if (mag == k2kG) { + if (smag == k2kG) { comment = comment.Append(" | L3 field 0.2 T"); - } else if (mag == k4kG) { + } else if (smag == k4kG) { comment = comment.Append(" | L3 field 0.4 T"); - } else if (mag == k5kG) { + } else if (smag == k5kG) { comment = comment.Append(" | L3 field 0.5 T"); } - if (rad == kGluonRadiation) + if (srad == kGluonRadiation) { comment = comment.Append(" | Gluon Radiation On"); @@ -132,7 +253,7 @@ void Config() comment = comment.Append(" | Gluon Radiation Off"); } - if (geo == kHoles) + if (sgeo == kHoles) { comment = comment.Append(" | Holes for PHOS/RICH"); @@ -140,14 +261,14 @@ void Config() comment = comment.Append(" | No holes for PHOS/RICH"); } - printf("\n \n Comment: %s \n \n", (char*) comment); + printf("\n \n Comment: %s \n \n", comment.Data()); // Field (L3 0.4 T) - AliMagFMaps* field = new AliMagFMaps("Maps","Maps", 2, 1., 10., mag); - rootfile->cd(); + 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; @@ -167,7 +288,7 @@ void Config() Int_t iTPC = 1; Int_t iTRD = 1; Int_t iZDC = 1; - Int_t iEMCAL = 0; + Int_t iEMCAL = 1; Int_t iVZERO = 1; Int_t iCRT = 0; @@ -210,7 +331,7 @@ void Config() //=================== FRAME parameters ============================ AliFRAMEv2 *FRAME = new AliFRAMEv2("FRAME", "Space Frame"); - if (geo == kHoles) { + if (sgeo == kHoles) { FRAME->SetHoles(1); } else { FRAME->SetHoles(0); @@ -252,9 +373,9 @@ void Config() // //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("$ALICE_ROOT/ITS/ITSgeometry_vPPRasymm2.det"); // don't touch this parameter if you're not an ITS developer ITS->SetThicknessDet1(200.); // detector thickness on layer 1 must be in the range [100,300] ITS->SetThicknessDet2(200.); // detector thickness on layer 2 must be in the range [100,300] @@ -262,19 +383,7 @@ void Config() ITS->SetThicknessChip2(200.); // chip thickness on layer 2 must be in the range [150,300] ITS->SetRails(0); // 1 --> rails in ; 0 --> rails out ITS->SetCoolingFluid(1); // 1 --> water ; 0 --> freon - // - //AliITSvPPRsymm *ITS = new AliITSvPPRsymm("ITS","New ITS PPR detailed version with symmetric services"); - //ITS->SetMinorVersion(2); // don't touch this parameter if you're not an ITS developer - //ITS->SetReadDet(kFALSE); // don't touch this parameter if you're not an ITS developer - //ITS->SetWriteDet("$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 !): // @@ -330,19 +439,15 @@ void Config() if (iTOF) { - if (geo == 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"); } @@ -362,7 +467,7 @@ void Config() // Select the gas mixture (0: 97% Xe + 3% isobutane, 1: 90% Xe + 10% CO2) TRD->SetGasMix(1); - if (geo == kHoles) { + if (sgeo == kHoles) { // With hole in front of PHOS TRD->SetPHOShole(); // With hole in front of RICH @@ -376,10 +481,6 @@ void Config() { //=================== FMD parameters ============================ AliFMD *FMD = new AliFMDv1("FMD", "normal FMD"); - FMD->SetRingsSi1(256); - FMD->SetRingsSi2(128); - FMD->SetSectorsSi1(20); - FMD->SetSectorsSi2(40); } if (iMUON) @@ -387,6 +488,10 @@ void Config() //=================== 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 =========================== @@ -411,7 +516,7 @@ void Config() if (iEMCAL) { //=================== EMCAL parameters ============================ - AliEMCAL *EMCAL = new AliEMCALv1("EMCAL", "EMCALArch1a"); + AliEMCAL *EMCAL = new AliEMCALv1("EMCAL", "EMCAL_55_25"); } if (iCRT) @@ -435,236 +540,854 @@ Float_t EtaToTheta(Float_t arg){ -AliGenerator* GeneratorFactory(PprRun_t run) { +AliGenerator* GeneratorFactory(PprRun_t srun) { Int_t isw = 3; - if (rad == kNoGluonRadiation) isw = 0; + if (srad == kNoGluonRadiation) isw = 0; - switch (run) { + AliGenerator * gGener = 0x0; + switch (srun) { case test50: + { comment = comment.Append(":HIJINGparam test 50 particles"); AliGenHIJINGpara *gener = new AliGenHIJINGpara(50); gener->SetMomentumRange(0, 999999.); - gener->SetPhiRange(-180., 180.); + gener->SetPhiRange(0., 360.); // Set pseudorapidity range from -8 to 8. Float_t thmin = EtaToTheta(8); // theta min. <---> eta max Float_t thmax = EtaToTheta(-8); // theta max. <---> eta min gener->SetThetaRange(thmin,thmax); - break; + gGener=gener; + } + break; case kParam_8000: + { comment = comment.Append(":HIJINGparam N=8000"); AliGenHIJINGpara *gener = new AliGenHIJINGpara(86030); gener->SetMomentumRange(0, 999999.); - gener->SetPhiRange(-180., 180.); + gener->SetPhiRange(0., 360.); // Set pseudorapidity range from -8 to 8. Float_t thmin = EtaToTheta(8); // theta min. <---> eta max Float_t thmax = EtaToTheta(-8); // theta max. <---> eta min gener->SetThetaRange(thmin,thmax); - break; + gGener=gener; + } + break; case kParam_4000: + { comment = comment.Append("HIJINGparam N=4000"); AliGenHIJINGpara *gener = new AliGenHIJINGpara(43015); gener->SetMomentumRange(0, 999999.); - gener->SetPhiRange(-180., 180.); + gener->SetPhiRange(0., 360.); // Set pseudorapidity range from -8 to 8. Float_t thmin = EtaToTheta(8); // theta min. <---> eta max Float_t thmax = EtaToTheta(-8); // theta max. <---> eta min gener->SetThetaRange(thmin,thmax); + gGener=gener; + } break; case kParam_2000: + { comment = comment.Append("HIJINGparam N=2000"); AliGenHIJINGpara *gener = new AliGenHIJINGpara(21507); gener->SetMomentumRange(0, 999999.); - gener->SetPhiRange(-180., 180.); + gener->SetPhiRange(0., 360.); // Set pseudorapidity range from -8 to 8. Float_t thmin = EtaToTheta(8); // theta min. <---> eta max Float_t thmax = EtaToTheta(-8); // theta max. <---> eta min gener->SetThetaRange(thmin,thmax); - break; + gGener=gener; + } + break; // // Hijing Central // case kHijing_cent1: + { comment = comment.Append("HIJING cent1"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); - break; + gGener=gener; + } + break; case kHijing_cent2: + { comment = comment.Append("HIJING cent2"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 2.); - break; + gGener=gener; + } + break; // // Hijing Peripheral // case kHijing_per1: + { comment = comment.Append("HIJING per1"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(5., 8.6); - break; + gGener=gener; + } + break; case kHijing_per2: + { comment = comment.Append("HIJING per2"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(8.6, 11.2); - break; + gGener=gener; + } + break; case kHijing_per3: + { comment = comment.Append("HIJING per3"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(11.2, 13.2); - break; + gGener=gener; + } + break; case kHijing_per4: + { comment = comment.Append("HIJING per4"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(13.2, 15.); - break; + gGener=gener; + } + break; case kHijing_per5: + { comment = comment.Append("HIJING per5"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(15., 100.); - break; + gGener=gener; + } + break; // // Jet-Jet // case kHijing_jj25: + { comment = comment.Append("HIJING Jet 25 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(1); - gener->SetPtMinJet(25.); + gener->SetPtJet(25.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.3,0.3); + gener->SetJetPhiRange(75., 165.); + gGener=gener; + } + break; case kHijing_jj50: + { comment = comment.Append("HIJING Jet 50 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(1); - gener->SetPtMinJet(50.); + gener->SetPtJet(50.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.3,0.3); + gener->SetJetPhiRange(75., 165.); + gGener=gener; + } break; case kHijing_jj75: + { comment = comment.Append("HIJING Jet 75 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(1); - gener->SetPtMinJet(75.); + gener->SetPtJet(75.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.3,0.3); + gener->SetJetPhiRange(75., 165.); + gGener=gener; + } + break; case kHijing_jj100: + { comment = comment.Append("HIJING Jet 100 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(1); - gener->SetPtMinJet(100.); + gener->SetPtJet(100.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; - - case kHijing_jj125: - comment = comment.Append("HIJING Jet 125 GeV"); + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.3,0.3); + gener->SetJetPhiRange(75., 165.); + gGener=gener; + } + break; + + case kHijing_jj200: + { + comment = comment.Append("HIJING Jet 200 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(1); - gener->SetPtMinJet(125.); + gener->SetPtJet(200.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.3,0.3); + gener->SetJetPhiRange(75., 165.); + gGener=gener; + } + break; // // Gamma-Jet // case kHijing_gj25: + { comment = comment.Append("HIJING Gamma 25 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(2); - gener->SetPtMinJet(25.); + gener->SetPtJet(25.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.12, 0.12); + gener->SetJetPhiRange(220., 320.); + gGener=gener; + } + break; case kHijing_gj50: + { comment = comment.Append("HIJING Gamma 50 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(2); - gener->SetPtMinJet(50.); + gener->SetPtJet(50.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.12, 0.12); + gener->SetJetPhiRange(220., 320.); + gGener=gener; + } + break; case kHijing_gj75: + { comment = comment.Append("HIJING Gamma 75 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(2); - gener->SetPtMinJet(75.); + gener->SetPtJet(75.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.12, 0.12); + gener->SetJetPhiRange(220., 320.); + gGener=gener; + } + break; case kHijing_gj100: + { comment = comment.Append("HIJING Gamma 100 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(2); - gener->SetPtMinJet(100.); + gener->SetPtJet(100.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; - - case kHijing_gj125: - comment = comment.Append("HIJING Gamma 125 GeV"); + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.12, 0.12); + gener->SetJetPhiRange(220., 320.); + gGener=gener; + } + break; + + case kHijing_gj200: + { + comment = comment.Append("HIJING Gamma 200 GeV"); AliGenHijing *gener = HijingStandard(); // impact parameter range gener->SetImpactParameterRange(0., 5.); // trigger gener->SetTrigger(2); - gener->SetPtMinJet(125.); + gener->SetPtJet(200.); gener->SetRadiation(isw); - gener->JetEtaRange(-0.3,0.3); - gener->JetPhiRange(15.,105.); - break; + gener->SetSimpleJets(!isw); + gener->SetJetEtaRange(-0.12, 0.12); + gener->SetJetPhiRange(220., 320.); + gGener=gener; + } + break; + case kHijing_pA: + { + comment = comment.Append("HIJING pA"); + + AliGenCocktail *gener = new AliGenCocktail(); + + AliGenHijing *hijing = new AliGenHijing(-1); +// centre of mass energy + hijing->SetEnergyCMS(TMath::Sqrt(82./208.) * 14000.); +// impact parameter range + hijing->SetImpactParameterRange(0., 15.); +// reference frame + hijing->SetReferenceFrame("CMS"); + hijing->SetBoostLHC(1); +// projectile + hijing->SetProjectile("P", 1, 1); + hijing->SetTarget ("A", 208, 82); +// tell hijing to keep the full parent child chain + hijing->KeepFullEvent(); +// enable jet quenching + hijing->SetJetQuenching(0); +// enable shadowing + hijing->SetShadowing(1); +// Don't track spectators + hijing->SetSpectators(0); +// kinematic selection + hijing->SetSelectAll(0); +// + AliGenSlowNucleons* gray = new AliGenSlowNucleons(1); + AliSlowNucleonModel* model = new AliSlowNucleonModelExp(); + gray->SetSlowNucleonModel(model); + gray->SetDebug(1); + gener->AddGenerator(hijing,"Hijing pPb", 1); + gener->AddGenerator(gray, "Gray Particles",1); + gGener=gener; + } + break; + case kPythia6: + { + comment = comment.Append(":Pythia p-p @ 14 TeV"); + AliGenPythia *gener = new AliGenPythia(-1); + gener->SetMomentumRange(0,999999); + gener->SetThetaRange(0., 180.); + gener->SetYRange(-12,12); + gener->SetPtRange(0,1000); + gener->SetProcess(kPyMb); + gener->SetEnergyCMS(14000.); + gGener=gener; + } + 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 gener; + return gGener; } AliGenHijing* HijingStandard() @@ -693,4 +1416,20 @@ AliGenHijing* HijingStandard() } +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 "<Getenv("CONFIG_SEED")) { + sseed = atoi(gSystem->Getenv("CONFIG_SEED")); + } +}