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Geant4/examples/extended/hadronic/Hadr02/src/IonHIJINGPhysics.cc

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Differences between /examples/extended/hadronic/Hadr02/src/IonHIJINGPhysics.cc (Version 11.3.0) and /examples/extended/hadronic/Hadr02/src/IonHIJINGPhysics.cc (Version 10.0.p2)


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 26 /// \file hadronic/Hadr02/src/IonHIJINGPhysics     26 /// \file hadronic/Hadr02/src/IonHIJINGPhysics.cc
 27 /// \brief Implementation of the IonHIJINGPhys     27 /// \brief Implementation of the IonHIJINGPhysics class
 28 //                                                 28 //
                                                   >>  29 // $Id: IonHIJINGPhysics.cc,v 1.1 2006/10/28 16:00:25 vnivanch Exp $
                                                   >>  30 // GEANT4 tag $Name: $
 29 //                                                 31 //
 30 //--------------------------------------------     32 //---------------------------------------------------------------------------
 31 //                                                 33 //
 32 // Class:    IonHIJINGPhysics                      34 // Class:    IonHIJINGPhysics
 33 //                                                 35 //
 34 // Author:   2012 Andrea Dotti                     36 // Author:   2012 Andrea Dotti
 35 //                                                 37 //
 36 //                                                 38 //
 37 // Modified:                                       39 // Modified:
 38 //                                                 40 //
 39 // -------------------------------------------     41 // ------------------------------------------------------------
 40 //                                             <<  42 // 
 41 #ifdef G4_USE_HIJING                               43 #ifdef G4_USE_HIJING
 42 #  include "IonHIJINGPhysics.hh"               <<  44 #include "IonHIJINGPhysics.hh"
 43                                                <<  45 #include "G4ParticleDefinition.hh"
 44 #  include "G4Alpha.hh"                        <<  46 #include "G4ProcessManager.hh"
 45 #  include "G4BinaryLightIonReaction.hh"       <<  47 #include "G4Deuteron.hh"
 46 #  include "G4BuilderType.hh"                  <<  48 #include "G4Triton.hh"
 47 #  include "G4ComponentGGNuclNuclXsc.hh"       <<  49 #include "G4He3.hh"
 48 #  include "G4CrossSectionInelastic.hh"        <<  50 #include "G4Alpha.hh"
 49 #  include "G4Deuteron.hh"                     <<  51 #include "G4GenericIon.hh"
 50 #  include "G4ExcitationHandler.hh"            <<  52 #include "G4SystemOfUnits.hh"
 51 #  include "G4FTFBuilder.hh"                   <<  53 #include "G4HadronInelasticProcess.hh"
 52 #  include "G4GenericIon.hh"                   <<  54 
 53 #  include "G4HIJING_Model.hh"                 <<  55 #include "G4HIJING_Model.hh"
 54 #  include "G4HadronInelasticProcess.hh"       <<  56 #include "G4BinaryLightIonReaction.hh"
 55 #  include "G4HadronicInteraction.hh"          <<  57 #include "G4ComponentGGNuclNuclXsc.hh"
 56 #  include "G4HadronicParameters.hh"           <<  58 #include "G4CrossSectionInelastic.hh"
 57 #  include "G4He3.hh"                          <<  59 
 58 #  include "G4ParticleDefinition.hh"           <<  60 #include "G4PreCompoundModel.hh"
 59 #  include "G4PreCompoundModel.hh"             <<  61 #include "G4ExcitationHandler.hh"
 60 #  include "G4ProcessManager.hh"               <<  62 #include "G4FTFBuilder.hh"
 61 #  include "G4SystemOfUnits.hh"                <<  63 #include "G4HadronicInteraction.hh"
 62 #  include "G4Triton.hh"                       <<  64 #include "G4BuilderType.hh"
 63 using namespace std;                               65 using namespace std;
 64                                                    66 
 65 //....oooOO0OOooo........oooOO0OOooo........oo     67 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 66                                                    68 
 67 IonHIJINGPhysics::IonHIJINGPhysics(G4int ver)      69 IonHIJINGPhysics::IonHIJINGPhysics(G4int ver)
 68   : G4VHadronPhysics("ionInelasticHIJING"), fV <<  70   : G4VHadronPhysics("ionInelasticHIJING"),fVerbose(ver),
                                                   >>  71     fWasActivated(false)
 69 {                                                  72 {
 70   fModel = 0;                                      73   fModel = 0;
 71   SetPhysicsType(bIons);                           74   SetPhysicsType(bIons);
 72   if (fVerbose > 1) {                          <<  75   if(fVerbose > 1) { G4cout << "### IonHIJINGPhysics" << G4endl; }
 73     G4cout << "### IonHIJINGPhysics" << G4endl << 
 74   }                                            << 
 75 }                                                  76 }
 76                                                    77 
 77 //....oooOO0OOooo........oooOO0OOooo........oo     78 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 78                                                    79 
 79 IonHIJINGPhysics::~IonHIJINGPhysics() {}       <<  80 IonHIJINGPhysics::~IonHIJINGPhysics()
                                                   >>  81 {}
 80                                                    82 
 81 //....oooOO0OOooo........oooOO0OOooo........oo     83 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
 82 void IonHIJINGPhysics::ConstructProcess()          84 void IonHIJINGPhysics::ConstructProcess()
 83 {                                                  85 {
 84   if (fWasActivated) {                         <<  86   if(fWasActivated) { return; }
 85     return;                                    << 
 86   }                                            << 
 87   fWasActivated = true;                            87   fWasActivated = true;
 88                                                    88 
 89   G4double emin = 0. * MeV;                    <<  89   G4double emin = 0.*MeV;
 90   G4double emaxFTF = 25. * GeV;                <<  90   G4double emaxFTF = 25.*GeV;
 91   G4double eminHIJ = 12. * GeV;                <<  91   G4double eminHIJ = 12.*GeV;
 92   G4double emaxHIJ = G4HadronicParameters::Ins <<  92   G4double emaxHIJ = 100.*TeV;
 93                                                    93 
 94   G4ExcitationHandler* handler = new G4Excitat     94   G4ExcitationHandler* handler = new G4ExcitationHandler();
 95   G4PreCompoundModel* thePreCompound = new G4P     95   G4PreCompoundModel* thePreCompound = new G4PreCompoundModel(handler);
 96                                                    96 
 97   // Binary Cascade                                97   // Binary Cascade
 98   theIonBC = new G4BinaryLightIonReaction(theP     98   theIonBC = new G4BinaryLightIonReaction(thePreCompound);
 99   theIonBC->SetMinEnergy(0.0);                     99   theIonBC->SetMinEnergy(0.0);
100   theIonBC->SetMaxEnergy(4 * GeV);  // 4       << 100   theIonBC->SetMaxEnergy(4*GeV); //4
101                                                   101 
102   // FTFP                                         102   // FTFP
103   theBuilder = new G4FTFBuilder("FTFP", thePre << 103   theBuilder = new G4FTFBuilder("FTFP",thePreCompound);
104   theFTFP = theBuilder->GetModel();               104   theFTFP = theBuilder->GetModel();
105   theFTFP->SetMinEnergy(2 * GeV);              << 105   theFTFP->SetMinEnergy(2*GeV);
106   theFTFP->SetMaxEnergy(emaxFTF);                 106   theFTFP->SetMaxEnergy(emaxFTF);
107                                                << 107   
108   // HIJING                                    << 108   //HIJING
109   fModel = new G4HIJING_Model();                  109   fModel = new G4HIJING_Model();
110   fModel->SetMinEnergy(eminHIJ);               << 110   fModel->SetMinEnergy( eminHIJ );
111   fModel->SetMaxEnergy(emaxHIJ);               << 111   fModel->SetMaxEnergy( emaxHIJ );
112                                                << 
113   theNuclNuclData = new G4CrossSectionInelasti << 
114                                                   112 
115   AddProcess("dInelastic", G4Deuteron::Deutero << 113   theNuclNuclData = 
116   AddProcess("tInelastic", G4Triton::Triton(), << 114     new G4CrossSectionInelastic( new G4ComponentGGNuclNuclXsc() );
117   AddProcess("He3Inelastic", G4He3::He3(), tru << 
118   AddProcess("alphaInelastic", G4Alpha::Alpha( << 
119   AddProcess("ionInelastic", G4GenericIon::Gen << 
120                                                   115 
121   if (fVerbose > 1) {                          << 116   AddProcess("dInelastic", G4Deuteron::Deuteron(),false);
122     G4cout << "IonHIJINGPhysics::ConstructProc << 117   AddProcess("tInelastic",G4Triton::Triton(),false);
                                                   >> 118   AddProcess("He3Inelastic",G4He3::He3(),true);
                                                   >> 119   AddProcess("alphaInelastic", G4Alpha::Alpha(),true);
                                                   >> 120   AddProcess("ionInelastic",G4GenericIon::GenericIon(),true);
                                                   >> 121 
                                                   >> 122   if(fVerbose > 1) {
                                                   >> 123     G4cout << "IonHIJINGPhysics::ConstructProcess done! " 
                                                   >> 124    << G4endl;
123   }                                               125   }
124 }                                                 126 }
125                                                   127 
126 //....oooOO0OOooo........oooOO0OOooo........oo    128 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
127                                                   129 
128 void IonHIJINGPhysics::AddProcess(const G4Stri << 130 void IonHIJINGPhysics::AddProcess(const G4String& name, 
                                                   >> 131                                   G4ParticleDefinition* part,  G4bool isIon)
129 {                                                 132 {
130   G4HadronInelasticProcess* hadi = new G4Hadro    133   G4HadronInelasticProcess* hadi = new G4HadronInelasticProcess(name, part);
131   G4ProcessManager* pManager = part->GetProces    134   G4ProcessManager* pManager = part->GetProcessManager();
132   pManager->AddDiscreteProcess(hadi);             135   pManager->AddDiscreteProcess(hadi);
133   hadi->AddDataSet(theNuclNuclData);              136   hadi->AddDataSet(theNuclNuclData);
134   hadi->RegisterMe(theIonBC);                  << 137   hadi->RegisterMe( theIonBC );
135   hadi->RegisterMe(theFTFP);                   << 138   hadi->RegisterMe( theFTFP );
136   hadi->RegisterMe(fModel);                    << 139   hadi->RegisterMe( fModel );
137 }                                                 140 }
138                                                   141 
139 //....oooOO0OOooo........oooOO0OOooo........oo    142 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
140 #endif  // HIJING                              << 143 #endif //HIJING
141                                                   144