Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4FTFPAntiBarionBuilder.cc
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25//
26// $Id: G4FTFPAntiBarionBuilder.cc $
27// GEANT4 tag $Name: $
28//
29//---------------------------------------------------------------------------
30//
31// ClassName: G4FTFPAntiBarionBuilder
32//
33// Author: 2011 J. Apostolakis
34//
35// Modified:
36// 2011.02.22 J.Apostolakis - Started from G4FTFPPiKBuilder
37//----------------------------------------------------------------------------
38//
40#include "G4SystemOfUnits.hh"
42#include "G4ParticleTable.hh"
43#include "G4ProcessManager.hh"
44#include "G4ComponentAntiNuclNuclearXS.hh" // For anti-ions
46
47// #include "G4AntiBarionNuclearCrossSection.hh"
48
51{
52 theAntiNucleonData =
53 new G4CrossSectionInelastic(theAntiNucleonXS=new G4ComponentAntiNuclNuclearXS());
54
55 theMin = 0.0*GeV;
56 theMax = 100.0*TeV;
57 theModel = new G4TheoFSGenerator("FTFP");
58
59 theStringModel = new G4FTFModel;
60 theStringDecay = new G4ExcitedStringDecay(theLund = new G4LundStringFragmentation);
61 theStringModel->SetFragmentationModel(theStringDecay);
62
63 thePreEquilib = new G4PreCompoundModel(theHandler = new G4ExcitationHandler);
64 theCascade = new G4GeneratorPrecompoundInterface(thePreEquilib);
65
66 theModel->SetHighEnergyGenerator(theStringModel);
67 if (quasiElastic)
68 {
69 theQuasiElastic=new G4QuasiElasticChannel;
70 theModel->SetQuasiElasticChannel(theQuasiElastic);
71 } else
72 { theQuasiElastic=0;}
73
74 theModel->SetTransport(theCascade);
75 theModel->SetMinEnergy(theMin);
76 theModel->SetMaxEnergy(100*TeV);
77}
78
80{
81 delete theCascade;
82 delete theStringDecay;
83 delete theStringModel;
84 delete theModel;
85 if ( theQuasiElastic ) delete theQuasiElastic;
86 delete thePreEquilib;
87 //delete theHandler;
88 delete theLund;
89 delete theAntiNucleonXS;
90 delete theAntiNucleonData;
91}
92
95
98{
99 theModel->SetMinEnergy(theMin);
100 theModel->SetMaxEnergy(theMax);
101 aP->AddDataSet(theAntiNucleonData);
102 aP->RegisterMe(theModel);
103}
104
107{
108 theModel->SetMinEnergy(theMin);
109 theModel->SetMaxEnergy(theMax);
110 aP->AddDataSet(theAntiNucleonData);
111 aP->RegisterMe(theModel);
112}
113
116{
117 theModel->SetMinEnergy(theMin);
118 theModel->SetMaxEnergy(theMax);
119 aP->AddDataSet(theAntiNucleonData);
120 aP->RegisterMe(theModel);
121}
122
125{
126 theModel->SetMinEnergy(theMin);
127 theModel->SetMaxEnergy(theMax);
128 aP->AddDataSet(theAntiNucleonData);
129 aP->RegisterMe(theModel);
130}
131
134{
135 theModel->SetMinEnergy(theMin);
136 theModel->SetMaxEnergy(theMax);
137 aP->AddDataSet(theAntiNucleonData);
138 aP->RegisterMe(theModel);
139}
140
143{
144 theModel->SetMinEnergy(theMin);
145 theModel->SetMaxEnergy(theMax);
146 aP->AddDataSet(theAntiNucleonData);
147 aP->RegisterMe(theModel);
148}
bool G4bool
Definition: G4Types.hh:67
virtual void Build(G4HadronElasticProcess *aP)
G4FTFPAntiBarionBuilder(G4bool quasiElastic=false)
void SetMinEnergy(G4double anEnergy)
void SetMaxEnergy(const G4double anEnergy)
void AddDataSet(G4VCrossSectionDataSet *aDataSet)
void RegisterMe(G4HadronicInteraction *a)
void SetTransport(G4VIntraNuclearTransportModel *const value)
void SetQuasiElasticChannel(G4QuasiElasticChannel *const value)
void SetHighEnergyGenerator(G4VHighEnergyGenerator *const value)
void SetFragmentationModel(G4VStringFragmentation *aModel)