Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4QGSPPiKBuilder.cc
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26// $Id$
27//
28//---------------------------------------------------------------------------
29//
30// ClassName: G4QGSPPiKBuilder
31//
32// Author: 2002 J.P. Wellisch
33//
34// Modified:
35// 17.11.2010 G.Folger, use G4CrossSectionPairGG for relativistic rise of cross
36// section at high energies.
37// 30.03.2009 V.Ivanchenko create cross section by new
38//
39//----------------------------------------------------------------------------
40//
41#include "G4QGSPPiKBuilder.hh"
42#include "G4SystemOfUnits.hh"
44#include "G4ParticleTable.hh"
45#include "G4ProcessManager.hh"
52
54G4QGSPPiKBuilder(G4bool quasiElastic, G4bool projectileDiffraction)
55{
56 thePiData = new G4CrossSectionPairGG(new G4PiNuclearCrossSection(), 91*GeV);
57
58 theMin = 12*GeV;
59 theModel = new G4TheoFSGenerator("QGSP");
60
61 theStringModel = new G4QGSModel< G4QGSParticipants >;
62 theStringDecay = new G4ExcitedStringDecay(theQGSM = new G4QGSMFragmentation);
63 theStringModel->SetFragmentationModel(theStringDecay);
64
65
66 theCascade = new G4GeneratorPrecompoundInterface;
67 thePreEquilib = new G4PreCompoundModel(theHandler = new G4ExcitationHandler);
68 theCascade->SetDeExcitation(thePreEquilib);
69
70 theModel->SetHighEnergyGenerator(theStringModel);
71 if (quasiElastic)
72 {
73 theQuasiElastic=new G4QuasiElasticChannel;
74 theModel->SetQuasiElasticChannel(theQuasiElastic);
75 } else
76 { theQuasiElastic=0;}
77 if ( projectileDiffraction )
78 {
79 theProjectileDiffraction=new G4ProjectileDiffractiveChannel;
80 theModel->SetProjectileDiffraction(theProjectileDiffraction);
81 } else
82 { theProjectileDiffraction=0;}
83
84 theModel->SetTransport(theCascade);
85}
86
89{
90 delete theCascade;
91 delete thePreEquilib;
92 if ( theQuasiElastic ) delete theQuasiElastic;
93 if ( theProjectileDiffraction ) delete theProjectileDiffraction;
94 delete theStringDecay;
95 delete theStringModel;
96 delete theModel;
97 delete theQGSM;
98 //delete theHandler;
99}
100
103
106{
107 theModel->SetMinEnergy(theMin);
108 theModel->SetMaxEnergy(100*TeV);
109 aP->AddDataSet(thePiData);
110 aP->RegisterMe(theModel);
111}
112
115{
116 theModel->SetMinEnergy(theMin);
117 theModel->SetMaxEnergy(100*TeV);
118 aP->AddDataSet(thePiData);
119 aP->RegisterMe(theModel);
120}
121
124{
125 theModel->SetMinEnergy(theMin);
126 theModel->SetMaxEnergy(100*TeV);
127 aP->RegisterMe(theModel);
129}
130
133{
134 theModel->SetMinEnergy(theMin);
135 theModel->SetMaxEnergy(100*TeV);
136 aP->RegisterMe(theModel);
138}
139
142{
143 theModel->SetMinEnergy(theMin);
144 theModel->SetMaxEnergy(100*TeV);
145 aP->RegisterMe(theModel);
147}
148
151{
152 theModel->SetMinEnergy(theMin);
153 theModel->SetMaxEnergy(100*TeV);
154 aP->RegisterMe(theModel);
155}
156
157// 2002 by J.P. Wellisch
bool G4bool
Definition: G4Types.hh:67
static G4CrossSectionDataSetRegistry * Instance()
void SetMinEnergy(G4double anEnergy)
void SetMaxEnergy(const G4double anEnergy)
void AddDataSet(G4VCrossSectionDataSet *aDataSet)
void RegisterMe(G4HadronicInteraction *a)
G4QGSPPiKBuilder(G4bool quasiElastic=false, G4bool projectileDiffraction=false)
virtual ~G4QGSPPiKBuilder()
virtual void Build(G4HadronElasticProcess *aP)
void SetTransport(G4VIntraNuclearTransportModel *const value)
void SetQuasiElasticChannel(G4QuasiElasticChannel *const value)
void SetHighEnergyGenerator(G4VHighEnergyGenerator *const value)
void SetProjectileDiffraction(G4ProjectileDiffractiveChannel *const value)
void SetDeExcitation(G4VPreCompoundModel *ptr)
void SetFragmentationModel(G4VStringFragmentation *aModel)