Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4HadronPhysicsQGSP_BERT_HP.cc
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1//
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25//
26//
27//---------------------------------------------------------------------------
28//
29// ClassName: G4HadronPhysicsQGSP_BERT_HP
30//
31// Author: 2002 J.P. Wellisch
32//
33// Modified:
34// 15.12.2005 G.Folger: migration to non static particles
35// 08.06.2006 V.Ivanchenko: remove stopping
36// 20.06.2006 G.Folger: Bertini applies to Kaons, i.e. use SetMinEnergy instead of SetMinPionEnergy
37// 25.04.2007 G.Folger: Add code for quasielastic
38// 31.10.2012 A.Ribon: Use G4MiscBuilder
39// 19.03.2013 A.Ribon: Replace LEP with FTFP
40//
41//----------------------------------------------------------------------------
42//
43#include <iomanip>
44
46
47#include "globals.hh"
48#include "G4ios.hh"
49#include "G4SystemOfUnits.hh"
51#include "G4ParticleTable.hh"
52
53#include "G4NeutronBuilder.hh"
58
60#include "G4NeutronCaptureXS.hh"
62#include "G4LFission.hh"
63#include "G4ProcessVector.hh"
64#include "G4ProcessManager.hh"
65
67
68#include "G4PhysListUtil.hh"
69
71
72// factory
74//
76
78 : G4HadronPhysicsQGSP_BERT_HP("hInelastic QGSP_BERT_HP")
79{
81}
82
85{
86 minBERT_neutron = 19.9*MeV;
87}
88
90{
92 G4bool useFactorXS = param->ApplyFactorXS();
93
94 auto neu = new G4NeutronBuilder( true ); // Fission on
95 AddBuilder(neu);
97 AddBuilder(qgs);
98 qgs->SetMinEnergy(minQGSP_neutron);
99 neu->RegisterMe(qgs);
101 AddBuilder(ftf);
102 ftf->SetMinEnergy(minFTFP_neutron);
103 ftf->SetMaxEnergy(maxFTFP_neutron);
104 neu->RegisterMe(ftf);
105 auto bert = new G4BertiniNeutronBuilder;
106 AddBuilder(bert);
107 bert->SetMinEnergy(minBERT_neutron);
108 bert->SetMaxEnergy(maxBERT_neutron);
109 neu->RegisterMe(bert);
110 auto hp = new G4NeutronPHPBuilder;
111 AddBuilder(hp);
112 neu->RegisterMe(hp);
113 neu->Build();
114
115 const G4ParticleDefinition* neutron = G4Neutron::Neutron();
117 if(nullptr != inel) {
118 if( useFactorXS ) inel->MultiplyCrossSectionBy( param->XSFactorNucleonInelastic() );
119 }
121 if ( nullptr != capture ) {
122 G4NeutronRadCapture* theNeutronRadCapture = new G4NeutronRadCapture;
123 theNeutronRadCapture->SetMinEnergy( minBERT_neutron );
124 capture->RegisterMe( theNeutronRadCapture );
125 }
127 if ( nullptr != fission ) {
128 G4LFission* theNeutronLEPFission = new G4LFission;
129 theNeutronLEPFission->SetMinEnergy( minBERT_neutron );
130 theNeutronLEPFission->SetMaxEnergy( G4HadronicParameters::Instance()->GetMaxEnergy() );
131 fission->RegisterMe( theNeutronLEPFission );
132 }
133}
#define G4_DECLARE_PHYSCONSTR_FACTORY(physics_constructor)
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
void SetMinEnergy(G4double anEnergy)
void SetMaxEnergy(const G4double anEnergy)
static G4HadronicParameters * Instance()
void SetVerboseLevel(const G4int val)
G4double XSFactorNucleonInelastic() const
void MultiplyCrossSectionBy(G4double factor)
void RegisterMe(G4HadronicInteraction *a)
static G4Neutron * Neutron()
Definition: G4Neutron.cc:103
static G4HadronicProcess * FindInelasticProcess(const G4ParticleDefinition *)
static G4HadronicProcess * FindCaptureProcess(const G4ParticleDefinition *)
static G4HadronicProcess * FindFissionProcess(const G4ParticleDefinition *)
void AddBuilder(G4PhysicsBuilderInterface *bld)