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geant4/examples/extended/hadronic/Hadr02/src/CRMCNeutronBuilder.cc
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/// \file hadronic/Hadr02/src/CRMCNeutronBuilder.cc
/// \brief Implementation of the CRMCNeutronBuilder class
//
//
//---------------------------------------------------------------------------
//
// ClassName: CRMCNeutronBuilder
//
// Author: 2018 Alberto Ribon
//
// Modified:
// - 18-May-2021 Alberto Ribon : Used the latest Geant4-CRMC interface.
//
//----------------------------------------------------------------------------
//
#ifdef G4_USE_CRMC
#include "CRMCNeutronBuilder.hh"
#include "G4ParticleDefinition.hh"
#include "G4ParticleTable.hh"
#include "G4ProcessManager.hh"
#include "G4HadronInelasticProcess.hh"
#include "G4NeutronFissionProcess.hh"
#include "G4NeutronCaptureProcess.hh"
#include "G4NeutronRadCapture.hh"
#include "G4LFission.hh"
#include "HadronicInelasticModelCRMC.hh"
#include "G4HadronicParameters.hh"
#include "G4SystemOfUnits.hh"
CRMCNeutronBuilder::CRMCNeutronBuilder( const G4int crmcModelId, const std::string & crmcModelName ) {
fMin = 0.0*MeV; // For CRMC, this value does not matter in practice because
// we are going to use this model only at high energies.
fMax = G4HadronicParameters::Instance()->GetMaxEnergy();
fModel = new HadronicInelasticModelCRMC( crmcModelId, crmcModelName );
fCaptureModel = new G4NeutronRadCapture;
fFissionModel = new G4LFission;
}
void CRMCNeutronBuilder::Build( G4HadronInelasticProcess* aP ) {
fModel->SetMinEnergy( fMin );
fModel->SetMaxEnergy( fMax );
aP->RegisterMe( fModel );
}
CRMCNeutronBuilder::~CRMCNeutronBuilder() {}
void CRMCNeutronBuilder::Build( G4HadronElasticProcess* ) {}
void CRMCNeutronBuilder::Build( G4NeutronFissionProcess* aP ) {
fFissionModel->SetMinEnergy( 0.0 );
fFissionModel->SetMaxEnergy( G4HadronicParameters::Instance()->GetMaxEnergy() );
aP->RegisterMe( fFissionModel );
}
void CRMCNeutronBuilder::Build( G4NeutronCaptureProcess* aP ) {
aP->RegisterMe( fCaptureModel );
}
#endif //G4_USE_CRMC