Geant4
11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4HyperonFTFPBuilder.cc
Go to the documentation of this file.
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//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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//
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//---------------------------------------------------------------------------
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//
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// ClassName: G4HyperonFTFPBuilder
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//
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// Author: 2012 G.Folger
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// Implementation started from G4HyperonLHEPBuilder.
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//
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// Modified:
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//----------------------------------------------------------------------------
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#include "
G4HyperonFTFPBuilder.hh
"
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#include "
G4SystemOfUnits.hh
"
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#include "
G4ParticleDefinition.hh
"
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#include "
G4ParticleTable.hh
"
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#include "
G4ProcessManager.hh
"
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#include "
G4HadronInelasticProcess.hh
"
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#include "
G4CrossSectionInelastic.hh
"
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#include "
G4ComponentGGHadronNucleusXsc.hh
"
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#include "
G4HadronicParameters.hh
"
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#include "
G4TheoFSGenerator.hh
"
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#include "
G4GeneratorPrecompoundInterface.hh
"
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#include "
G4FTFModel.hh
"
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#include "
G4LundStringFragmentation.hh
"
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#include "
G4ExcitedStringDecay.hh
"
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#include "
G4CascadeInterface.hh
"
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#include "
G4QuasiElasticChannel.hh
"
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G4HyperonFTFPBuilder::G4HyperonFTFPBuilder
(
G4bool
quasiElastic ) {
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// The following energy limits refer to FTFP only and only for hyperons
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// (for antihyperons, the min energy is assumed to be 0.0; the max is the same as for hyperons)
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theMin =
G4HadronicParameters::Instance
()->
GetMinEnergyTransitionFTF_Cascade
();
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theMax =
G4HadronicParameters::Instance
()->
GetMaxEnergy
();
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// Hyperon : Bertini at low energies, then FTFP
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theHyperonFTFP =
new
G4TheoFSGenerator
(
"FTFP"
);
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theHyperonFTFP->
SetMinEnergy
( theMin );
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theHyperonFTFP->
SetMaxEnergy
( theMax );
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G4FTFModel
* theStringModel =
new
G4FTFModel
;
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theStringModel->
SetFragmentationModel
(
new
G4ExcitedStringDecay
);
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G4GeneratorPrecompoundInterface
* theCascade =
new
G4GeneratorPrecompoundInterface
;
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theHyperonFTFP->
SetTransport
( theCascade );
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theHyperonFTFP->
SetHighEnergyGenerator
( theStringModel );
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if
( quasiElastic ) theHyperonFTFP->
SetQuasiElasticChannel
(
new
G4QuasiElasticChannel
);
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theBertini =
new
G4CascadeInterface
;
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theBertini->
SetMinEnergy
( 0.0 );
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theBertini->
SetMaxEnergy
(
G4HadronicParameters::Instance
()->GetMaxEnergyTransitionFTF_Cascade() );
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// AntiHyperons: Use FTFP for full energy range, starting at 0.
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theAntiHyperonFTFP =
new
G4TheoFSGenerator
(
"FTFP"
);
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theAntiHyperonFTFP->
SetMinEnergy
( 0.0 );
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theAntiHyperonFTFP->
SetMaxEnergy
( theMax );
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theAntiHyperonFTFP->
SetTransport
( theCascade );
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theAntiHyperonFTFP->
SetHighEnergyGenerator
( theStringModel );
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if
( quasiElastic ) theAntiHyperonFTFP->
SetQuasiElasticChannel
(
new
G4QuasiElasticChannel
);
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// use Glauber-Gribov cross sections
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theInelasticCrossSection =
new
G4CrossSectionInelastic
(
new
G4ComponentGGHadronNucleusXsc
);
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}
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G4HyperonFTFPBuilder::~G4HyperonFTFPBuilder
() {}
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void
G4HyperonFTFPBuilder::Build
(
G4HadronInelasticProcess
* aP ) {
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if
( aP->
GetParticleDefinition
() && aP->
GetParticleDefinition
()->
GetBaryonNumber
() < 0 ) {
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// Anti-hyperon
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theAntiHyperonFTFP->
SetMaxEnergy
( theMax );
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aP->
RegisterMe
( theAntiHyperonFTFP );
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}
else
{
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// Hyperon
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theHyperonFTFP->
SetMinEnergy
( theMin );
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theHyperonFTFP->
SetMaxEnergy
( theMax );
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aP->
RegisterMe
( theBertini );
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aP->
RegisterMe
( theHyperonFTFP );
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}
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aP->
AddDataSet
( theInelasticCrossSection );
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}
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G4CascadeInterface.hh
G4ComponentGGHadronNucleusXsc.hh
G4CrossSectionInelastic.hh
G4ExcitedStringDecay.hh
G4FTFModel.hh
G4GeneratorPrecompoundInterface.hh
G4HadronInelasticProcess.hh
G4HadronicParameters.hh
G4HyperonFTFPBuilder.hh
G4LundStringFragmentation.hh
G4ParticleDefinition.hh
G4ParticleTable.hh
G4ProcessManager.hh
G4QuasiElasticChannel.hh
G4SystemOfUnits.hh
G4TheoFSGenerator.hh
G4bool
bool G4bool
Definition
G4Types.hh:86
G4CascadeInterface
Definition
G4CascadeInterface.hh:88
G4ComponentGGHadronNucleusXsc
Definition
G4ComponentGGHadronNucleusXsc.hh:52
G4CrossSectionInelastic
Definition
G4CrossSectionInelastic.hh:61
G4ExcitedStringDecay
Definition
G4ExcitedStringDecay.hh:39
G4FTFModel
Definition
G4FTFModel.hh:61
G4GeneratorPrecompoundInterface
Definition
G4GeneratorPrecompoundInterface.hh:60
G4HadronInelasticProcess
Definition
G4HadronInelasticProcess.hh:47
G4HadronInelasticProcess::GetParticleDefinition
const G4ParticleDefinition * GetParticleDefinition() const
Definition
G4HadronInelasticProcess.hh:69
G4HadronicInteraction::SetMinEnergy
void SetMinEnergy(G4double anEnergy)
Definition
G4HadronicInteraction.hh:89
G4HadronicInteraction::SetMaxEnergy
void SetMaxEnergy(const G4double anEnergy)
Definition
G4HadronicInteraction.hh:102
G4HadronicParameters::Instance
static G4HadronicParameters * Instance()
Definition
G4HadronicParameters.cc:54
G4HadronicParameters::GetMinEnergyTransitionFTF_Cascade
G4double GetMinEnergyTransitionFTF_Cascade() const
Definition
G4HadronicParameters.hh:227
G4HadronicParameters::GetMaxEnergy
G4double GetMaxEnergy() const
Definition
G4HadronicParameters.hh:223
G4HadronicProcess::AddDataSet
void AddDataSet(G4VCrossSectionDataSet *aDataSet)
Definition
G4HadronicProcess.cc:874
G4HadronicProcess::RegisterMe
void RegisterMe(G4HadronicInteraction *a)
Definition
G4HadronicProcess.cc:136
G4HyperonFTFPBuilder::G4HyperonFTFPBuilder
G4HyperonFTFPBuilder(G4bool quasiElastic=false)
Definition
G4HyperonFTFPBuilder.cc:55
G4HyperonFTFPBuilder::~G4HyperonFTFPBuilder
virtual ~G4HyperonFTFPBuilder()
Definition
G4HyperonFTFPBuilder.cc:88
G4ParticleDefinition::GetBaryonNumber
G4int GetBaryonNumber() const
Definition
G4ParticleDefinition.hh:121
G4PhysicsBuilderInterface::Build
virtual void Build()
Definition
G4PhysicsBuilderInterface.hh:45
G4QuasiElasticChannel
Definition
G4QuasiElasticChannel.hh:52
G4TheoFSGenerator
Definition
G4TheoFSGenerator.hh:56
G4TheoFSGenerator::SetTransport
void SetTransport(G4VIntraNuclearTransportModel *const value)
Definition
G4TheoFSGenerator.hh:91
G4TheoFSGenerator::SetQuasiElasticChannel
void SetQuasiElasticChannel(G4QuasiElasticChannel *const value)
Definition
G4TheoFSGenerator.hh:101
G4TheoFSGenerator::SetHighEnergyGenerator
void SetHighEnergyGenerator(G4VHighEnergyGenerator *const value)
Definition
G4TheoFSGenerator.hh:96
G4VPartonStringModel::SetFragmentationModel
void SetFragmentationModel(G4VStringFragmentation *aModel)
Definition
G4VPartonStringModel.hh:78
geant4-v11.2.2
source
physics_lists
builders
src
G4HyperonFTFPBuilder.cc
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