289 lines
8.3 KiB
C++
289 lines
8.3 KiB
C++
//
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// ********************************************************************
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// * DISCLAIMER *
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// * *
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// * The following disclaimer summarizes all the specific disclaimers *
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// * of contributors to this software. The specific disclaimers,which *
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// * govern, are listed with their locations in: *
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// * http://cern.ch/geant4/license *
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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. *
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// * *
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// * This code implementation is the intellectual property of the *
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// * GEANT4 collaboration. *
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// * By copying, distributing or modifying the Program (or any work *
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// * based on the Program) you indicate your acceptance of this *
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// * statement, and all its terms. *
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// ********************************************************************
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//
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// Implementation of class for selecting ionisation model depending on
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// logical volume
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//
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//
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#include "G4IonisationByLogicalVolume.hh"
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///////////////////////////////////////////////////////////////////////////
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//
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//
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G4IonisationByLogicalVolume::
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G4IonisationByLogicalVolume( const G4String& particleName,
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G4LogicalVolume* volumeForPAImodel,
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const G4String& processName ) :
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G4VContinuousDiscreteProcess(processName),
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fPAIonisation(NULL),feIonisation(NULL),fMuIonisation(NULL),fhIonisation(NULL)
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{
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fParticleName = particleName ;
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fVolumeForPAImodel = volumeForPAImodel ;
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fMaterialNameForPAI = volumeForPAImodel->GetMaterial()->GetName() ;
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// fPAIonisation = new G4PAIonisation(fMaterialNameForPAI);
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fPAIonisation = new G4PAIonisation(volumeForPAImodel);
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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feIonisation = new G4eIonisation52(particleName) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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fMuIonisation = new G4MuIonisation52(particleName) ;
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}
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else
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{
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fhIonisation = new G4hIonisation52(particleName) ;
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}
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}
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///////////////////////////////////////////////////////////////////////////
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//
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//
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G4IonisationByLogicalVolume::~G4IonisationByLogicalVolume()
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{
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if(fPAIonisation) delete fPAIonisation ;
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if(feIonisation) delete feIonisation ;
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if(fMuIonisation) delete fMuIonisation ;
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if(fhIonisation) delete fhIonisation ;
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}
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///////////////////////////////////////////////////////////////////////////
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//
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// Methods
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G4bool G4IonisationByLogicalVolume::
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IsApplicable( const G4ParticleDefinition& particle )
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{
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return( particle.GetPDGCharge() != 0.) ;
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}
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/////////////////////////////////////////////////////////////////////////
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//
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//
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/* ***********************************************
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G4double G4IonisationByLogicalVolume::
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GetConstraints(const G4DynamicParticle* aParticle,
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G4Material* aMaterial )
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{
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if ( aMaterial->GetName() == fMaterialNameForPAI )
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{
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return fPAIonisation->GetConstraints(aParticle,aMaterial) ;
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}
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else
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{
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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return feIonisation->GetConstraints(aParticle,aMaterial) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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return fMuIonisation->GetConstraints(aParticle,aMaterial) ;
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}
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else
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{
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return fhIonisation->GetConstraints(aParticle,aMaterial) ;
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}
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}
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}
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************************************** */
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////////////////////////////////////////////////////////////////////////////
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//
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//
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G4VParticleChange*
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G4IonisationByLogicalVolume::PostStepDoIt( const G4Track& track,
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const G4Step& step )
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{
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if ( track.GetVolume()->GetLogicalVolume() == fVolumeForPAImodel )
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{
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pParticleChange = fPAIonisation->PostStepDoIt(track,step) ;
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}
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else
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{
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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pParticleChange = feIonisation->PostStepDoIt(track,step) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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pParticleChange = fMuIonisation->PostStepDoIt(track,step) ;
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}
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else
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{
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pParticleChange = fhIonisation->PostStepDoIt(track,step) ;
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}
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}
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return G4VContinuousDiscreteProcess::PostStepDoIt(track,step);
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}
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////////////////////////////////////////////////////////////////////////
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//
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//
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void G4IonisationByLogicalVolume::
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BuildPhysicsTable(const G4ParticleDefinition& aParticleType)
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{
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fPAIonisation->BuildPhysicsTable(aParticleType) ;
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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feIonisation->BuildPhysicsTable(aParticleType) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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fMuIonisation->BuildPhysicsTable(aParticleType) ;
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}
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else
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{
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fhIonisation->BuildPhysicsTable(aParticleType) ;
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}
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}
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////////////////////////////////////////////////////////////////////////
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//
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//
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G4double G4IonisationByLogicalVolume::
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GetContinuousStepLimit( const G4Track& track,
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G4double previousStepSize,
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G4double currentMinimumStep,
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G4double& currentSafety )
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{
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G4double x = 0.0;
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if ( track.GetVolume()->GetLogicalVolume() == fVolumeForPAImodel )
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{
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x = fPAIonisation->GetContinuousStepLimit(track,previousStepSize,
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currentMinimumStep,currentSafety) ;
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}
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else
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{
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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x = feIonisation->GetContinuousStepLimit(track,previousStepSize,
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currentMinimumStep,currentSafety) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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x = fMuIonisation->GetContinuousStepLimit(track,previousStepSize,
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currentMinimumStep,currentSafety) ;
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}
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else
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{
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x = fhIonisation->GetContinuousStepLimit(track,previousStepSize,
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currentMinimumStep,currentSafety) ;
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}
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}
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return x;
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}
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////////////////////////////////////////////////////////////////////////
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//
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//
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G4double G4IonisationByLogicalVolume::
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GetMeanFreePath( const G4Track& track,
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G4double previousStepSize,
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G4ForceCondition* condition )
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{
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G4double x = 0.0;
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if ( track.GetVolume()->GetLogicalVolume() == fVolumeForPAImodel )
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{
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x = fPAIonisation->GetMeanFreePath(track,previousStepSize,condition) ;
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}
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else
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{
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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x = feIonisation->GetMeanFreePath(track,previousStepSize,condition) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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x = fMuIonisation->GetMeanFreePath(track,previousStepSize,condition) ;
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}
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else
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{
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x = fhIonisation->GetMeanFreePath(track,previousStepSize,condition) ;
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}
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}
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return x;
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}
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/////////////////////////////////////////////////////////////////////////
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//
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//
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G4VParticleChange*
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G4IonisationByLogicalVolume::AlongStepDoIt( const G4Track& track ,
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const G4Step& step )
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{
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if ( track.GetVolume()->GetLogicalVolume() == fVolumeForPAImodel )
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{
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return fPAIonisation->AlongStepDoIt(track,step) ;
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}
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else
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{
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if ( fParticleName == "e+" || fParticleName == "e-" )
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{
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return feIonisation->AlongStepDoIt(track,step) ;
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}
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else if ( fParticleName == "mu+" || fParticleName == "mu-" )
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{
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return fMuIonisation->AlongStepDoIt(track,step) ;
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}
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else
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{
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return fhIonisation->AlongStepDoIt(track,step) ;
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}
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}
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}
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//////////////////////////////////////////////////////////////////////////
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//
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//
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void G4IonisationByLogicalVolume::
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SetVolumeForPAImodel( G4LogicalVolume* volumeForPAImodel )
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{
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fVolumeForPAImodel = volumeForPAImodel ;
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}
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//
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//
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/////////////////////////////////////////////////////////////////////////
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