| Geant4
    10.00.p01
    | 
#include <G4GammaConversionToMuons.hh>
 Inheritance diagram for G4GammaConversionToMuons:
 Inheritance diagram for G4GammaConversionToMuons: Collaboration diagram for G4GammaConversionToMuons:
 Collaboration diagram for G4GammaConversionToMuons:| Private Member Functions | |
| G4Element * | SelectRandomAtom (const G4DynamicParticle *aDynamicGamma, G4Material *aMaterial) | 
| G4GammaConversionToMuons & | operator= (const G4GammaConversionToMuons &right) | 
| G4GammaConversionToMuons (const G4GammaConversionToMuons &) | |
| Private Attributes | |
| G4double | LowestEnergyLimit | 
| G4double | HighestEnergyLimit | 
| G4double | MeanFreePath | 
| G4double | CrossSecFactor | 
| Additional Inherited Members | |
|  Static Public Member Functions inherited from G4VProcess | |
| static const G4String & | GetProcessTypeName (G4ProcessType) | 
|  Protected Member Functions inherited from G4VProcess | |
| void | SubtractNumberOfInteractionLengthLeft (G4double previousStepSize) | 
| void | ClearNumberOfInteractionLengthLeft () | 
|  Protected Attributes inherited from G4VProcess | |
| const G4ProcessManager * | aProcessManager | 
| G4VParticleChange * | pParticleChange | 
| G4ParticleChange | aParticleChange | 
| G4double | theNumberOfInteractionLengthLeft | 
| G4double | currentInteractionLength | 
| G4double | theInitialNumberOfInteractionLength | 
| G4String | theProcessName | 
| G4String | thePhysicsTableFileName | 
| G4ProcessType | theProcessType | 
| G4int | theProcessSubType | 
| G4double | thePILfactor | 
| G4bool | enableAtRestDoIt | 
| G4bool | enableAlongStepDoIt | 
| G4bool | enablePostStepDoIt | 
| G4int | verboseLevel | 
Definition at line 61 of file G4GammaConversionToMuons.hh.
| G4GammaConversionToMuons::G4GammaConversionToMuons | ( | const G4String & | processName = "GammaToMuPair", | 
| G4ProcessType | type = fElectromagnetic | ||
| ) | 
Definition at line 48 of file G4GammaConversionToMuons.cc.
References DBL_MAX, MeanFreePath, and G4VProcess::SetProcessSubType().
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Definition at line 62 of file G4GammaConversionToMuons.cc.
| 
 | private | 
| 
 | virtual | 
Reimplemented from G4VProcess.
Definition at line 75 of file G4GammaConversionToMuons.cc.
References PrintInfoDefinition().
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 | virtual | 
Definition at line 142 of file G4GammaConversionToMuons.cc.
References CrossSecFactor, G4ThreadLocal, G4ParticleDefinition::GetPDGMass(), and G4MuonPlus::MuonPlus().
Referenced by ComputeMeanFreePath(), and GetCrossSectionPerAtom().
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 Here is the caller graph for this function:| G4double G4GammaConversionToMuons::ComputeMeanFreePath | ( | G4double | GammaEnergy, | 
| G4Material * | aMaterial | ||
| ) | 
Definition at line 104 of file G4GammaConversionToMuons.cc.
References ComputeCrossSectionPerAtom(), DBL_MAX, DBL_MIN, g, G4Material::GetElementVector(), G4Material::GetNumberOfElements(), G4Material::GetVecNbOfAtomsPerVolume(), and mole.
Referenced by GetMeanFreePath().
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 | inline | 
Definition at line 86 of file G4GammaConversionToMuons.hh.
References CrossSecFactor.
| G4double G4GammaConversionToMuons::GetCrossSectionPerAtom | ( | const G4DynamicParticle * | aDynamicGamma, | 
| G4Element * | anElement | ||
| ) | 
Definition at line 126 of file G4GammaConversionToMuons.cc.
References ComputeCrossSectionPerAtom(), g, G4Element::GetA(), G4DynamicParticle::GetKineticEnergy(), G4Element::GetZ(), and mole.
Referenced by SelectRandomAtom().
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 | virtual | 
Implements G4VDiscreteProcess.
Definition at line 83 of file G4GammaConversionToMuons.cc.
References ComputeMeanFreePath(), DBL_MAX, G4Track::GetDynamicParticle(), G4DynamicParticle::GetKineticEnergy(), G4Track::GetMaterial(), LowestEnergyLimit, and MeanFreePath.
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 | virtual | 
Reimplemented from G4VProcess.
Definition at line 67 of file G4GammaConversionToMuons.cc.
References G4Gamma::Gamma().
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 | private | 
| 
 | virtual | 
Reimplemented from G4VDiscreteProcess.
Definition at line 202 of file G4GammaConversionToMuons.cc.
References A, G4ParticleChange::AddSecondary(), G4VProcess::aParticleChange, C1, f1, f2, fStopAndKill, g, G4cout, G4endl, G4ThreadLocal, G4UniformRand, G4Element::GetA(), G4Track::GetDynamicParticle(), G4DynamicParticle::GetKineticEnergy(), G4Track::GetMaterial(), G4DynamicParticle::GetMomentumDirection(), G4ParticleDefinition::GetPDGMass(), G4Element::GetZ(), G4ParticleChange::Initialize(), mole, G4MuonMinus::MuonMinus(), G4MuonPlus::MuonPlus(), G4INCL::Math::pi, G4VDiscreteProcess::PostStepDoIt(), G4ParticleChange::ProposeEnergy(), G4ParticleChange::ProposeMomentumDirection(), G4VParticleChange::ProposeTrackStatus(), SelectRandomAtom(), and G4VParticleChange::SetNumberOfSecondaries().
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 Here is the call graph for this function:| void G4GammaConversionToMuons::PrintInfoDefinition | ( | ) | 
Definition at line 396 of file G4GammaConversionToMuons.cc.
References G4BestUnit, G4cout, G4endl, G4VProcess::GetProcessName(), G4VProcess::GetProcessSubType(), GeV, HighestEnergyLimit, and LowestEnergyLimit.
Referenced by BuildPhysicsTable().
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 | private | 
Definition at line 368 of file G4GammaConversionToMuons.cc.
References G4cout, G4endl, G4UniformRand, GetCrossSectionPerAtom(), G4Material::GetElementVector(), G4Material::GetName(), G4Material::GetNumberOfElements(), G4Material::GetVecNbOfAtomsPerVolume(), and MeanFreePath.
Referenced by PostStepDoIt().
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 Here is the caller graph for this function:| void G4GammaConversionToMuons::SetCrossSecFactor | ( | G4double | fac | ) | 
Definition at line 193 of file G4GammaConversionToMuons.cc.
References CrossSecFactor, fac, G4cout, and G4endl.
Referenced by PhysicsList::SetGammaToMuPairFac().
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 | private | 
Definition at line 134 of file G4GammaConversionToMuons.hh.
Referenced by ComputeCrossSectionPerAtom(), GetCrossSecFactor(), and SetCrossSecFactor().
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 | private | 
Definition at line 131 of file G4GammaConversionToMuons.hh.
Referenced by PrintInfoDefinition().
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 | private | 
Definition at line 130 of file G4GammaConversionToMuons.hh.
Referenced by GetMeanFreePath(), and PrintInfoDefinition().
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 | private | 
Definition at line 133 of file G4GammaConversionToMuons.hh.
Referenced by G4GammaConversionToMuons(), GetMeanFreePath(), and SelectRandomAtom().