Import Geant4 10.7.0.beta source tree
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@@ -23,29 +23,19 @@
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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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// G4VRestContinuousProcess
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//
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// Class description:
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//
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//
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// ------------------------------------------------------------
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// GEANT 4 class header file
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//
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//
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// Class Description
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// Abstract class which defines the public behavior of
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// discrete physics interactions.
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//
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// ------------------------------------------------------------
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// New Physics scheme 8 Mar. 1997 H.Kurahige
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// ------------------------------------------------------------
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// modified 26 Mar. 1997 H.Kurahige
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// modified 16 Apr. 1997 L.Urban
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// modified 18 Sep. 1997 H.Kurashige
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// modified AlongStepGPIL etc. 17 Dec. 1997 H.Kurashige
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// fix bugs in GetGPILSelection() 24 Jan. 1998 H.Kurashige
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// modified for new ParticleChange 12 Mar. 1998 H.Kurashige
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// Abstract class which defines the public behavior of
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// discrete physics interactions.
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#ifndef G4VRestContinuousProcess_h
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#define G4VRestContinuousProcess_h 1
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// Authors:
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// - 2 December 1995, G.Cosmo - First implementation, based on object model
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// - 8 January 1997, H.Kurashige - New Physics scheme
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// --------------------------------------------------------------------
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#ifndef G4VRestContinuousProcess_hh
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#define G4VRestContinuousProcess_hh 1
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#include "globals.hh"
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#include "G4ios.hh"
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@@ -54,95 +44,83 @@
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class G4VRestContinuousProcess : public G4VProcess
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{
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// Abstract class which defines the public behavior of
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// discrete physics interactions.
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public:
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G4VRestContinuousProcess(const G4String& ,
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G4ProcessType aType = fNotDefined );
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G4VRestContinuousProcess(G4VRestContinuousProcess &);
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G4VRestContinuousProcess(const G4String& ,
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G4ProcessType aType = fNotDefined);
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G4VRestContinuousProcess(G4VRestContinuousProcess &);
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virtual ~G4VRestContinuousProcess();
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virtual ~G4VRestContinuousProcess();
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public: // with description
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G4VRestContinuousProcess& operator=(const G4VRestContinuousProcess&) = delete;
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virtual G4double AtRestGetPhysicalInteractionLength(
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virtual G4double AtRestGetPhysicalInteractionLength(
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const G4Track& ,
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G4ForceCondition*
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);
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G4ForceCondition*
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);
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virtual G4VParticleChange* AtRestDoIt(
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const G4Track& ,
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const G4Step&
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);
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virtual G4VParticleChange* AtRestDoIt(
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const G4Track& ,
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const G4Step&
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);
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virtual G4double AlongStepGetPhysicalInteractionLength(
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virtual G4double AlongStepGetPhysicalInteractionLength(
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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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G4GPILSelection* selection
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);
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virtual G4VParticleChange* AlongStepDoIt(
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const G4Track& ,
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const G4Step&
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);
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// no operation in PostStepDoIt
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virtual G4double PostStepGetPhysicalInteractionLength(
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const G4Track& ,
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G4double ,
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G4ForceCondition*
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){ return -1.0; };
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// no operation in PostStepDoIt
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virtual G4VParticleChange* PostStepDoIt(
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const G4Track& ,
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const G4Step&
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) {return 0;};
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protected: // with description
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virtual G4double GetContinuousStepLimit(const G4Track& aTrack,
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G4double previousStepSize,
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G4double previousStepSize,
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G4double currentMinimumStep,
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G4double& currentSafety
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)=0;
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// This pure virtual function is used to calculate step limit
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// for AlongStep in the derived processes
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G4double& currentSafety,
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G4GPILSelection* selection
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);
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virtual G4VParticleChange* AlongStepDoIt(
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const G4Track& ,
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const G4Step&
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);
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virtual G4double PostStepGetPhysicalInteractionLength(
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const G4Track& ,
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G4double ,
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G4ForceCondition*
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) { return -1.0; }
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// No operation in PostStepDoIt
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virtual G4VParticleChange* PostStepDoIt(
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const G4Track& ,
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const G4Step&
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) { return 0; }
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// No operation in PostStepDoIt
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protected:
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virtual G4double GetContinuousStepLimit(const G4Track& aTrack,
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G4double previousStepSize,
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G4double currentMinimumStep,
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G4double& currentSafety) = 0;
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// This pure virtual function is used to calculate step limit
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// for AlongStep in the derived processes
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virtual G4double GetMeanLifeTime(const G4Track& aTrack,
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G4ForceCondition* condition) = 0;
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// Calculates the mean life-time (i.e. for decays) of the
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// particle at rest due to the occurrence of the given process, or
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// converts the probability of interaction (i.e. for annihilation) into
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// the life-time of the particle for the occurrence of the given process
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inline void SetGPILSelection(G4GPILSelection selection)
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{ valueGPILSelection = selection; }
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inline G4GPILSelection GetGPILSelection() const
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{ return valueGPILSelection; }
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private:
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// this is the returnd value of G4GPILSelection in
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// the arguments of AlongStepGPIL()
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G4GPILSelection valueGPILSelection;
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protected:// with description
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// these two methods are set/get methods for valueGPILSelection
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void SetGPILSelection(G4GPILSelection selection)
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{ valueGPILSelection = selection;};
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G4GPILSelection GetGPILSelection() const{return valueGPILSelection;};
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protected: // with description
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virtual G4double GetMeanLifeTime(const G4Track& aTrack,G4ForceCondition* condition)=0;
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// Calculates the mean life-time (i.e. for decays) of the
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// particle at rest due to the occurrence of the given process,
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// or converts the probability of interaction (i.e. for
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// annihilation) into the life-time of the particle for the
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// occurrence of the given process.
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private:
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// hide default constructor and assignment operator as private
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G4VRestContinuousProcess();
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G4VRestContinuousProcess & operator=(const G4VRestContinuousProcess &right);
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G4VRestContinuousProcess();
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// Hidden default constructor
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G4GPILSelection valueGPILSelection = CandidateForSelection;
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// This is the returned value of G4GPILSelection in
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// the arguments of AlongStepGPIL()
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};
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#endif
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