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geant4/source/processes/electromagnetic/standard/include/G4eplusAnnihilation.hh
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// This code implementation is the intellectual property of
// the GEANT4 collaboration.
//
// By copying, distributing or modifying the Program (or any work
// based on the Program) you indicate your acceptance of this statement,
// and all its terms.
//
// $Id: G4eplusAnnihilation.hh,v 1.1.10.1 1999/12/07 20:50:53 gunter Exp $
// GEANT4 tag $Name: geant4-01-00 $
//
//
// ------------------------------------------------------------
// GEANT 4 class header file
// CERN Geneva Switzerland
//
// For information related to this code contact:
// CERN, IT Division, ASD group
// History: first implementation, based on object model of
// 2nd December 1995, G.Cosmo
// ------------ G4eplusAnnihilation process ------
// by Michel Maire, 7 july 1996
// ************************************************************
// 10-01-97, crossection table + meanfreepath table, M.Maire
// 17-03-97, merge 'in fly' and 'at rest', M.Maire
// 31-08-98, new methods SetBining() and PrintInfo()
// ------------------------------------------------------------
#ifndef G4eplusAnnihilation_h
#define G4eplusAnnihilation_h 1
#include "G4ios.hh"
#include "globals.hh"
#include "Randomize.hh"
#include "G4VRestDiscreteProcess.hh"
#include "G4PhysicsTable.hh"
#include "G4PhysicsLogVector.hh"
#include "G4ElementTable.hh"
#include "G4Gamma.hh"
#include "G4Positron.hh"
#include "G4Step.hh"
class G4eplusAnnihilation : public G4VRestDiscreteProcess
{
public:
G4eplusAnnihilation(const G4String& processName ="annihil");
~G4eplusAnnihilation();
G4bool IsApplicable(const G4ParticleDefinition&);
void SetPhysicsTableBining(G4double lowE, G4double highE, G4int nBins);
void BuildPhysicsTable(const G4ParticleDefinition& PositronType);
void PrintInfoDefinition();
G4double GetMeanFreePath(const G4Track& aTrack,
G4double previousStepSize,
G4ForceCondition* condition);
G4double GetCrossSectionPerAtom(G4DynamicParticle* aDynamicPositron,
G4Element* anElement);
G4VParticleChange* PostStepDoIt(const G4Track& aTrack,
const G4Step& aStep);
G4double GetMeanLifeTime(const G4Track& aTrack,
G4ForceCondition* condition);
G4VParticleChange* AtRestDoIt(const G4Track& aTrack,
const G4Step& aStep);
protected:
virtual G4double ComputeCrossSectionPerAtom(G4double PositKinEnergy,
G4double AtomicNumber);
virtual G4double ComputeMeanFreePath(G4double PositKinEnergy,
G4Material* aMaterial);
private:
// hide assignment operator as private
G4eplusAnnihilation& operator=(const G4eplusAnnihilation &right);
G4eplusAnnihilation(const G4eplusAnnihilation& );
private:
G4PhysicsTable* theCrossSectionTable; // table for crossection
G4PhysicsTable* theMeanFreePathTable;
G4double LowestEnergyLimit ; // low energy limit of the crossection formula
G4double HighestEnergyLimit ; // high energy limit of the crossection formula
G4int NumbBinTable ; // number of bins in the crossection table
};
#include "G4eplusAnnihilation.icc"
#endif