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geant4/source/processes/electromagnetic/muons/include/G4MuIonisationSTD.hh
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//
// ********************************************************************
// * DISCLAIMER *
// * *
// * The following disclaimer summarizes all the specific disclaimers *
// * of contributors to this software. The specific disclaimers,which *
// * govern, are listed with their locations in: *
// * http://cern.ch/geant4/license *
// * *
// * Neither the authors of this software system, nor their employing *
// * institutes,nor the agencies providing financial support for this *
// * work make any representation or warranty, express or implied, *
// * regarding this software system or assume any liability for its *
// * use. *
// * *
// * 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. *
// ********************************************************************
//
//
// -------------------------------------------------------------------
//
// GEANT4 Class header file
//
//
// File name: G4MuIonisationSTD
//
// Author: Laszlo Urban
//
// Creation date: 30.05.1997
//
// Modifications:
//
// corrected by L.Urban on 24/09/97
// corrected by L.Urban on 13/01/98
// bugs fixed by L.Urban on 02/02/99
// 10/02/00 modifications , new e.m. structure, L.Urban
// 10-08-01 new methods Store/Retrieve PhysicsTable (mma)
// 14-08-01 new function ComputeRestrictedMeandEdx() + 'cleanup' (mma)
// 19-09-01 come back to previous process name "hIoni"
// 29-10-01 all static functions no more inlined
// 10-05-02 V.Ivanchenko update to new design
// 09-12-02 V.Ivanchenko remove warning
//
// Class Description:
//
// This class manages the ionisation process for muons.
// it inherites from G4VContinuousDiscreteProcess via G4VEnergyLossSTD.
//
// -------------------------------------------------------------------
//
#ifndef G4MuIonisationSTD_h
#define G4MuIonisationSTD_h 1
#include "G4VEnergyLossSTD.hh"
#include "G4Electron.hh"
#include "G4Positron.hh"
#include "globals.hh"
class G4Material;
class G4MuIonisationSTD : public G4VEnergyLossSTD
{
public:
G4MuIonisationSTD(const G4String& name = "muIoni");
~G4MuIonisationSTD();
G4bool IsApplicable(const G4ParticleDefinition& p)
{return (p.GetPDGCharge() != 0.0 && p.GetPDGMass() > 10.0*MeV);};
virtual G4double MinPrimaryEnergy(const G4ParticleDefinition* p,
const G4Material*, G4double cut);
void PrintInfoDefinition() const;
// Print out of the class parameters
protected:
const G4ParticleDefinition* DefineBaseParticle(const G4ParticleDefinition* p);
virtual G4double MaxSecondaryEnergy(const G4DynamicParticle* dynParticle);
private:
void InitialiseProcess();
// hide assignment operator
G4MuIonisationSTD & operator=(const G4MuIonisationSTD &right);
G4MuIonisationSTD(const G4MuIonisationSTD&);
const G4ParticleDefinition* theParticle;
const G4ParticleDefinition* theBaseParticle;
G4double mass;
G4double ratio;
};
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
inline G4double G4MuIonisationSTD::MinPrimaryEnergy(const G4ParticleDefinition* p,
const G4Material*,
G4double cut)
{
G4double x = 0.5*cut/electron_mass_c2;
G4double y = electron_mass_c2/mass;
G4double g = x*y + sqrt((1. + x)*(1. + x*y*y));
return mass*(g - 1.0);
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
inline G4double G4MuIonisationSTD::MaxSecondaryEnergy(const G4DynamicParticle* dynParticle)
{
G4double gamma= dynParticle->GetKineticEnergy()/mass + 1.0;
G4double tmax = 2.0*electron_mass_c2*(gamma*gamma - 1.) /
(1. + 2.0*gamma*ratio + ratio*ratio);
return tmax;
}
//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
#endif