source: trunk/source/processes/electromagnetic/lowenergy/include/G4hNuclearStoppingModel.hh @ 819

Last change on this file since 819 was 819, checked in by garnier, 16 years ago

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1//
2// ********************************************************************
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15// * use.  Please see the license in the file  LICENSE  and URL above *
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18// * This  code  implementation is the result of  the  scientific and *
19// * technical work of the GEANT4 collaboration.                      *
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24// ********************************************************************
25//
26//
27// -------------------------------------------------------------------
28//
29// GEANT4 Class file
30//
31//
32// File name:     G4hNuclearStoppingModel
33//
34// Author:        V.Ivanchenko (Vladimir.Ivanchenko@cern.ch)
35//
36// Creation date: 20 July 2000
37//
38// Modifications:
39// 20/07/2000  V.Ivanchenko First implementation
40//
41// Class Description:
42//
43// Low energy hadrons/ions ionisation parameterisation
44// Further documentation available from http://www.ge.infn.it/geant4/lowE/
45
46// -------------------------------------------------------------------
47//
48
49#ifndef G4hNuclearStoppingModel_h
50#define G4hNuclearStoppingModel_h 1
51
52#include "globals.hh"
53#include "G4VLowEnergyModel.hh"
54#include "G4VhNuclearStoppingPower.hh"
55
56class G4ParticleDefinition;
57class G4Material;
58class G4DynamicParticle;
59
60class G4hNuclearStoppingModel : public G4VLowEnergyModel
61{
62
63public:
64
65  G4hNuclearStoppingModel(const G4String& name);
66
67  ~G4hNuclearStoppingModel() ;
68
69  G4double TheValue(const G4DynamicParticle* particle,
70                    const G4Material* material);
71
72  G4double TheValue(const G4ParticleDefinition* aParticle,
73                    const G4Material* material,
74                          G4double kineticEnergy);
75
76  G4double HighEnergyLimit(const G4ParticleDefinition* ,
77                           const G4Material* ) const
78  {return highEnergyLimit;};
79 
80  G4double LowEnergyLimit(const G4ParticleDefinition* ,
81                          const G4Material* ) const
82  {return lowEnergyLimit;};
83
84  G4double HighEnergyLimit(const G4ParticleDefinition* ) const
85  {return highEnergyLimit;};
86 
87  G4double LowEnergyLimit(const G4ParticleDefinition* ) const
88  {return lowEnergyLimit;};
89 
90  G4bool IsInCharge(const G4DynamicParticle* ,
91                    const G4Material* ) const
92  {return true;};
93
94  G4bool IsInCharge(const G4ParticleDefinition* ,
95                    const G4Material* ) const
96  {return true;};
97
98  void SetNuclearStoppingFluctuationsOn() 
99  {nStopingPowerTable->SetNuclearStoppingFluctuationsOn();}; 
100
101  void SetNuclearStoppingFluctuationsOff() 
102  {nStopingPowerTable->SetNuclearStoppingFluctuationsOff();}; 
103
104
105protected:
106
107private:
108
109  // hide  assignment operator
110  G4hNuclearStoppingModel(G4hNuclearStoppingModel &);
111  G4hNuclearStoppingModel & operator=(const G4hNuclearStoppingModel &right);
112
113  void InitializeMe();
114
115  G4double StoppingPower(const G4Material* material,
116                               G4double kineticEnergy,
117                               G4double z1,
118                               G4double m1) const;
119
120  // Pointer to the parametrisation class
121  G4VhNuclearStoppingPower* nStopingPowerTable;
122
123  G4double factorPDG2AMU;    // Factor to convert PDG mass unit
124                             // into AMU
125
126  G4double theZieglerFactor; // Factor to convert the Stopping Power
127                             // unit [ev/(10^15 atoms/cm^2]
128                             // into the Geant4 dE/dx unit
129  G4String modelName;
130  G4double lowEnergyLimit;
131  G4double highEnergyLimit;
132};
133
134#endif
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