source: trunk/source/processes/electromagnetic/lowenergy/include/G4LivermoreIonisationModel.hh @ 1337

Last change on this file since 1337 was 1337, checked in by garnier, 14 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 5.1 KB
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25//
26// $Id: G4LivermoreIonisationModel.hh,v 1.3 2009/10/23 09:28:37 pandola Exp $
27// GEANT4 tag $Name: geant4-09-04-beta-01 $
28//
29// Author: Luciano Pandola
30//
31// History:
32// -----------
33// 12 Jan 2009   L. Pandola   1st implementation. Migration from EM process
34//                            to EM model. Physics is unchanged.
35// 23 Oct 2009   L. Pandola   remove un-necessary methods to manage atomic
36//                            deexcitation (done by G4VEmModel)
37//
38// -------------------------------------------------------------------
39//
40// Class description:
41// Low Energy Electromagnetic Physics, e- ionisation
42// with Livermore Model
43// -------------------------------------------------------------------
44
45#ifndef G4LIVERMOREIONISATIONMODEL_HH
46#define G4LIVERMOREIONISATIONMODEL_HH 1
47
48#include "globals.hh"
49#include "G4VEmModel.hh"
50#include "G4DataVector.hh"
51#include "G4ParticleChangeForLoss.hh"
52#include "G4eIonisationCrossSectionHandler.hh"
53#include "G4VEnergySpectrum.hh"
54#include "G4AtomicTransitionManager.hh"
55#include "G4AtomicDeexcitation.hh"
56
57class G4ParticleDefinition;
58class G4DynamicParticle;
59class G4MaterialCutsCouple;
60class G4Material;
61class G4ShellVacancy;
62
63class G4LivermoreIonisationModel : public G4VEmModel
64{
65
66public:
67 
68  G4LivermoreIonisationModel(const G4ParticleDefinition* p=0,
69                         const G4String& processName = "LowEnergyIoni");
70 
71  virtual ~G4LivermoreIonisationModel();
72
73  virtual void Initialise(const G4ParticleDefinition*, const G4DataVector&);
74
75 
76  virtual G4double ComputeCrossSectionPerAtom(const G4ParticleDefinition*,
77                                              G4double kinEnergy,
78                                              G4double Z,
79                                              G4double A=0,
80                                              G4double cut=0,
81                                              G4double emax=DBL_MAX);
82                                         
83  virtual void SampleSecondaries(std::vector<G4DynamicParticle*>*,
84                                 const G4MaterialCutsCouple*,
85                                 const G4DynamicParticle*,
86                                 G4double tmin,
87                                 G4double maxEnergy);
88                                   
89  virtual G4double ComputeDEDXPerVolume(const G4Material*,
90                               const G4ParticleDefinition*,
91                               G4double kineticEnergy,
92                               G4double cutEnergy);
93               
94
95  virtual void SampleDeexcitationAlongStep(const G4Material*,
96                                           const G4Track&,
97                                           G4double& eloss);
98
99  // min cut in kinetic energy allowed by the model
100  virtual G4double MinEnergyCut(const G4ParticleDefinition*,
101                                const G4MaterialCutsCouple*);
102                 
103  void SetVerboseLevel(G4int vl) {verboseLevel = vl;};
104  G4int GetVerboseLevel(){return verboseLevel;};
105
106  void ActivateAuger(G4bool);
107
108protected:
109  G4ParticleChangeForLoss* fParticleChange;
110
111private:
112 
113  G4LivermoreIonisationModel & operator=(const G4LivermoreIonisationModel &right);
114  G4LivermoreIonisationModel(const G4LivermoreIonisationModel&);
115
116  void InitialiseFluorescence();
117
118  //Intrinsic energy limits of the model: cannot be extended by the parent process
119  G4double fIntrinsicLowEnergyLimit;
120  G4double fIntrinsicHighEnergyLimit;
121  G4int fNBinEnergyLoss;
122
123  G4bool isInitialised;
124 
125  G4int verboseLevel;
126 
127  G4eIonisationCrossSectionHandler* crossSectionHandler;
128  G4VEnergySpectrum* energySpectrum;
129  G4ShellVacancy* shellVacancy;
130
131  G4AtomicDeexcitation deexcitationManager;
132  const G4AtomicTransitionManager* transitionManager;
133
134};
135
136#endif
137
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