source: trunk/source/processes/electromagnetic/utils/include/G4ElectronIonPair.hh @ 1340

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25//
26// $Id: G4ElectronIonPair.hh,v 1.5 2010/10/25 17:23:01 vnivanch Exp $
27// GEANT4 tag $Name: emutils-V09-03-23 $
28//
29//
30#ifndef G4ElectronIonPair_h
31#define G4ElectronIonPair_h 1
32
33// -------------------------------------------------------------
34//
35// GEANT4 Class header file
36//
37//
38// File name:     G4ElectronIonPair
39//
40// Author:        Vladimir Ivanchenko
41//
42// Creation date: 08.07.2008
43//
44// Modifications:
45//
46//
47// Class Description:
48//   Compution on number of electon-ion or electorn-hole pairs
49//   at the step of a particle and sampling ionisation points
50//   in space
51//
52// Based on ICRU Report 31, 1979
53// "Average Energy Required to Produce an Ion Pair" 
54//
55// -------------------------------------------------------------
56
57//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
58//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
59
60#include "globals.hh"
61#include "G4Step.hh"
62#include "G4ParticleDefinition.hh"
63#include "G4ThreeVector.hh"
64#include "G4VProcess.hh"
65#include <vector>
66
67//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
68
69class G4Material;
70
71class G4ElectronIonPair
72{
73public: 
74
75  G4ElectronIonPair();
76
77  virtual ~G4ElectronIonPair();
78
79  // compute mean number of ionisation points at a step
80  G4double MeanNumberOfIonsAlongStep(const G4ParticleDefinition*, 
81                                     const G4Material*,
82                                     G4double edepTotal,
83                                     G4double edepNIEL = 0.0);
84
85  inline G4double MeanNumberOfIonsAlongStep(const G4Step*); 
86
87  inline G4int SampleNumberOfIonsAlongStep(const G4Step*); 
88
89  // returns pointer to the new vector of positions of
90  // ionisation points in the World coordinate system
91  std::vector<G4ThreeVector>* SampleIonsAlongStep(const G4Step*);
92
93  // compute number of holes in the atom after PostStep interaction
94  G4int ResidualeChargePostStep(const G4ParticleDefinition*,
95                                const G4TrackVector* secondary = 0,
96                                G4int processSubType = -1);
97
98  inline G4int ResidualeChargePostStep(const G4Step*);
99
100  // find mean energies per ionisation
101  G4double FindG4MeanEnergyPerIonPair(const G4Material*);
102
103  // dump mean energies per ionisation used in run time
104  void DumpMeanEnergyPerIonPair();
105
106  // dump G4 list
107  void DumpG4MeanEnergyPerIonPair();
108
109  inline void SetVerbose(G4int);
110
111private:
112
113  void Initialise();
114
115  G4double FindMeanEnergyPerIonPair(const G4Material*);
116
117  // hide assignment operator
118  G4ElectronIonPair & operator=(const G4ElectronIonPair &right);
119  G4ElectronIonPair(const G4ElectronIonPair&);
120
121  // cash
122  const G4Material*  curMaterial;
123  G4double           curMeanEnergy;
124
125  G4double FanoFactor;
126 
127  G4int    verbose;             
128  G4int    nMaterials;
129
130  // list of G4 NIST materials with mean energy per ion defined
131  std::vector<G4double>  g4MatData;
132  std::vector<G4String>  g4MatNames;
133};
134
135inline G4double
136G4ElectronIonPair::MeanNumberOfIonsAlongStep(const G4Step* step)
137{
138  return MeanNumberOfIonsAlongStep(step->GetTrack()->GetParticleDefinition(),
139                                   step->GetPreStepPoint()->GetMaterial(),
140                                   step->GetTotalEnergyDeposit(),
141                                   step->GetNonIonizingEnergyDeposit());
142}
143
144inline 
145G4int G4ElectronIonPair::SampleNumberOfIonsAlongStep(const G4Step* step)
146{
147  G4double meanion = MeanNumberOfIonsAlongStep(step);
148  G4double sig = FanoFactor*std::sqrt(meanion);
149  G4int nion = G4int(G4RandGauss::shoot(meanion,sig) + 0.5);
150  return nion;
151} 
152
153inline 
154G4int G4ElectronIonPair::ResidualeChargePostStep(const G4Step* step)
155{
156  G4int subtype = -1;
157  const G4VProcess* proc = step->GetPostStepPoint()->GetProcessDefinedStep();
158  if(proc) { subtype = proc->GetProcessSubType(); }
159  return ResidualeChargePostStep(step->GetTrack()->GetParticleDefinition(),
160                                 step->GetSecondary(),
161                                 subtype);
162}
163
164inline void G4ElectronIonPair::SetVerbose(G4int val)
165{
166  verbose = val;
167}
168
169#endif
170
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