source: trunk/source/processes/electromagnetic/adjoint/include/G4ContinuousGainOfEnergy.hh @ 1058

Last change on this file since 1058 was 966, checked in by garnier, 15 years ago

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26/////////////////////////////////////////////////////////////////////////////////
27//      Module:         G4ContinuousGainOfEnergy.hh
28//      Author:         L. Desorgher
29//      Date:           10 May 2007
30//      Organisation:   SpaceIT GmbH
31//      Customer:       ESA/ESTEC
32/////////////////////////////////////////////////////////////////////////////////
33//
34// CHANGE HISTORY
35// --------------
36//      ChangeHistory:
37//              10 May 2007 creation by L. Desorgher           
38//
39//-------------------------------------------------------------
40//      Documentation:
41//              Continuous process acting on adjoint particles to compute the continuous gain of energy of charged particels whern they are tracked back!
42//
43#ifndef G4ContinuousGainOfEnergy_h
44#define G4ContinuousGainOfEnergy_h 1
45
46#include "G4VContinuousProcess.hh"
47#include "globals.hh"
48#include "G4Material.hh"
49#include "G4MaterialCutsCouple.hh"
50#include "G4Track.hh"
51#include "G4UnitsTable.hh"
52#include "G4ParticleChange.hh"
53#include "G4VEnergyLossProcess.hh"
54
55
56class G4Step;
57class G4ParticleDefinition;
58class G4VEmModel;
59class G4VEmFluctuationModel;
60
61
62
63class G4ContinuousGainOfEnergy : public G4VContinuousProcess
64{
65public:
66
67  G4ContinuousGainOfEnergy(const G4String& name = "EnergyGain",
68                         G4ProcessType type = fElectromagnetic);
69
70  virtual ~G4ContinuousGainOfEnergy();
71
72
73protected:
74
75 
76  //------------------------------------------------------------------------
77  // Methods with standard implementation; may be overwritten if needed
78  //------------------------------------------------------------------------
79protected:
80
81 
82  virtual G4double GetContinuousStepLimit(const G4Track& track,
83                                                G4double previousStepSize,
84                                                G4double currentMinimumStep,
85                                                G4double& currentSafety);
86                                       
87
88  //------------------------------------------------------------------------
89  // Generic methods common to all processes
90  //------------------------------------------------------------------------
91public:
92
93 
94
95  void PreparePhysicsTable(const G4ParticleDefinition&);
96
97  void BuildPhysicsTable(const G4ParticleDefinition&);
98
99 
100  G4VParticleChange* AlongStepDoIt(const G4Track&, const G4Step&);
101
102
103  void SetLossFluctuations(G4bool val);
104  inline void SetIsIntegral(G4bool val){is_integral= val;}
105 
106  inline void SetDirectEnergyLossProcess(G4VEnergyLossProcess* aProcess){theDirectEnergyLossProcess=aProcess;}; 
107 
108  inline void SetDirectParticle(G4ParticleDefinition* p){theDirectPartDef=p;};
109
110protected:
111
112 
113 
114
115private:
116
117  void DefineMaterial(const G4MaterialCutsCouple* couple);
118 
119  // hide  assignment operator
120
121  G4ContinuousGainOfEnergy(G4ContinuousGainOfEnergy &);
122  G4ContinuousGainOfEnergy & operator=(const G4ContinuousGainOfEnergy &right);
123
124 
125private:
126 
127  const G4Material*  currentMaterial;
128  const G4MaterialCutsCouple* currentCouple;
129  size_t   currentMaterialIndex; 
130  G4double currentTcut;
131  G4double preStepKinEnergy;
132 
133 
134  G4double linLossLimit; 
135  G4bool   lossFluctuationFlag;
136  G4bool   lossFluctuationArePossible;
137 
138  G4VEnergyLossProcess* theDirectEnergyLossProcess;
139  G4ParticleDefinition* theDirectPartDef;
140 
141 
142  G4bool is_integral;
143 
144 
145};
146
147///////////////////////////////////////////////////////
148//
149inline void G4ContinuousGainOfEnergy::DefineMaterial(
150            const G4MaterialCutsCouple* couple)
151{
152  if(couple != currentCouple) {
153    currentCouple   = couple;
154    currentMaterial = couple->GetMaterial();
155    currentMaterialIndex = couple->GetIndex();
156    currentTcut = couple->GetProductionCuts()->GetProductionCut(theDirectPartDef->GetParticleName());
157    //G4cout<<"Define Material"<<std::endl;
158    //if(!meanFreePath) ResetNumberOfInteractionLengthLeft();
159  }
160}
161///////////////////////////////////////////////////////
162//
163inline G4double G4ContinuousGainOfEnergy::GetContinuousStepLimit(const G4Track& track,
164                G4double , G4double , G4double& )
165{ 
166  G4double x = DBL_MAX;
167  x=.1*mm;
168 
169  //G4cout<<x<<std::endl;
170  DefineMaterial(track.GetMaterialCutsCouple());
171  preStepKinEnergy = track.GetKineticEnergy();
172  G4double maxE=1.2*preStepKinEnergy;
173  G4double r = theDirectEnergyLossProcess->GetRange(preStepKinEnergy, currentCouple);
174  G4double r1 = theDirectEnergyLossProcess->GetRange(maxE, currentCouple);
175  x=std::max(r1-r,.1);
176 
177  return x;
178 
179 
180}
181#endif
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