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Geant4/processes/electromagnetic/adjoint/include/G4AdjointAlongStepWeightCorrection.hh

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Differences between /processes/electromagnetic/adjoint/include/G4AdjointAlongStepWeightCorrection.hh (Version 11.3.0) and /processes/electromagnetic/adjoint/include/G4AdjointAlongStepWeightCorrection.hh (Version 11.1.2)


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 25 //                                                 25 //
 26 //////////////////////////////////////////////     26 /////////////////////////////////////////////////////////////////////////////////
 27 //  Class:    G4AdjointAlongStepWeightCorrecti     27 //  Class:    G4AdjointAlongStepWeightCorrection
 28 //  Author:         L. Desorgher                   28 //  Author:         L. Desorgher
 29 //  Organisation:   SpaceIT GmbH                   29 //  Organisation:   SpaceIT GmbH
 30 //////////////////////////////////////////////     30 /////////////////////////////////////////////////////////////////////////////////
 31 //                                                 31 //
 32 //  Documentation:                                 32 //  Documentation:
 33 //                                                 33 //
 34 //  Continuous processes act on adjoint partic     34 //  Continuous processes act on adjoint particles to continuously correct their
 35 //  weight during the adjoint reverse tracking     35 //  weight during the adjoint reverse tracking. This process is needed when
 36 //  the adjoint cross sections are not scaled      36 //  the adjoint cross sections are not scaled such that the total adjoint cross
 37 //  section matches the total forward cross se     37 //  section matches the total forward cross section. By default the mode where
 38 //  the total adjoint cross section is equal t     38 //  the total adjoint cross section is equal to the total forward cross section
 39 //  is used and therefore this along step weig     39 //  is used and therefore this along step weightcorrection factor is 1. However
 40 //  in some cases (some energy ranges) the tot     40 //  in some cases (some energy ranges) the total forward cross section or the
 41 //  total adjoint cross section can be zero. I     41 //  total adjoint cross section can be zero. In this case the along step weight
 42 //  correction is needed and is given by exp(-     42 //  correction is needed and is given by exp(-(Sigma_tot_adj-Sigma_tot_fwd).dx)
 43 //                                                 43 //
 44 //--------------------------------------------     44 //-------------------------------------------------------------
 45                                                    45 
 46 #ifndef G4AdjointAlongStepWeightCorrection_h       46 #ifndef G4AdjointAlongStepWeightCorrection_h
 47 #define G4AdjointAlongStepWeightCorrection_h 1     47 #define G4AdjointAlongStepWeightCorrection_h 1
 48                                                    48 
 49 #include "globals.hh"                              49 #include "globals.hh"
 50 #include "G4VContinuousProcess.hh"                 50 #include "G4VContinuousProcess.hh"
 51                                                    51 
 52 class G4AdjointCSManager;                          52 class G4AdjointCSManager;
 53 class G4MaterialCutsCouple;                        53 class G4MaterialCutsCouple;
 54 class G4ParticleDefinition;                        54 class G4ParticleDefinition;
 55 class G4ParticleChange;                            55 class G4ParticleChange;
 56 class G4Step;                                      56 class G4Step;
 57 class G4Track;                                     57 class G4Track;
 58                                                    58 
 59 class G4AdjointAlongStepWeightCorrection : pub     59 class G4AdjointAlongStepWeightCorrection : public G4VContinuousProcess
 60 {                                                  60 {
 61  public:                                           61  public:
 62   explicit G4AdjointAlongStepWeightCorrection(     62   explicit G4AdjointAlongStepWeightCorrection(
 63     const G4String& name = "ContinuousWeightCo     63     const G4String& name = "ContinuousWeightCorrection",
 64     G4ProcessType type   = fElectromagnetic);      64     G4ProcessType type   = fElectromagnetic);
 65                                                    65 
 66   ~G4AdjointAlongStepWeightCorrection() overri     66   ~G4AdjointAlongStepWeightCorrection() override;
 67                                                    67 
 68   G4VParticleChange* AlongStepDoIt(const G4Tra     68   G4VParticleChange* AlongStepDoIt(const G4Track&, const G4Step&) override;
 69                                                    69 
 70   void ProcessDescription(std::ostream&) const     70   void ProcessDescription(std::ostream&) const override;
 71   void DumpInfo() const override { ProcessDesc     71   void DumpInfo() const override { ProcessDescription(G4cout); };
 72                                                    72 
 73   G4AdjointAlongStepWeightCorrection(G4Adjoint     73   G4AdjointAlongStepWeightCorrection(G4AdjointAlongStepWeightCorrection&) =
 74     delete;                                        74     delete;
 75   G4AdjointAlongStepWeightCorrection& operator     75   G4AdjointAlongStepWeightCorrection& operator=(
 76     const G4AdjointAlongStepWeightCorrection&      76     const G4AdjointAlongStepWeightCorrection& right) = delete;
 77                                                    77 
 78  protected:                                        78  protected:
 79   G4double GetContinuousStepLimit(const G4Trac     79   G4double GetContinuousStepLimit(const G4Track& track,
 80                                   G4double pre     80                                   G4double previousStepSize,
 81                                   G4double cur     81                                   G4double currentMinimumStep,
 82                                   G4double& cu     82                                   G4double& currentSafety) override;
 83                                                    83 
 84  private:                                          84  private:
 85   void DefineMaterial(const G4MaterialCutsCoup     85   void DefineMaterial(const G4MaterialCutsCouple* couple);
 86                                                    86 
 87   const G4MaterialCutsCouple* fCurrentCouple =     87   const G4MaterialCutsCouple* fCurrentCouple = nullptr;
 88   G4AdjointCSManager* fCSManager = nullptr;        88   G4AdjointCSManager* fCSManager = nullptr;
 89   G4ParticleChange* fParticleChange;               89   G4ParticleChange* fParticleChange;
 90                                                    90 
 91   G4double fPreStepKinEnergy = 1.;                 91   G4double fPreStepKinEnergy = 1.;
 92 };                                                 92 };
 93                                                    93 
 94 inline void G4AdjointAlongStepWeightCorrection     94 inline void G4AdjointAlongStepWeightCorrection::DefineMaterial(
 95   const G4MaterialCutsCouple* couple)              95   const G4MaterialCutsCouple* couple)
 96 {                                                  96 {
 97   if(couple != fCurrentCouple)                     97   if(couple != fCurrentCouple)
 98   {                                                98   {
 99     fCurrentCouple = couple;                       99     fCurrentCouple = couple;
100   }                                               100   }
101 }                                                 101 }
102                                                   102 
103 #endif                                            103 #endif
104                                                   104