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Geant4/processes/electromagnetic/lowenergy/include/G4PenelopeBremsstrahlungAngular.hh

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Diff markup

Differences between /processes/electromagnetic/lowenergy/include/G4PenelopeBremsstrahlungAngular.hh (Version 11.3.0) and /processes/electromagnetic/lowenergy/include/G4PenelopeBremsstrahlungAngular.hh (Version 8.3)


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 26 //                                                 26 // 
 27 // -------------------------------------------     27 // -------------------------------------------------------------------
                                                   >>  28 // $Id: G4PenelopeBremsstrahlungAngular.hh,v 1.3 2006/06/29 19:36:17 gunter Exp $
                                                   >>  29 // GEANT4 tag $Name: geant4-08-02 $
 28 //                                                 30 //
 29 // Author: L.Pandola                               31 // Author: L.Pandola
 30 //                                                 32 //
 31 // History:                                        33 // History:
 32 // -----------                                     34 // -----------
 33 // 23 Nov 2010  L. Pandola       1st implement <<  35 // 04 Feb 2003  L. Pandola       1st implementation
 34 // 24 May 2011  L. Pandola       Renamed (make <<  36 // 07 Nov 2003  L. Pandola       Added method for testing
 35 // 13 Mar 2012  L. Pandola       Made a derive << 
 36 //                               and update th << 
 37 // 18 Jul 2012  L. Pandola       Migrate to th << 
 38 // 03 Oct 2013  L. Pandola       Migration to  << 
 39 //                                             << 
 40 // Class description:                              37 // Class description:
 41 // Calculation of angular distribution for Pen     38 // Calculation of angular distribution for Penelope Bremsstrahlung
 42 // version 2008                                << 
 43 // -------------------------------------------     39 // --------------------------------------------------------------
 44                                                    40 
 45                                                    41 
 46 #ifndef G4PENELOPEBREMSSTRAHLUNGANGULAR_HH         42 #ifndef G4PENELOPEBREMSSTRAHLUNGANGULAR_HH
 47 #define G4PENELOPEBREMSSTRAHLUNGANGULAR_HH 1       43 #define G4PENELOPEBREMSSTRAHLUNGANGULAR_HH 1
 48 #include "globals.hh"                              44 #include "globals.hh"
 49 #include <map>                                 << 
 50 #include "G4VEmAngularDistribution.hh"         << 
 51                                                << 
 52 class G4PhysicsTable;                          << 
 53 class G4Material;                              << 
 54                                                    45 
 55 class G4PenelopeBremsstrahlungAngular : public <<  46 class G4PenelopeBremsstrahlungAngular
 56 {                                                  47 { 
 57 public:                                        << 
 58   explicit G4PenelopeBremsstrahlungAngular();  << 
 59   ~G4PenelopeBremsstrahlungAngular();          << 
 60                                                    48 
 61   //! Samples the direction of the outgoing ph <<  49 private:
 62   G4ThreeVector& SampleDirection(const G4Dynam <<  50   enum{NumberofZPoints=6,
 63          G4double out_energy,                  <<  51    NumberofEPoints=6,
 64          G4int Z,                              <<  52    NumberofKPoints=4,
 65          const G4Material* mat = nullptr) over <<  53    reducedEnergyGrid=21};
 66                                                << 
 67   //! Set/Get Verbosity level                  << 
 68   void SetVerbosityLevel(G4int vl){fVerbosityL << 
 69   G4int GetVerbosityLevel(){return fVerbosityL << 
 70                                                << 
 71   //! Reserved for Master Model                << 
 72   //! The Initialize() method forces the clean << 
 73   void Initialize();                           << 
 74   //! Reserved for Master Model                << 
 75   void PrepareTables(const G4Material* materia << 
 76          G4bool isMaster);                     << 
 77                                                << 
 78 private:                                       << 
 79   void ClearTables();                          << 
 80   G4double CalculateEffectiveZ(const G4Materia << 
 81   void ReadDataFile();                         << 
 82                                                << 
 83   std::map<const G4Material*,G4double> *fEffec << 
 84                                                    54 
 85   //Tables containing the Lorentz sampling coe <<  55 public:
 86   //The key is the effective Z of the material << 
 87   std::map<G4double,G4PhysicsTable*> *fLorentz << 
 88   std::map<G4double,G4PhysicsTable*> *fLorentz << 
 89                                                    56  
 90   static const G4int fNumberofZPoints=6;       <<  57   G4PenelopeBremsstrahlungAngular(G4int Zmat); 
 91   static const G4int fNumberofEPoints=6;       <<  58   ~G4PenelopeBremsstrahlungAngular();
 92   static const G4int fNumberofKPoints=4;       <<  59   G4double ExtractCosTheta(G4double PrimaryEnergy,G4double GammaEnergy);
                                                   >>  60   G4int GetAtomicNumber(); //testing purpose
                                                   >>  61   
                                                   >>  62 private:
 93                                                    63 
 94   G4double fQQ1[fNumberofZPoints][fNumberofEPo <<  64   void InterpolationTableForZ(); //Initialization of tables (part 1)
 95   G4double fQQ2[fNumberofZPoints][fNumberofEPo <<  65   void InterpolationForK();  //Initialization of tables (part 2)
 96                                                    66 
 97   G4int fVerbosityLevel;                       <<  67   G4double betas[NumberofEPoints]; //betas for interpolation
 98   G4bool fDataRead;                            <<  68   //tables for interpolation
                                                   >>  69   G4double Q1[NumberofEPoints][NumberofKPoints],Q2[NumberofEPoints][NumberofKPoints];
                                                   >>  70   //expanded tables for interpolation
                                                   >>  71   G4double Q1E[NumberofEPoints][reducedEnergyGrid],Q2E[NumberofEPoints][reducedEnergyGrid]; 
                                                   >>  72   //Z of the element
                                                   >>  73   G4int Zmat;
 99 };                                                 74 };
100                                                    75 
101                                                    76 
102                                                    77   
103 #endif                                             78 #endif
104                                                    79