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Geant4/processes/hadronic/models/qmd/include/G4QMDReaction.hh

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Diff markup

Differences between /processes/hadronic/models/qmd/include/G4QMDReaction.hh (Version 11.3.0) and /processes/hadronic/models/qmd/include/G4QMDReaction.hh (Version 9.2.p2)


  1 //                                                  1 //
  2 // *******************************************      2 // ********************************************************************
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 10 // *                                               10 // *                                                                  *
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 15 // * use.  Please see the license in the file      15 // * use.  Please see the license in the file  LICENSE  and URL above *
 16 // * for the full disclaimer and the limitatio     16 // * for the full disclaimer and the limitation of liability.         *
 17 // *                                               17 // *                                                                  *
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 19 // * technical work of the GEANT4 collaboratio     19 // * technical work of the GEANT4 collaboration.                      *
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 25 //                                                 25 //
 26 // -------------------------------------------     26 // -------------------------------------------------------------------
 27 //      GEANT4 Class file                          27 //      GEANT4 Class file
 28 //                                                 28 //
 29 //                                                 29 //
 30 //      File name: G4QMDReaction.hh                30 //      File name: G4QMDReaction.hh 
 31 //                                                 31 //
 32 //      Author: Koi, Tatsumi (tkoi@slac.stanfo     32 //      Author: Koi, Tatsumi (tkoi@slac.stanford.edu)       
 33 //                                                 33 // 
 34 //      Creation date: 02 April 2007               34 //      Creation date: 02 April 2007
 35 // -------------------------------------------     35 // -----------------------------------------------------------------------------
 36 //                                                 36 //
 37 // 081107 Add UnUseGEM (then use the default c     37 // 081107 Add UnUseGEM (then use the default channel of G4Evaporation)
 38 //            UseFrag (chage criterion of a in     38 //            UseFrag (chage criterion of a inelastic reaction)
 39 // 090331 Change member shenXS and genspaXS ob     39 // 090331 Change member shenXS and genspaXS object to pointer 
 40 //                                                 40 //
 41                                                    41 
 42 #ifndef G4QMDReaction_hh                           42 #ifndef G4QMDReaction_hh
 43 #define G4QMDReaction_hh                           43 #define G4QMDReaction_hh
 44                                                    44 
 45 #include "G4QMDSystem.hh"                          45 #include "G4QMDSystem.hh"
 46 #include "G4QMDCollision.hh"                       46 #include "G4QMDCollision.hh"
 47 #include "G4QMDMeanField.hh"                       47 #include "G4QMDMeanField.hh"
 48 #include "G4QMDParticipant.hh"                     48 #include "G4QMDParticipant.hh"
 49                                                    49 
                                                   >>  50 #include "G4IonsShenCrossSection.hh"
                                                   >>  51 #include "G4GeneralSpaceNNCrossSection.hh"
                                                   >>  52 
 50 #include "G4HadronicInteraction.hh"                53 #include "G4HadronicInteraction.hh"
 51                                                    54 
 52 #include "G4Evaporation.hh"                        55 #include "G4Evaporation.hh"
 53 #include "G4ExcitationHandler.hh"                  56 #include "G4ExcitationHandler.hh"
 54                                                <<  57 //#include "G4PreCompoundModel.hh"
 55 class G4VCrossSectionDataSet;                  << 
 56 class G4BGGPionElasticXS;                      << 
 57 class G4BGGPionInelasticXS;                    << 
 58                                                    58 
 59 class G4QMDReaction : public G4HadronicInterac     59 class G4QMDReaction : public G4HadronicInteraction
 60 {                                                  60 {
 61   public:                                      <<  61    public:
 62     G4QMDReaction();                           <<  62       G4QMDReaction();
 63     ~G4QMDReaction() override;                 <<  63       ~G4QMDReaction();
 64                                                    64 
 65     std::vector< G4QMDSystem* > GetFinalStates <<  65       std::vector< G4QMDSystem* > GetFinalStates(); 
 66                                                    66 
 67     G4HadFinalState* ApplyYourself(const G4Had << 
 68                                    G4Nucleus & << 
 69                                                    67 
 70     G4ExcitationHandler* GetExcitationHandler( <<  68       G4HadFinalState *ApplyYourself( const G4HadProjectile &aTrack, G4Nucleus & targetNucleus );
 71                                                    69 
 72     void UnUseGEM() {gem = false; setEvaporati <<  70       void UnUseGEM(){ gem = false; setEvaporationCh(); };
 73     void UseFRAG() {frag = true;};             <<  71       void UseFRAG(){ frag = true; };
 74                                                    72 
 75     void SetTMAX(G4int i) { maxTime = i; };    <<  73       void EnableFermiG(){ heg = true; setHighEnergyModel(); };
 76     void SetDT(G4double t) { deltaT = t; };    << 
 77     void SetEF(G4double x) { envelopF = x; };  << 
 78                                                    74 
 79     void ModelDescription(std::ostream& outFil <<  75    private:
 80                                                    76 
 81     //copy is unexpected                       <<  77       void setEvaporationCh();
 82     G4QMDReaction(const G4QMDReaction& right)  <<  78       void setHighEnergyModel();
 83     const G4QMDReaction& operator = (const G4Q << 
 84                                                    79 
 85   private:                                     <<  80       G4QMDMeanField* meanField;
 86                                                    81 
 87     void setEvaporationCh();                   <<  82       G4QMDCollision* collision;
 88     void setHighEnergyModel();                 << 
 89                                                    83 
 90     G4QMDMeanField* meanField;                 <<  84       void doCollision();
                                                   >>  85       std::vector< G4QMDSystem* > doClusterJudgment();
                                                   >>  86       
                                                   >>  87       G4QMDSystem* system;
                                                   >>  88       G4double deltaT;
                                                   >>  89       G4int maxTime;
 91                                                    90 
 92     G4QMDCollision* collision;                 <<  91       G4Evaporation* evaporation;
                                                   >>  92       G4ExcitationHandler* excitationHandler;
 93                                                    93 
 94     void doCollision();                        <<  94 //      G4VPreCompoundModel* preco; 
 95     std::vector< G4QMDSystem* > doClusterJudgm << 
 96                                                << 
 97     G4QMDSystem* system;                       << 
 98     G4double deltaT;                           << 
 99     G4int maxTime;                             << 
100     G4double envelopF;                         << 
101                                                    95 
102     G4ExcitationHandler* excitationHandler;    << 
103                                                    96 
104       //                            b        p     97       //                            b        pd_proj                pd_targ                  z_p     a_p     z_t     a_t      plab       elab
105 //      G4double offSetOfCollision( G4double ,     98 //      G4double offSetOfCollision( G4double , G4ParticleDefinition* , G4ParticleDefinition* , G4int , G4int , G4int , G4int , G4double , G4double  );  
106       //                           b               99       //                           b          pd_proj                 pd_targ                 plab       elab      bmax boostToCM
                                                   >> 100       void calcOffSetOfCollision( G4double , G4ParticleDefinition* , G4ParticleDefinition* , G4double , G4double , G4double , G4ThreeVector );  
                                                   >> 101       G4double coulomb_collision_gamma_proj;
                                                   >> 102       G4double coulomb_collision_rx_proj;
                                                   >> 103       G4double coulomb_collision_rz_proj;
                                                   >> 104       G4double coulomb_collision_px_proj;
                                                   >> 105       G4double coulomb_collision_pz_proj;
                                                   >> 106 
                                                   >> 107       G4double coulomb_collision_gamma_targ;
                                                   >> 108       G4double coulomb_collision_rx_targ;
                                                   >> 109       G4double coulomb_collision_rz_targ;
                                                   >> 110       G4double coulomb_collision_px_targ;
                                                   >> 111       G4double coulomb_collision_pz_targ;
                                                   >> 112 
                                                   >> 113 //090331
                                                   >> 114       G4IonsShenCrossSection* shenXS;
                                                   >> 115       G4GeneralSpaceNNCrossSection* genspaXS;
                                                   >> 116 
                                                   >> 117       G4bool gem;
                                                   >> 118       G4bool frag;
                                                   >> 119       G4bool heg;
107                                                   120 
108     void calcOffSetOfCollision(G4double, const << 
109                                const G4Particl << 
110                                G4double, G4dou << 
111                                                << 
112     G4double coulomb_collision_gamma_proj;     << 
113     G4double coulomb_collision_rx_proj;        << 
114     G4double coulomb_collision_rz_proj;        << 
115     G4double coulomb_collision_px_proj;        << 
116     G4double coulomb_collision_pz_proj;        << 
117                                                << 
118     G4double coulomb_collision_gamma_targ;     << 
119     G4double coulomb_collision_rx_targ;        << 
120     G4double coulomb_collision_rz_targ;        << 
121     G4double coulomb_collision_px_targ;        << 
122     G4double coulomb_collision_pz_targ;        << 
123                                                << 
124     G4VCrossSectionDataSet* theXS;             << 
125                                                << 
126     G4BGGPionElasticXS* pipElNucXS;            << 
127     G4BGGPionElasticXS* pimElNucXS;            << 
128     G4BGGPionInelasticXS* pipInelNucXS;        << 
129     G4BGGPionInelasticXS* pimInelNucXS;        << 
130                                                << 
131     G4bool gem;                                << 
132     G4bool frag;                               << 
133     G4int secID;  // Creator model ID for the  << 
134 };                                                121 };
135                                                   122 
136 #endif                                            123 #endif
137                                                   124