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Geant4/processes/hadronic/models/particle_hp/src/G4ParticleHPT2AInelasticFS.cc

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Differences between /processes/hadronic/models/particle_hp/src/G4ParticleHPT2AInelasticFS.cc (Version 11.3.0) and /processes/hadronic/models/particle_hp/src/G4ParticleHPT2AInelasticFS.cc (Version 10.1.p3)


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 25 //                                                 25 //
 26 // particle_hp -- source file                      26 // particle_hp -- source file
 27 // J.P. Wellisch, Nov-1996                         27 // J.P. Wellisch, Nov-1996
 28 // A prototype of the low energy neutron trans     28 // A prototype of the low energy neutron transport model.
 29 // P. Arce, June-2014 Conversion neutron_hp to     29 // P. Arce, June-2014 Conversion neutron_hp to particle_hp
 30 //                                                 30 //
 31 #include "G4ParticleHPT2AInelasticFS.hh"           31 #include "G4ParticleHPT2AInelasticFS.hh"
 32                                                << 
 33 #include "G4Alpha.hh"                          << 
 34 #include "G4Nucleus.hh"                            32 #include "G4Nucleus.hh"
 35 #include "G4PhysicsModelCatalog.hh"            <<  33 #include "G4Alpha.hh"
 36                                                << 
 37 G4ParticleHPT2AInelasticFS::G4ParticleHPT2AIne << 
 38 {                                              << 
 39   secID = G4PhysicsModelCatalog::GetModelID("m << 
 40 }                                              << 
 41                                                    34 
 42 G4HadFinalState* G4ParticleHPT2AInelasticFS::A <<  35 G4HadFinalState * G4ParticleHPT2AInelasticFS::ApplyYourself(const G4HadProjectile & theTrack)
 43 {                                                  36 {
 44   // these are the particle types in the final <<  37 // these are the particle types in the final state
 45                                                    38 
 46   G4ParticleDefinition* theDefs[3];            <<  39   G4ParticleDefinition * theDefs[3];
 47   theDefs[0] = G4Triton::Triton();                 40   theDefs[0] = G4Triton::Triton();
 48   theDefs[1] = G4Alpha::Alpha();                   41   theDefs[1] = G4Alpha::Alpha();
 49   theDefs[2] = G4Alpha::Alpha();                   42   theDefs[2] = G4Alpha::Alpha();
 50                                                <<  43   
 51   // fill the final state                      <<  44 // fill the final state  
 52   G4ParticleHPInelasticBaseFS::BaseApply(theTr     45   G4ParticleHPInelasticBaseFS::BaseApply(theTrack, theDefs, 3);
 53                                                <<  46   
 54   // return the result                         <<  47 // return the result
 55   return theResult.Get();                      <<  48    return &theResult;
 56 }                                                  49 }
 57                                                    50 
 58 void G4ParticleHPT2AInelasticFS::Init(G4double <<  51 void G4ParticleHPT2AInelasticFS::
 59                                       const G4 <<  52 Init (G4double A, G4double Z, G4int M, G4String & dirName, G4String & aFSType, G4ParticleDefinition* projectile)
 60 {                                                  53 {
 61   G4ParticleHPInelasticBaseFS::Init(A, Z, M, d <<  54    G4ParticleHPInelasticBaseFS::Init(A, Z, M, dirName, aFSType, projectile);
 62   G4double ResidualA = 0;                      <<  55    G4double ResidualA = 0;
 63   G4double ResidualZ = 0;                      <<  56    G4double ResidualZ = 0;
 64   if (projectile == G4Neutron::Neutron()) {    <<  57    if( projectile == G4Neutron::Neutron() ) {
 65     ResidualA = A - 10;                        <<  58      ResidualA = A-10;
 66     ResidualZ = Z - 5;                         <<  59      ResidualZ = Z-5;
 67   }                                            <<  60    } else if( projectile == G4Proton::Proton() ) {
 68   else if (projectile == G4Proton::Proton()) { <<  61      ResidualA = A-10;
 69     ResidualA = A - 10;                        <<  62      ResidualZ = Z-4;
 70     ResidualZ = Z - 4;                         <<  63    } else if( projectile == G4Deuteron::Deuteron() ) {
 71   }                                            <<  64      ResidualA = A-9;
 72   else if (projectile == G4Deuteron::Deuteron( <<  65      ResidualZ = Z-4;
 73     ResidualA = A - 9;                         <<  66    } else if( projectile == G4Triton::Triton() ) {
 74     ResidualZ = Z - 4;                         <<  67      ResidualA = A-8;
 75   }                                            <<  68      ResidualZ = Z-4;
 76   else if (projectile == G4Triton::Triton()) { <<  69    } else if( projectile == G4He3::He3() ) {
 77     ResidualA = A - 8;                         <<  70      ResidualA = A-8;
 78     ResidualZ = Z - 4;                         <<  71      ResidualZ = Z-3;
 79   }                                            <<  72    } else if( projectile == G4Alpha::Alpha() ) {
 80   else if (projectile == G4He3::He3()) {       <<  73      ResidualA = A-7;
 81     ResidualA = A - 8;                         <<  74      ResidualZ = Z-3;
 82     ResidualZ = Z - 3;                         <<  75    }
 83   }                                            << 
 84   else if (projectile == G4Alpha::Alpha()) {   << 
 85     ResidualA = A - 7;                         << 
 86     ResidualZ = Z - 3;                         << 
 87   }                                            << 
 88                                                    76 
 89   G4ParticleHPInelasticBaseFS::InitGammas(Resi <<  77    G4ParticleHPInelasticBaseFS::InitGammas(ResidualA, ResidualZ);
 90 }                                                  78 }
 91                                                    79