Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4LENDFission.cc
Go to the documentation of this file.
1//
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25//
26#include "G4LENDFission.hh"
27#include "G4SystemOfUnits.hh"
28#include "G4Nucleus.hh"
29#include "G4ParticleTable.hh"
30
32{
33
34 G4double temp = aTrack.GetMaterial()->GetTemperature();
35
36 //migrate to integer A and Z (GetN_asInt returns number of neutrons in the nucleus since this)
37 G4int iZ = aTarg.GetZ_asInt();
38 G4int iA = aTarg.GetA_asInt();
39
40 G4double ke = aTrack.GetKineticEnergy();
41
43 theResult->Clear();
44
45 G4GIDI_target* aTarget = usedTarget_map.find( lend_manager->GetNucleusEncoding( iZ , iA ) )->second->GetTarget();
46 std::vector<G4GIDI_Product>* products = aTarget->getFissionFinalState( ke*MeV, temp, NULL, NULL );
47 if ( products != NULL )
48 {
49 for ( G4int j = 0; j < int( products->size() ); j++ )
50 {
51 G4int jZ = (*products)[j].Z;
52 G4int jA = (*products)[j].A;
53
54 //G4cout << "Z = " << (*products)[j].Z
55 // << ", A = " << (*products)[j].A
56 // << ", EK = " << (*products)[j].kineticEnergy << " [MeV]"
57 // << ", px = " << (*products)[j].px
58 // << ", py = " << (*products)[j].py
59 // << ", pz = " << (*products)[j].pz
60 // << G4endl;
61
63
64 if ( jZ > 0 )
65 {
66 //Ex j?
67 theSec->SetDefinition( G4ParticleTable::GetParticleTable()->FindIon( jZ, jA , 0, 0 ) );
68 }
69 else if ( jA == 1 && jZ == 0 )
70 {
72 }
73 else
74 {
75 theSec->SetDefinition( G4Gamma::Gamma() );
76 }
77
78 theSec->SetMomentum( G4ThreeVector( (*products)[j].px*MeV , (*products)[j].py*MeV , (*products)[j].pz*MeV ) );
79 //G4cout << theSec->GetDefinition()->GetParticleName() << G4endl;
80 theResult->AddSecondary( theSec );
81 }
82 }
83 delete products;
84
85 theResult->SetStatusChange( stopAndKill );
86
87 return theResult;
88
89}
@ stopAndKill
CLHEP::Hep3Vector G4ThreeVector
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
void SetDefinition(const G4ParticleDefinition *aParticleDefinition)
void SetMomentum(const G4ThreeVector &momentum)
std::vector< G4GIDI_Product > * getFissionFinalState(double e_in, double temperature, double(*rng)(void *), void *rngState)
static G4Gamma * Gamma()
Definition: G4Gamma.cc:86
void SetStatusChange(G4HadFinalStateStatus aS)
void AddSecondary(G4DynamicParticle *aP)
const G4Material * GetMaterial() const
G4double GetKineticEnergy() const
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &aTargetNucleus)
G4int GetNucleusEncoding(G4int iZ, G4int iA)
std::map< G4int, G4LENDUsedTarget * > usedTarget_map
Definition: G4LENDModel.hh:79
G4LENDManager * lend_manager
Definition: G4LENDModel.hh:78
G4double GetTemperature() const
Definition: G4Material.hh:181
static G4Neutron * Neutron()
Definition: G4Neutron.cc:104
G4int GetA_asInt() const
Definition: G4Nucleus.hh:109
G4int GetZ_asInt() const
Definition: G4Nucleus.hh:115
G4ParticleDefinition * FindIon(G4int atomicNumber, G4int atomicMass, G4double excitationEnergy)
static G4ParticleTable * GetParticleTable()