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Public Member Functions
G4FissLib Class Reference

#include <G4FissLib.hh>

Inheritance diagram for G4FissLib:
G4HadronicInteraction

Public Member Functions

 G4FissLib ()
 
 ~G4FissLib ()
 
G4HadFinalStateApplyYourself (const G4HadProjectile &aTrack, G4Nucleus &aTargetNucleus)
 
- Public Member Functions inherited from G4HadronicInteraction
 G4HadronicInteraction (const G4String &modelName="HadronicModel")
 
virtual ~G4HadronicInteraction ()
 
virtual G4double SampleInvariantT (const G4ParticleDefinition *p, G4double plab, G4int Z, G4int A)
 
virtual G4bool IsApplicable (const G4HadProjectile &, G4Nucleus &)
 
G4double GetMinEnergy () const
 
G4double GetMinEnergy (const G4Material *aMaterial, const G4Element *anElement) const
 
void SetMinEnergy (G4double anEnergy)
 
void SetMinEnergy (G4double anEnergy, const G4Element *anElement)
 
void SetMinEnergy (G4double anEnergy, const G4Material *aMaterial)
 
G4double GetMaxEnergy () const
 
G4double GetMaxEnergy (const G4Material *aMaterial, const G4Element *anElement) const
 
void SetMaxEnergy (const G4double anEnergy)
 
void SetMaxEnergy (G4double anEnergy, const G4Element *anElement)
 
void SetMaxEnergy (G4double anEnergy, const G4Material *aMaterial)
 
const G4HadronicInteractionGetMyPointer () const
 
virtual G4int GetVerboseLevel () const
 
virtual void SetVerboseLevel (G4int value)
 
const G4StringGetModelName () const
 
void DeActivateFor (const G4Material *aMaterial)
 
void ActivateFor (const G4Material *aMaterial)
 
void DeActivateFor (const G4Element *anElement)
 
void ActivateFor (const G4Element *anElement)
 
G4bool IsBlocked (const G4Material *aMaterial) const
 
G4bool IsBlocked (const G4Element *anElement) const
 
void SetRecoilEnergyThreshold (G4double val)
 
G4double GetRecoilEnergyThreshold () const
 
G4bool operator== (const G4HadronicInteraction &right) const
 
G4bool operator!= (const G4HadronicInteraction &right) const
 
virtual const std::pair
< G4double, G4double
GetFatalEnergyCheckLevels () const
 
virtual std::pair< G4double,
G4double
GetEnergyMomentumCheckLevels () const
 
void SetEnergyMomentumCheckLevels (G4double relativeLevel, G4double absoluteLevel)
 
virtual void ModelDescription (std::ostream &outFile) const
 

Additional Inherited Members

- Protected Member Functions inherited from G4HadronicInteraction
void SetModelName (const G4String &nam)
 
G4bool IsBlocked () const
 
void Block ()
 
- Protected Attributes inherited from G4HadronicInteraction
G4HadFinalState theParticleChange
 
G4int verboseLevel
 
G4double theMinEnergy
 
G4double theMaxEnergy
 
G4bool isBlocked
 

Detailed Description

Definition at line 133 of file G4FissLib.hh.

Constructor & Destructor Documentation

G4FissLib::G4FissLib ( )

Definition at line 65 of file G4FissLib.cc.

References G4cout, G4endl, G4Element::GetElementTable(), G4Element::GetNumberOfElements(), G4NeutronHPChannel::Init(), python.hepunit::MeV, G4NeutronHPChannel::Register(), G4HadronicInteraction::SetMaxEnergy(), and G4HadronicInteraction::SetMinEnergy().

66  :xSec(0)
67 {
68  SetMinEnergy(0.0);
69  SetMaxEnergy(20.*MeV);
70  if(!getenv("G4NEUTRONHPDATA")) {
71  G4cout << "Please setenv G4NEUTRONHPDATA to point to the neutron cross-section files." << G4endl;
72  throw G4HadronicException(__FILE__, __LINE__, "Please setenv G4NEUTRONHPDATA to point to the neutron cross-section files.");
73  }
74  dirName = getenv("G4NEUTRONHPDATA");
75  G4String tString = "/Fission/";
76  dirName = dirName + tString;
78  theFission = new G4NeutronHPChannel[numEle];
79 
80  for (G4int i=0; i<numEle; i++)
81  {
82 // G4cout << "G4FissLib::G4FissLib(): element "<< i << " : " << (*(G4Element::GetElementTable()))[i]->GetZ()<< G4endl;
83  if((*(G4Element::GetElementTable()))[i]->GetZ()>89)
84  {
85  theFission[i].Init((*(G4Element::GetElementTable()))[i], dirName);
86  theFission[i].Register(&theLibrary);
87  }
88  }
89 }
G4bool Register(G4NeutronHPFinalState *theFS)
void Init(G4Element *theElement, const G4String dirName)
int G4int
Definition: G4Types.hh:78
void SetMinEnergy(G4double anEnergy)
G4GLOB_DLL std::ostream G4cout
static size_t GetNumberOfElements()
Definition: G4Element.cc:402
void SetMaxEnergy(const G4double anEnergy)
#define G4endl
Definition: G4ios.hh:61
static G4ElementTable * GetElementTable()
Definition: G4Element.cc:395
G4FissLib::~G4FissLib ( )

Definition at line 91 of file G4FissLib.cc.

92 {
93  delete [] theFission;
94 }

Member Function Documentation

G4HadFinalState * G4FissLib::ApplyYourself ( const G4HadProjectile aTrack,
G4Nucleus aTargetNucleus 
)
virtual

Implements G4HadronicInteraction.

Definition at line 97 of file G4FissLib.cc.

References G4NeutronHPChannel::ApplyYourself(), G4UniformRand, G4Material::GetElement(), G4Element::GetIndex(), G4HadProjectile::GetMaterial(), G4Material::GetNumberOfElements(), G4Material::GetTemperature(), G4NeutronHPThermalBoost::GetThermalEnergy(), G4Material::GetVecNbOfAtomsPerVolume(), G4NeutronHPChannel::GetXsec(), and n.

98 {
99  const G4Material* theMaterial = aTrack.GetMaterial();
100  G4int n = theMaterial->GetNumberOfElements();
101  G4int index = theMaterial->GetElement(0)->GetIndex();
102 
103  if (n != 1) {
104  xSec = new G4double[n];
105  G4double sum = 0;
106  G4int i;
107  G4int imat;
108  const G4double * NumAtomsPerVolume = theMaterial->GetVecNbOfAtomsPerVolume();
109  G4double rWeight;
110  G4NeutronHPThermalBoost aThermalE;
111  for (i = 0; i < n; i++) {
112  imat = theMaterial->GetElement(i)->GetIndex();
113  rWeight = NumAtomsPerVolume[i];
114  xSec[i] = theFission[imat].GetXsec(aThermalE.GetThermalEnergy(aTrack,
115  theMaterial->GetElement(i),
116  theMaterial->GetTemperature()));
117  xSec[i] *= rWeight;
118  sum+=xSec[i];
119  }
120 
121  G4double random = G4UniformRand();
122  G4double running = 0;
123  for (i = 0; i < n; i++) {
124  running += xSec[i];
125  index = theMaterial->GetElement(i)->GetIndex();
126  if(random<=running/sum) break;
127  }
128  delete [] xSec;
129  }
130 
131  return theFission[index].ApplyYourself(aTrack);
132 }
const G4Element * GetElement(G4int iel) const
Definition: G4Material.hh:200
int G4int
Definition: G4Types.hh:78
G4HadFinalState * ApplyYourself(const G4HadProjectile &theTrack, G4int isoNumber=-1)
const G4double * GetVecNbOfAtomsPerVolume() const
Definition: G4Material.hh:204
#define G4UniformRand()
Definition: Randomize.hh:87
size_t GetIndex() const
Definition: G4Element.hh:181
const G4int n
G4double GetXsec(G4double energy)
G4double GetThermalEnergy(const G4HadProjectile &aP, const G4Element *anE, G4double aT)
G4double GetTemperature() const
Definition: G4Material.hh:180
const G4Material * GetMaterial() const
size_t GetNumberOfElements() const
Definition: G4Material.hh:184
double G4double
Definition: G4Types.hh:76

The documentation for this class was generated from the following files: