Geant4 11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4ParticleHPFission Class Reference

#include <G4ParticleHPFission.hh>

+ Inheritance diagram for G4ParticleHPFission:

Public Member Functions

 G4ParticleHPFission ()
 
 ~G4ParticleHPFission () override
 
G4HadFinalStateApplyYourself (const G4HadProjectile &aTrack, G4Nucleus &aTargetNucleus) override
 
const std::pair< G4double, G4doubleGetFatalEnergyCheckLevels () const override
 
G4int GetVerboseLevel () const
 
void SetVerboseLevel (G4int)
 
void BuildPhysicsTable (const G4ParticleDefinition &) override
 
void ModelDescription (std::ostream &outFile) const override
 
- 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 &aTrack, G4Nucleus &targetNucleus)
 
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)
 
G4int GetVerboseLevel () const
 
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
 
virtual std::pair< G4double, G4doubleGetEnergyMomentumCheckLevels () const
 
void SetEnergyMomentumCheckLevels (G4double relativeLevel, G4double absoluteLevel)
 
virtual void InitialiseModel ()
 
 G4HadronicInteraction (const G4HadronicInteraction &right)=delete
 
const G4HadronicInteractionoperator= (const G4HadronicInteraction &right)=delete
 
G4bool operator== (const G4HadronicInteraction &right) const =delete
 
G4bool operator!= (const G4HadronicInteraction &right) const =delete
 

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 52 of file G4ParticleHPFission.hh.

Constructor & Destructor Documentation

◆ G4ParticleHPFission()

G4ParticleHPFission::G4ParticleHPFission ( )

Definition at line 43 of file G4ParticleHPFission.cc.

43 : G4HadronicInteraction("NeutronHPFission")
44{
45 SetMinEnergy(0.0);
46 SetMaxEnergy(20. * MeV);
47}
void SetMinEnergy(G4double anEnergy)
G4HadronicInteraction(const G4String &modelName="HadronicModel")
void SetMaxEnergy(const G4double anEnergy)

◆ ~G4ParticleHPFission()

G4ParticleHPFission::~G4ParticleHPFission ( )
override

Definition at line 49 of file G4ParticleHPFission.cc.

50{
51 // Vector is shared, only master deletes it
52 // delete [] theFission;
54 if (theFission != nullptr) {
55 for (auto it = theFission->cbegin(); it != theFission->cend(); ++it) {
56 delete *it;
57 }
58 theFission->clear();
59 }
60 }
61}
G4bool IsMasterThread()

Member Function Documentation

◆ ApplyYourself()

G4HadFinalState * G4ParticleHPFission::ApplyYourself ( const G4HadProjectile & aTrack,
G4Nucleus & aTargetNucleus )
overridevirtual

Reimplemented from G4HadronicInteraction.

Definition at line 63 of file G4ParticleHPFission.cc.

65{
67 const G4Material* theMaterial = aTrack.GetMaterial();
68 auto n = (G4int)theMaterial->GetNumberOfElements();
69 std::size_t index = theMaterial->GetElement(0)->GetIndex();
70 if (n != 1) {
71 auto xSec = new G4double[n];
72 G4double sum = 0;
73 G4int i;
74 const G4double* NumAtomsPerVolume = theMaterial->GetVecNbOfAtomsPerVolume();
75 G4double rWeight;
77 for (i = 0; i < n; ++i) {
78 index = theMaterial->GetElement(i)->GetIndex();
79 rWeight = NumAtomsPerVolume[i];
80 xSec[i] = ((*theFission)[index])
81 ->GetXsec(aThermalE.GetThermalEnergy(aTrack, theMaterial->GetElement(i),
82 theMaterial->GetTemperature()));
83 xSec[i] *= rWeight;
84 sum += xSec[i];
85 }
86 G4double random = G4UniformRand();
87 G4double running = 0;
88 for (i = 0; i < n; ++i) {
89 running += xSec[i];
90 index = theMaterial->GetElement(i)->GetIndex();
91 // if(random<=running/sum) break;
92 if (sum == 0 || random <= running / sum) break;
93 }
94 delete[] xSec;
95 }
96 // return theFission[index].ApplyYourself(aTrack); //-2:Marker for Fission
97 G4HadFinalState* result = ((*theFission)[index])->ApplyYourself(aTrack, -2);
98
99 // Overwrite target parameters
100 aNucleus.SetParameters(G4ParticleHPManager::GetInstance()->GetReactionWhiteBoard()->GetTargA(),
101 G4ParticleHPManager::GetInstance()->GetReactionWhiteBoard()->GetTargZ());
102 const G4Element* target_element = (*G4Element::GetElementTable())[index];
103 const G4Isotope* target_isotope = nullptr;
104 auto iele = (G4int)target_element->GetNumberOfIsotopes();
105 for (G4int j = 0; j != iele; ++j) {
106 target_isotope = target_element->GetIsotope(j);
107 if (target_isotope->GetN()
109 break;
110 }
111 aNucleus.SetIsotope(target_isotope);
112
114 return result;
115}
double G4double
Definition G4Types.hh:83
int G4int
Definition G4Types.hh:85
#define G4UniformRand()
Definition Randomize.hh:52
static G4ElementTable * GetElementTable()
Definition G4Element.cc:389
const G4Isotope * GetIsotope(G4int iso) const
Definition G4Element.hh:151
size_t GetIndex() const
Definition G4Element.hh:159
size_t GetNumberOfIsotopes() const
Definition G4Element.hh:143
const G4Material * GetMaterial() const
G4int GetN() const
Definition G4Isotope.hh:83
G4double GetTemperature() const
const G4Element * GetElement(G4int iel) const
const G4double * GetVecNbOfAtomsPerVolume() const
std::size_t GetNumberOfElements() const
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &aTargetNucleus) override
static G4ParticleHPManager * GetInstance()
G4ParticleHPReactionWhiteBoard * GetReactionWhiteBoard()
G4double GetThermalEnergy(const G4HadProjectile &aP, const G4Element *anE, G4double aT)

Referenced by ApplyYourself().

◆ BuildPhysicsTable()

void G4ParticleHPFission::BuildPhysicsTable ( const G4ParticleDefinition & )
overridevirtual

Reimplemented from G4HadronicInteraction.

Definition at line 133 of file G4ParticleHPFission.cc.

134{
136
137 theFission = hpmanager->GetFissionFinalStates();
138
140 if (theFission == nullptr) theFission = new std::vector<G4ParticleHPChannel*>;
141
142 if (numEle == (G4int)G4Element::GetNumberOfElements()) return;
143
144 if (theFission->size() == G4Element::GetNumberOfElements()) {
146 return;
147 }
148
149 if (G4FindDataDir("G4NEUTRONHPDATA") == nullptr)
151 __FILE__, __LINE__,
152 "Please setenv G4NEUTRONHPDATA to point to the neutron cross-section files.");
153 dirName = G4FindDataDir("G4NEUTRONHPDATA");
154 G4String tString = "/Fission";
155 dirName = dirName + tString;
156
157 for (G4int i = numEle; i < (G4int)G4Element::GetNumberOfElements(); ++i) {
158 theFission->push_back(new G4ParticleHPChannel);
159 if ((*(G4Element::GetElementTable()))[i]->GetZ() > 87) { // TK modified for ENDF-VII
160 ((*theFission)[i])->Init((*(G4Element::GetElementTable()))[i], dirName);
161 ((*theFission)[i])->Register(new G4ParticleHPFissionFS);
162 }
163 }
164 hpmanager->RegisterFissionFinalStates(theFission);
165 }
167}
const char * G4FindDataDir(const char *)
static size_t GetNumberOfElements()
Definition G4Element.cc:393
std::vector< G4ParticleHPChannel * > * GetFissionFinalStates() const
void RegisterFissionFinalStates(std::vector< G4ParticleHPChannel * > *val)
void Register(T *inst)
void Init()
Definition G4IonTable.cc:75

◆ GetFatalEnergyCheckLevels()

const std::pair< G4double, G4double > G4ParticleHPFission::GetFatalEnergyCheckLevels ( ) const
overridevirtual

Reimplemented from G4HadronicInteraction.

Definition at line 117 of file G4ParticleHPFission.cc.

118{
119 // max energy non-conservation is mass of heavy nucleus
120 return std::pair<G4double, G4double>(10.0 * perCent, 350.0 * CLHEP::GeV);
121}

◆ GetVerboseLevel()

G4int G4ParticleHPFission::GetVerboseLevel ( ) const

Definition at line 123 of file G4ParticleHPFission.cc.

◆ ModelDescription()

void G4ParticleHPFission::ModelDescription ( std::ostream & outFile) const
overridevirtual

Reimplemented from G4HadronicInteraction.

Definition at line 169 of file G4ParticleHPFission.cc.

170{
171 outFile << "High Precision model based on Evaluated Nuclear Data Files (ENDF)\n"
172 << "for induced fission reaction of neutrons below 20MeV\n";
173}

◆ SetVerboseLevel()

void G4ParticleHPFission::SetVerboseLevel ( G4int newValue)

Definition at line 128 of file G4ParticleHPFission.cc.


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