Geant4-11
Public Member Functions | Protected Member Functions | Protected Attributes | Private Member Functions | Private Attributes | Static Private Attributes
G4BraggIonModel Class Reference

#include <G4BraggIonModel.hh>

Inheritance diagram for G4BraggIonModel:
G4VEmModel G4BraggNoDeltaModel

Public Member Functions

virtual G4double ChargeSquareRatio (const G4Track &)
 
G4double ComputeCrossSectionPerAtom (const G4ParticleDefinition *, const G4Element *, G4double kinEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
G4double ComputeCrossSectionPerAtom (const G4ParticleDefinition *, G4double kineticEnergy, G4double Z, G4double A, G4double cutEnergy, G4double maxEnergy) override
 
G4double ComputeCrossSectionPerElectron (const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy, G4double maxEnergy)
 
virtual G4double ComputeCrossSectionPerShell (const G4ParticleDefinition *, G4int Z, G4int shellIdx, G4double kinEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
G4double ComputeDEDX (const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=DBL_MAX)
 
G4double ComputeDEDXPerVolume (const G4Material *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy) override
 
G4double ComputeMeanFreePath (const G4ParticleDefinition *, G4double kineticEnergy, const G4Material *, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
void CorrectionsAlongStep (const G4MaterialCutsCouple *, const G4DynamicParticle *, const G4double &length, G4double &eloss) override
 
G4double CrossSection (const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
G4double CrossSectionPerVolume (const G4Material *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy, G4double maxEnergy) override
 
G4bool DeexcitationFlag () const
 
virtual void DefineForRegion (const G4Region *)
 
virtual void FillNumberOfSecondaries (G4int &numberOfTriplets, G4int &numberOfRecoil)
 
G4bool ForceBuildTableFlag () const
 
 G4BraggIonModel (const G4BraggIonModel &)=delete
 
 G4BraggIonModel (const G4ParticleDefinition *p=nullptr, const G4String &nam="BraggIon")
 
G4VEmAngularDistributionGetAngularDistribution ()
 
G4double GetChargeSquareRatio (const G4ParticleDefinition *, const G4Material *, G4double kineticEnergy) override
 
G4PhysicsTableGetCrossSectionTable ()
 
const G4ElementGetCurrentElement () const
 
const G4IsotopeGetCurrentIsotope () const
 
G4ElementDataGetElementData ()
 
std::vector< G4EmElementSelector * > * GetElementSelectors ()
 
G4VEmFluctuationModelGetModelOfFluctuations ()
 
const G4StringGetName () const
 
virtual G4double GetPartialCrossSection (const G4Material *, G4int level, const G4ParticleDefinition *, G4double kineticEnergy)
 
G4double GetParticleCharge (const G4ParticleDefinition *p, const G4Material *mat, G4double kineticEnergy) override
 
G4VEmModelGetTripletModel ()
 
G4double HighEnergyActivationLimit () const
 
G4double HighEnergyLimit () const
 
void Initialise (const G4ParticleDefinition *, const G4DataVector &) override
 
void InitialiseElementSelectors (const G4ParticleDefinition *, const G4DataVector &)
 
virtual void InitialiseForElement (const G4ParticleDefinition *, G4int Z)
 
virtual void InitialiseForMaterial (const G4ParticleDefinition *, const G4Material *)
 
virtual void InitialiseLocal (const G4ParticleDefinition *, G4VEmModel *masterModel)
 
G4bool IsActive (G4double kinEnergy) const
 
G4bool IsLocked () const
 
G4bool IsMaster () const
 
G4double LowEnergyActivationLimit () const
 
G4double LowEnergyLimit () const
 
G4bool LPMFlag () const
 
G4double MaxSecondaryKinEnergy (const G4DynamicParticle *dynParticle)
 
G4double MinEnergyCut (const G4ParticleDefinition *, const G4MaterialCutsCouple *couple) override
 
virtual G4double MinPrimaryEnergy (const G4Material *, const G4ParticleDefinition *, G4double cut=0.0)
 
virtual void ModelDescription (std::ostream &outFile) const
 
G4BraggIonModeloperator= (const G4BraggIonModel &right)=delete
 
G4double PolarAngleLimit () const
 
void SampleSecondaries (std::vector< G4DynamicParticle * > *, const G4MaterialCutsCouple *, const G4DynamicParticle *, G4double tmin, G4double maxEnergy) override
 
G4double SecondaryThreshold () const
 
G4int SelectIsotopeNumber (const G4Element *)
 
const G4ElementSelectRandomAtom (const G4Material *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
const G4ElementSelectRandomAtom (const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
G4int SelectRandomAtomNumber (const G4Material *)
 
const G4ElementSelectTargetAtom (const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy, G4double logKineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
 
void SetActivationHighEnergyLimit (G4double)
 
void SetActivationLowEnergyLimit (G4double)
 
void SetAngularDistribution (G4VEmAngularDistribution *)
 
void SetAngularGeneratorFlag (G4bool)
 
void SetCrossSectionTable (G4PhysicsTable *, G4bool isLocal)
 
void SetCurrentCouple (const G4MaterialCutsCouple *)
 
void SetDeexcitationFlag (G4bool val)
 
void SetElementSelectors (std::vector< G4EmElementSelector * > *)
 
void SetFluctuationFlag (G4bool val)
 
void SetForceBuildTable (G4bool val)
 
void SetHighEnergyLimit (G4double)
 
void SetLocked (G4bool)
 
void SetLowEnergyLimit (G4double)
 
void SetLPMFlag (G4bool val)
 
void SetMasterThread (G4bool val)
 
void SetParticleChange (G4VParticleChange *, G4VEmFluctuationModel *f=nullptr)
 
void SetPolarAngleLimit (G4double)
 
void SetSecondaryThreshold (G4double)
 
void SetTripletModel (G4VEmModel *)
 
virtual void SetupForMaterial (const G4ParticleDefinition *, const G4Material *, G4double kineticEnergy)
 
void SetUseBaseMaterials (G4bool val)
 
virtual void StartTracking (G4Track *)
 
G4bool UseAngularGeneratorFlag () const
 
G4bool UseBaseMaterials () const
 
virtual G4double Value (const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy)
 
 ~G4BraggIonModel () override
 

Protected Member Functions

const G4MaterialCutsCoupleCurrentCouple () const
 
G4ParticleChangeForGammaGetParticleChangeForGamma ()
 
G4ParticleChangeForLossGetParticleChangeForLoss ()
 
G4double MaxSecondaryEnergy (const G4ParticleDefinition *, G4double kinEnergy) final
 
void SetCurrentElement (const G4Element *)
 

Protected Attributes

size_t basedCoupleIndex = 0
 
size_t currentCoupleIndex = 0
 
G4ElementDatafElementData = nullptr
 
G4double inveplus
 
G4bool lossFlucFlag = true
 
const G4MaterialpBaseMaterial = nullptr
 
G4double pFactor = 1.0
 
G4VParticleChangepParticleChange = nullptr
 
const std::vector< G4double > * theDensityFactor = nullptr
 
const std::vector< G4int > * theDensityIdx = nullptr
 
G4PhysicsTablexSectionTable = nullptr
 

Private Member Functions

G4double DEDX (const G4Material *material, const G4double kinEnergy)
 
G4double ElectronicStoppingPower (const G4double z, const G4double kinEnergy) const
 
G4int HasMaterial (const G4Material *material) const
 
G4double HeEffChargeSquare (const G4double z, const G4double kinEnergyInMeV) const
 
void SetParticle (const G4ParticleDefinition *p)
 
G4double StoppingPower (const G4Material *material, const G4double kinEnergy) const
 

Private Attributes

G4VEmAngularDistributionanglModel = nullptr
 
const G4MaterialbaseMaterial = nullptr
 
G4double chargeSquare = 1.0
 
G4EmCorrectionscorr = nullptr
 
const G4MaterialcurrentMaterial = nullptr
 
G4double effChargeSquare = 1.0
 
std::vector< G4EmElementSelector * > * elmSelectors = nullptr
 
G4double eMaxActive = DBL_MAX
 
G4double eMinActive = 0.0
 
const G4MaterialCutsCouplefCurrentCouple = nullptr
 
const G4ElementfCurrentElement = nullptr
 
const G4IsotopefCurrentIsotope = nullptr
 
G4LossTableManagerfEmManager
 
G4ICRU90StoppingDatafICRU90 = nullptr
 
G4bool flagDeexcitation = false
 
G4bool flagForceBuildTable = false
 
G4VEmFluctuationModelflucModel = nullptr
 
G4ParticleChangeForLossfParticleChange = nullptr
 
G4VEmModelfTripletModel = nullptr
 
G4double HeMass
 
G4double highLimit
 
G4int iASTAR = -1
 
G4int iICRU90 = -1
 
G4int iMolecula = -1
 
G4bool isAlpha = false
 
G4bool isIon = false
 
G4bool isLocked = false
 
G4bool isMaster = true
 
G4bool localElmSelectors = true
 
G4bool localTable = true
 
G4double lowestKinEnergy
 
G4double lowLimit
 
G4double mass = 0.0
 
G4double massFactor
 
G4double massRate = 1.0
 
const G4String name
 
G4int nsec = 5
 
G4int nSelectors = 0
 
const G4ParticleDefinitionparticle = nullptr
 
G4double polarAngleLimit
 
G4double rateMassHe2p
 
G4double ratio = 1.0
 
G4double secondaryThreshold = DBL_MAX
 
G4double spin = 0.0
 
const G4ParticleDefinitiontheElectron
 
G4bool theLPMflag = false
 
G4double theZieglerFactor
 
G4bool useAngularGenerator = false
 
G4bool useBaseMaterials = false
 
std::vector< G4doublexsec
 

Static Private Attributes

static G4ASTARStoppingfASTAR = nullptr
 

Detailed Description

Definition at line 66 of file G4BraggIonModel.hh.

Constructor & Destructor Documentation

◆ G4BraggIonModel() [1/2]

G4BraggIonModel::G4BraggIonModel ( const G4ParticleDefinition p = nullptr,
const G4String nam = "BraggIon" 
)
explicit

Definition at line 79 of file G4BraggIonModel.cc.

81 : G4VEmModel(nam),
83 HeMass(3.727417*CLHEP::GeV),
86{
88
91
92 if(nullptr != p) { SetParticle(p); }
93 else { SetParticle(theElectron); }
94}
void SetParticle(const G4ParticleDefinition *p)
const G4ParticleDefinition * theElectron
G4double theZieglerFactor
G4double lowestKinEnergy
static G4Electron * Electron()
Definition: G4Electron.cc:93
void SetHighEnergyLimit(G4double)
Definition: G4VEmModel.hh:767
G4VEmModel(const G4String &nam)
Definition: G4VEmModel.cc:66
static constexpr double amu_c2
static constexpr double proton_mass_c2
static constexpr double GeV
static constexpr double keV
static constexpr double MeV
static constexpr double cm2
static constexpr double eV

References CLHEP::amu_c2, HeMass, massFactor, CLHEP::MeV, CLHEP::proton_mass_c2, rateMassHe2p, G4VEmModel::SetHighEnergyLimit(), SetParticle(), and theElectron.

◆ ~G4BraggIonModel()

G4BraggIonModel::~G4BraggIonModel ( )
override

Definition at line 98 of file G4BraggIonModel.cc.

99{
100 if(IsMaster()) { delete fASTAR; fASTAR = nullptr; }
101}
static G4ASTARStopping * fASTAR
G4bool IsMaster() const
Definition: G4VEmModel.hh:746

References fASTAR, and G4VEmModel::IsMaster().

◆ G4BraggIonModel() [2/2]

G4BraggIonModel::G4BraggIonModel ( const G4BraggIonModel )
delete

Member Function Documentation

◆ ChargeSquareRatio()

G4double G4VEmModel::ChargeSquareRatio ( const G4Track track)
virtualinherited

Reimplemented in G4BraggIonGasModel, and G4BetheBlochIonGasModel.

Definition at line 374 of file G4VEmModel.cc.

375{
377 track.GetMaterial(), track.GetKineticEnergy());
378}
const G4ParticleDefinition * GetParticleDefinition() const
G4Material * GetMaterial() const
G4double GetKineticEnergy() const
virtual G4double GetChargeSquareRatio(const G4ParticleDefinition *, const G4Material *, G4double kineticEnergy)
Definition: G4VEmModel.cc:382

References G4VEmModel::GetChargeSquareRatio(), G4Track::GetKineticEnergy(), G4Track::GetMaterial(), and G4Track::GetParticleDefinition().

Referenced by G4VEnergyLossProcess::PostStepGetPhysicalInteractionLength().

◆ ComputeCrossSectionPerAtom() [1/2]

G4double G4VEmModel::ComputeCrossSectionPerAtom ( const G4ParticleDefinition part,
const G4Element elm,
G4double  kinEnergy,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
inlineinherited

Definition at line 566 of file G4VEmModel.hh.

571{
573 return ComputeCrossSectionPerAtom(part,kinEnergy,elm->GetZ(),elm->GetN(),
574 cutEnergy,maxEnergy);
575}
G4double GetZ() const
Definition: G4Element.hh:131
G4double GetN() const
Definition: G4Element.hh:135
virtual G4double ComputeCrossSectionPerAtom(const G4ParticleDefinition *, G4double kinEnergy, G4double Z, G4double A=0., G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
Definition: G4VEmModel.cc:341
void SetCurrentElement(const G4Element *)
Definition: G4VEmModel.hh:497

References G4VEmModel::ComputeCrossSectionPerAtom(), G4Element::GetN(), G4Element::GetZ(), and G4VEmModel::SetCurrentElement().

◆ ComputeCrossSectionPerAtom() [2/2]

G4double G4BraggIonModel::ComputeCrossSectionPerAtom ( const G4ParticleDefinition p,
G4double  kineticEnergy,
G4double  Z,
G4double  A,
G4double  cutEnergy,
G4double  maxEnergy 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 201 of file G4BraggIonModel.cc.

207{
208 G4double sigma =
209 Z*ComputeCrossSectionPerElectron(p,kinEnergy,cutEnergy,maxEnergy);
210 if(isAlpha) {
211 sigma *= (HeEffChargeSquare(Z, kinEnergy/CLHEP::MeV)/chargeSquare);
212 }
213 return sigma;
214}
double G4double
Definition: G4Types.hh:83
const G4int Z[17]
G4double ComputeCrossSectionPerElectron(const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy, G4double maxEnergy)
G4double HeEffChargeSquare(const G4double z, const G4double kinEnergyInMeV) const

References chargeSquare, ComputeCrossSectionPerElectron(), HeEffChargeSquare(), isAlpha, CLHEP::MeV, and Z.

◆ ComputeCrossSectionPerElectron()

G4double G4BraggIonModel::ComputeCrossSectionPerElectron ( const G4ParticleDefinition p,
G4double  kineticEnergy,
G4double  cutEnergy,
G4double  maxEnergy 
)

Definition at line 170 of file G4BraggIonModel.cc.

175{
176 G4double cross = 0.0;
177 const G4double tmax = MaxSecondaryEnergy(p, kineticEnergy);
178 const G4double maxEnergy = std::min(tmax, maxKinEnergy);
179 const G4double cutEnergy = std::max(lowestKinEnergy*massRate, minKinEnergy);
180
181 if(cutEnergy < tmax) {
182
183 const G4double energy = kineticEnergy + mass;
184 const G4double energy2 = energy*energy;
185 const G4double beta2 = kineticEnergy*(kineticEnergy + 2.0*mass)/energy2;
186
187 cross = (maxEnergy - cutEnergy)/(cutEnergy*maxEnergy)
188 - beta2*G4Log(maxEnergy/cutEnergy)/tmax;
189 if( 0.0 < spin ) { cross += 0.5*(maxEnergy - cutEnergy)/energy2; }
190
191 cross *= CLHEP::twopi_mc2_rcl2*chargeSquare/beta2;
192 cross = std::max(cross, 0.0);
193 }
194 // G4cout << "BR: e= " << kineticEnergy << " tmin= " << cutEnergy
195 // << " tmax= " << tmax << " cross= " << cross << G4endl;
196 return cross;
197}
G4double G4Log(G4double x)
Definition: G4Log.hh:226
G4double MaxSecondaryEnergy(const G4ParticleDefinition *, G4double kinEnergy) final
static constexpr double twopi_mc2_rcl2
G4double energy(const ThreeVector &p, const G4double m)
T max(const T t1, const T t2)
brief Return the largest of the two arguments
T min(const T t1, const T t2)
brief Return the smallest of the two arguments

References chargeSquare, G4INCL::KinematicsUtils::energy(), G4Log(), lowestKinEnergy, mass, massRate, G4INCL::Math::max(), MaxSecondaryEnergy(), G4INCL::Math::min(), spin, and CLHEP::twopi_mc2_rcl2.

Referenced by ComputeCrossSectionPerAtom(), G4LindhardSorensenIonModel::ComputeCrossSectionPerElectron(), and CrossSectionPerVolume().

◆ ComputeCrossSectionPerShell()

G4double G4VEmModel::ComputeCrossSectionPerShell ( const G4ParticleDefinition ,
G4int  Z,
G4int  shellIdx,
G4double  kinEnergy,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
virtualinherited

Definition at line 351 of file G4VEmModel.cc.

354{
355 return 0.0;
356}

Referenced by G4EmCalculator::ComputeCrossSectionPerShell().

◆ ComputeDEDX()

G4double G4VEmModel::ComputeDEDX ( const G4MaterialCutsCouple couple,
const G4ParticleDefinition part,
G4double  kineticEnergy,
G4double  cutEnergy = DBL_MAX 
)
inlineinherited

Definition at line 528 of file G4VEmModel.hh.

532{
533 SetCurrentCouple(couple);
534 return pFactor*ComputeDEDXPerVolume(pBaseMaterial,part,kinEnergy,cutEnergy);
535}
void SetCurrentCouple(const G4MaterialCutsCouple *)
Definition: G4VEmModel.hh:472
const G4Material * pBaseMaterial
Definition: G4VEmModel.hh:427
G4double pFactor
Definition: G4VEmModel.hh:432
virtual G4double ComputeDEDXPerVolume(const G4Material *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=DBL_MAX)
Definition: G4VEmModel.cc:228

References G4VEmModel::ComputeDEDXPerVolume(), G4VEmModel::pBaseMaterial, G4VEmModel::pFactor, and G4VEmModel::SetCurrentCouple().

◆ ComputeDEDXPerVolume()

G4double G4BraggIonModel::ComputeDEDXPerVolume ( const G4Material material,
const G4ParticleDefinition p,
G4double  kineticEnergy,
G4double  cutEnergy 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 237 of file G4BraggIonModel.cc.

241{
242 const G4double tmax = MaxSecondaryEnergy(p, kineticEnergy);
243 const G4double tmin = std::max(lowestKinEnergy*massRate, minKinEnergy);
244 G4double dedx = 0.0;
245
246 // T is alpha energy
247 G4double T = kineticEnergy;
248 const G4double zeff = material->GetTotNbOfElectPerVolume()/
249 material->GetTotNbOfAtomsPerVolume();
251 if(!isAlpha) { T *= rateMassHe2p; }
252
253 if(T < lowestKinEnergy) {
254 dedx = DEDX(material, lowestKinEnergy)*std::sqrt(T/lowestKinEnergy);
255 } else {
256 dedx = DEDX(material, T);
257 }
258 if(!isAlpha) { dedx /= effChargeSquare; }
259 if (tmin < tmax) {
260 const G4double tau = kineticEnergy/mass;
261 const G4double x = tmin/tmax;
262
263 G4double del =
264 (G4Log(x)*(tau + 1.)*(tau + 1.)/(tau * (tau + 2.0)) + 1.0 - x) *
265 CLHEP::twopi_mc2_rcl2*material->GetElectronDensity();
266 if(isAlpha) { del *= effChargeSquare; }
267 dedx += del;
268 }
269 dedx = std::max(dedx, 0.0);
270 /*
271 G4cout << "BraggIon: tkin(MeV) = " << tkin/MeV << " dedx(MeV*cm^2/g) = "
272 << dedx*gram/(MeV*cm2*material->GetDensity())
273 << " q2 = " << chargeSquare << G4endl;
274 */
275 return dedx;
276}
G4double DEDX(const G4Material *material, const G4double kinEnergy)
G4double effChargeSquare
string material
Definition: eplot.py:19

References DEDX(), effChargeSquare, G4Log(), HeEffChargeSquare(), isAlpha, lowestKinEnergy, mass, massRate, eplot::material, G4INCL::Math::max(), MaxSecondaryEnergy(), CLHEP::MeV, rateMassHe2p, and CLHEP::twopi_mc2_rcl2.

Referenced by G4BraggNoDeltaModel::ComputeDEDXPerVolume(), and G4LindhardSorensenIonModel::ComputeDEDXPerVolume().

◆ ComputeMeanFreePath()

G4double G4VEmModel::ComputeMeanFreePath ( const G4ParticleDefinition part,
G4double  kineticEnergy,
const G4Material material,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
inlineinherited

Definition at line 553 of file G4VEmModel.hh.

558{
559 G4double cross = CrossSectionPerVolume(material,part,ekin,emin,emax);
560 return (cross > 0.0) ? 1./cross : DBL_MAX;
561}
static const G4double emax
virtual G4double CrossSectionPerVolume(const G4Material *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
Definition: G4VEmModel.cc:237
#define DBL_MAX
Definition: templates.hh:62

References G4VEmModel::CrossSectionPerVolume(), DBL_MAX, emax, and eplot::material.

◆ CorrectionsAlongStep()

void G4BraggIonModel::CorrectionsAlongStep ( const G4MaterialCutsCouple couple,
const G4DynamicParticle dp,
const G4double length,
G4double eloss 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 280 of file G4BraggIonModel.cc.

284{
285 // no correction at the last step
286 const G4double preKinEnergy = dp->GetKineticEnergy();
287 if(eloss >= preKinEnergy) { return; }
288
289 const G4ParticleDefinition* p = dp->GetDefinition();
290 if(p != particle) { SetParticle(p); }
291 if(!isIon) { return; }
292
293 // this method is called only for ions
294 const G4Material* mat = couple->GetMaterial();
295 G4double e = std::max(preKinEnergy - eloss*0.5, preKinEnergy*0.5);
296
299 if(!isAlpha) {
300 eloss *= q2*corr->EffectiveChargeCorrection(p,mat,e)/chargeSquare;
301 }
302
303 //G4cout << "G4BraggIonModel::CorrectionsAlongStep e= " << e
304 // << " qfactor= " << qfactor << " " << p->GetParticleName() <<G4endl;
305}
const G4ParticleDefinition * particle
G4EmCorrections * corr
G4ParticleDefinition * GetDefinition() const
G4double GetKineticEnergy() const
G4double EffectiveChargeSquareRatio(const G4ParticleDefinition *, const G4Material *, G4double kineticEnergy)
G4double EffectiveChargeCorrection(const G4ParticleDefinition *, const G4Material *, G4double kineticEnergy)
const G4Material * GetMaterial() const
virtual void SetParticleAndCharge(const G4ParticleDefinition *, G4double q2)
G4VEmFluctuationModel * GetModelOfFluctuations()
Definition: G4VEmModel.hh:614

References chargeSquare, corr, G4EmCorrections::EffectiveChargeCorrection(), G4EmCorrections::EffectiveChargeSquareRatio(), G4DynamicParticle::GetDefinition(), G4DynamicParticle::GetKineticEnergy(), G4MaterialCutsCouple::GetMaterial(), G4VEmModel::GetModelOfFluctuations(), isAlpha, isIon, G4INCL::Math::max(), particle, SetParticle(), and G4VEmFluctuationModel::SetParticleAndCharge().

◆ CrossSection()

G4double G4VEmModel::CrossSection ( const G4MaterialCutsCouple couple,
const G4ParticleDefinition part,
G4double  kineticEnergy,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
inlineinherited

◆ CrossSectionPerVolume()

G4double G4BraggIonModel::CrossSectionPerVolume ( const G4Material material,
const G4ParticleDefinition p,
G4double  kineticEnergy,
G4double  cutEnergy,
G4double  maxEnergy 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 218 of file G4BraggIonModel.cc.

224{
225 G4double sigma = material->GetElectronDensity()*
226 ComputeCrossSectionPerElectron(p,kinEnergy,cutEnergy,maxEnergy);
227 if(isAlpha) {
228 const G4double zeff = material->GetTotNbOfElectPerVolume()/
229 material->GetTotNbOfAtomsPerVolume();
230 sigma *= (HeEffChargeSquare(zeff, kinEnergy/CLHEP::MeV)/chargeSquare);
231 }
232 return sigma;
233}

References chargeSquare, ComputeCrossSectionPerElectron(), HeEffChargeSquare(), isAlpha, eplot::material, and CLHEP::MeV.

◆ CurrentCouple()

const G4MaterialCutsCouple * G4VEmModel::CurrentCouple ( ) const
inlineprotectedinherited

◆ DEDX()

G4double G4BraggIonModel::DEDX ( const G4Material material,
const G4double  kinEnergy 
)
private

Definition at line 672 of file G4BraggIonModel.cc.

674{
675 // aEnergy is energy of alpha
676 G4double eloss = 0.0;
677 // check DB
680 baseMaterial = material->GetBaseMaterial()
681 ? material->GetBaseMaterial() : material;
682 iASTAR = -1;
683 iMolecula = -1;
684 iICRU90 = (nullptr != fICRU90) ? fICRU90->GetIndex(baseMaterial) : -1;
685
686 if(iICRU90 < 0) {
689 }
690 /*
691 G4cout << "%%% " <<material->GetName() << " iMolecula= "
692 << iMolecula << " iASTAR= " << iASTAR
693 << " iICRU90= " << iICRU90<< G4endl;
694 */
695 }
696 // ICRU90
697 if(iICRU90 >= 0) {
698 eloss = fICRU90->GetElectronicDEDXforAlpha(iICRU90, aEnergy);
699 if(eloss > 0.0) { return eloss*material->GetDensity(); }
700 }
701 // ASTAR
702 if( iASTAR >= 0 ) {
703 eloss = fASTAR->GetElectronicDEDX(iASTAR, aEnergy);
704 /*
705 G4cout << "ASTAR: E=" << aEnergy
706 << " dedx=" << eloss*material->GetDensity()
707 << " " << particle->GetParticleName() << G4endl;
708 */
709 if(eloss > 0.0) { return eloss*material->GetDensity(); }
710 }
711
712 const G4int numberOfElements = material->GetNumberOfElements();
713 const G4double* theAtomicNumDensityVector =
714 material->GetAtomicNumDensityVector();
715
716 if(iMolecula >= 0) {
717
718 eloss = StoppingPower(baseMaterial, aEnergy)*material->GetDensity()/amu;
719
720 // pure material
721 } else if(1 == numberOfElements) {
722
723 const G4double z = material->GetZ();
724 eloss = ElectronicStoppingPower(z, aEnergy)
725 * (material->GetTotNbOfAtomsPerVolume());
726
727 // Brugg's rule calculation
728 } else {
729 const G4ElementVector* theElmVector = material->GetElementVector();
730
731 // loop for the elements in the material
732 for (G4int i=0; i<numberOfElements; ++i) {
733 const G4Element* element = (*theElmVector)[i];
734 eloss += ElectronicStoppingPower(element->GetZ(), aEnergy)
735 * theAtomicNumDensityVector[i];
736 }
737 }
738 return eloss*theZieglerFactor;
739}
std::vector< const G4Element * > G4ElementVector
int G4int
Definition: G4Types.hh:85
G4int GetIndex(const G4Material *) const
G4double GetElectronicDEDX(G4int idx, G4double energy) const
G4double StoppingPower(const G4Material *material, const G4double kinEnergy) const
const G4Material * currentMaterial
G4int HasMaterial(const G4Material *material) const
G4double ElectronicStoppingPower(const G4double z, const G4double kinEnergy) const
G4ICRU90StoppingData * fICRU90
const G4Material * baseMaterial
G4int GetIndex(const G4Material *) const
G4double GetElectronicDEDXforAlpha(const G4Material *, G4double scaledKinEnergy) const

References source.hepunit::amu, baseMaterial, currentMaterial, ElectronicStoppingPower(), fASTAR, fICRU90, G4ASTARStopping::GetElectronicDEDX(), G4ICRU90StoppingData::GetElectronicDEDXforAlpha(), G4ICRU90StoppingData::GetIndex(), G4ASTARStopping::GetIndex(), G4Element::GetZ(), HasMaterial(), iASTAR, iICRU90, iMolecula, eplot::material, StoppingPower(), and theZieglerFactor.

Referenced by ComputeDEDXPerVolume().

◆ DeexcitationFlag()

G4bool G4VEmModel::DeexcitationFlag ( ) const
inlineinherited

Definition at line 704 of file G4VEmModel.hh.

705{
706 return flagDeexcitation;
707}
G4bool flagDeexcitation
Definition: G4VEmModel.hh:455

References G4VEmModel::flagDeexcitation.

Referenced by G4EmModelManager::DumpModelList().

◆ DefineForRegion()

void G4VEmModel::DefineForRegion ( const G4Region )
virtualinherited

Reimplemented in G4PAIModel, and G4PAIPhotModel.

Definition at line 360 of file G4VEmModel.cc.

361{}

Referenced by G4EmModelManager::AddEmModel().

◆ ElectronicStoppingPower()

G4double G4BraggIonModel::ElectronicStoppingPower ( const G4double  z,
const G4double  kinEnergy 
) const
private

Definition at line 516 of file G4BraggIonModel.cc.

518{
519 G4double ionloss ;
520 G4int i = std::min(std::max(G4lrint(z)-1,0),91); // index of atom
521 //G4cout << "ElectronicStoppingPower z=" << z << " i=" << i
522 // << " E=" << kineticEnergy << G4endl;
523 // The data and the fit from:
524 // ICRU Report 49, 1993. Ziegler's type of parametrisations.
525 // Proton kinetic energy for parametrisation (keV/amu)
526 // He energy in internal units of parametrisation formula (MeV)
527 //G4double T = kineticEnergy*rateMassHe2p/CLHEP::MeV;
528 G4double T = kineticEnergy/CLHEP::MeV;
529
530 static const G4float a[92][5] = {
531 { 0.35485f, 0.6456f, 6.01525f, 20.8933f, 4.3515f
532 },{ 0.58f, 0.59f, 6.3f, 130.0f, 44.07f
533 },{ 1.42f, 0.49f, 12.25f, 32.0f, 9.161f
534 },{ 2.206f, 0.51f, 15.32f, 0.25f, 8.995f //Be Ziegler77
535 // },{ 2.1895f, 0.47183,7.2362f, 134.30f, 197.96f //Be from ICRU
536 },{ 3.691f, 0.4128f, 18.48f, 50.72f, 9.0f
537 },{ 3.83523f, 0.42993f,12.6125f, 227.41f, 188.97f
538 // },{ 1.9259f, 0.5550f, 27.15125f, 26.0665f, 6.2768f //too many digits
539 },{ 1.9259f, 0.5550f, 27.1513f, 26.0665f, 6.2768f
540 },{ 2.81015f, 0.4759f, 50.0253f, 10.556f, 1.0382f
541 },{ 1.533f, 0.531f, 40.44f, 18.41f, 2.718f
542 },{ 2.303f, 0.4861f, 37.01f, 37.96f, 5.092f
543 // Z= 11-20
544 },{ 9.894f, 0.3081f, 23.65f, 0.384f, 92.93f
545 },{ 4.3f, 0.47f, 34.3f, 3.3f, 12.74f
546 },{ 2.5f, 0.625f, 45.7f, 0.1f, 4.359f
547 },{ 2.1f, 0.65f, 49.34f, 1.788f, 4.133f
548 },{ 1.729f, 0.6562f, 53.41f, 2.405f, 3.845f
549 },{ 1.402f, 0.6791f, 58.98f, 3.528f, 3.211f
550 },{ 1.117f, 0.7044f, 69.69f, 3.705f, 2.156f
551 },{ 2.291f, 0.6284f, 73.88f, 4.478f, 2.066f
552 },{ 8.554f, 0.3817f, 83.61f, 11.84f, 1.875f
553 },{ 6.297f, 0.4622f, 65.39f, 10.14f, 5.036f
554 // Z= 21-30
555 },{ 5.307f, 0.4918f, 61.74f, 12.4f, 6.665f
556 },{ 4.71f, 0.5087f, 65.28f, 8.806f, 5.948f
557 },{ 6.151f, 0.4524f, 83.0f, 18.31f, 2.71f
558 },{ 6.57f, 0.4322f, 84.76f, 15.53f, 2.779f
559 },{ 5.738f, 0.4492f, 84.6f, 14.18f, 3.101f
560 },{ 5.013f, 0.4707f, 85.8f, 16.55f, 3.211f
561 },{ 4.32f, 0.4947f, 76.14f, 10.85f, 5.441f
562 },{ 4.652f, 0.4571f, 80.73f, 22.0f, 4.952f
563 },{ 3.114f, 0.5236f, 76.67f, 7.62f, 6.385f
564 },{ 3.114f, 0.5236f, 76.67f, 7.62f, 7.502f
565 // Z= 31-40
566 },{ 3.114f, 0.5236f, 76.67f, 7.62f, 8.514f
567 },{ 5.746f, 0.4662f, 79.24f, 1.185f, 7.993f
568 },{ 2.792f, 0.6346f, 106.1f, 0.2986f, 2.331f
569 },{ 4.667f, 0.5095f, 124.3f, 2.102f, 1.667f
570 },{ 2.44f, 0.6346f, 105.0f, 0.83f, 2.851f
571 },{ 1.413f, 0.7377f, 147.9f, 1.466f, 1.016f
572 },{ 11.72f, 0.3826f, 102.8f, 9.231f, 4.371f
573 },{ 7.126f, 0.4804f, 119.3f, 5.784f, 2.454f
574 },{ 11.61f, 0.3955f, 146.7f, 7.031f, 1.423f
575 },{ 10.99f, 0.41f, 163.9f, 7.1f, 1.052f
576 // Z= 41-50
577 },{ 9.241f, 0.4275f, 163.1f, 7.954f, 1.102f
578 },{ 9.276f, 0.418f, 157.1f, 8.038f, 1.29f
579 },{ 3.999f, 0.6152f, 97.6f, 1.297f, 5.792f
580 },{ 4.306f, 0.5658f, 97.99f, 5.514f, 5.754f
581 },{ 3.615f, 0.6197f, 86.26f, 0.333f, 8.689f
582 },{ 5.8f, 0.49f, 147.2f, 6.903f, 1.289f
583 },{ 5.6f, 0.49f, 130.0f, 10.0f, 2.844f
584 },{ 3.55f, 0.6068f, 124.7f, 1.112f, 3.119f
585 },{ 3.6f, 0.62f, 105.8f, 0.1692f, 6.026f
586 },{ 5.4f, 0.53f, 103.1f, 3.931f, 7.767f
587 // Z= 51-60
588 },{ 3.97f, 0.6459f, 131.8f, 0.2233f, 2.723f
589 },{ 3.65f, 0.64f, 126.8f, 0.6834f, 3.411f
590 },{ 3.118f, 0.6519f, 164.9f, 1.208f, 1.51f
591 },{ 3.949f, 0.6209f, 200.5f, 1.878f, 0.9126f
592 },{ 14.4f, 0.3923f, 152.5f, 8.354f, 2.597f
593 },{ 10.99f, 0.4599f, 138.4f, 4.811f, 3.726f
594 },{ 16.6f, 0.3773f, 224.1f, 6.28f, 0.9121f
595 },{ 10.54f, 0.4533f, 159.3f, 4.832f, 2.529f
596 },{ 10.33f, 0.4502f, 162.0f, 5.132f, 2.444f
597 },{ 10.15f, 0.4471f, 165.6f, 5.378f, 2.328f
598 // Z= 61-70
599 },{ 9.976f, 0.4439f, 168.0f, 5.721f, 2.258f
600 },{ 9.804f, 0.4408f, 176.2f, 5.675f, 1.997f
601 },{ 14.22f, 0.363f, 228.4f, 7.024f, 1.016f
602 },{ 9.952f, 0.4318f, 233.5f, 5.065f, 0.9244f
603 },{ 9.272f, 0.4345f, 210.0f, 4.911f, 1.258f
604 },{ 10.13f, 0.4146f, 225.7f, 5.525f, 1.055f
605 },{ 8.949f, 0.4304f, 213.3f, 5.071f, 1.221f
606 },{ 11.94f, 0.3783f, 247.2f, 6.655f, 0.849f
607 },{ 8.472f, 0.4405f, 195.5f, 4.051f, 1.604f
608 },{ 8.301f, 0.4399f, 203.7f, 3.667f, 1.459f
609 // Z= 71-80
610 },{ 6.567f, 0.4858f, 193.0f, 2.65f, 1.66f
611 },{ 5.951f, 0.5016f, 196.1f, 2.662f, 1.589f
612 },{ 7.495f, 0.4523f, 251.4f, 3.433f, 0.8619f
613 },{ 6.335f, 0.4825f, 255.1f, 2.834f, 0.8228f
614 },{ 4.314f, 0.5558f, 214.8f, 2.354f, 1.263f
615 },{ 4.02f, 0.5681f, 219.9f, 2.402f, 1.191f
616 },{ 3.836f, 0.5765f, 210.2f, 2.742f, 1.305f
617 },{ 4.68f, 0.5247f, 244.7f, 2.749f, 0.8962f
618 },{ 2.892f, 0.6204f, 208.6f, 2.415f, 1.416f //Au Z77
619 // },{ 3.223f, 0.5883f, 232.7f, 2.954f, 1.05 //Au ICRU
620 },{ 2.892f, 0.6204f, 208.6f, 2.415f, 1.416f
621 // Z= 81-90
622 },{ 4.728f, 0.5522f, 217.0f, 3.091f, 1.386f
623 },{ 6.18f, 0.52f, 170.0f, 4.0f, 3.224f
624 },{ 9.0f, 0.47f, 198.0f, 3.8f, 2.032f
625 },{ 2.324f, 0.6997f, 216.0f, 1.599f, 1.399f
626 },{ 1.961f, 0.7286f, 223.0f, 1.621f, 1.296f
627 },{ 1.75f, 0.7427f, 350.1f, 0.9789f, 0.5507f
628 },{ 10.31f, 0.4613f, 261.2f, 4.738f, 0.9899f
629 },{ 7.962f, 0.519f, 235.7f, 4.347f, 1.313f
630 },{ 6.227f, 0.5645f, 231.9f, 3.961f, 1.379f
631 },{ 5.246f, 0.5947f, 228.6f, 4.027f, 1.432f
632 // Z= 91-92
633 },{ 5.408f, 0.5811f, 235.7f, 3.961f, 1.358f
634 },{ 5.218f, 0.5828f, 245.0f, 3.838f, 1.25f}
635 };
636
637 G4double slow = (G4double)(a[i][0]);
638
639 G4double x1 = (G4double)(a[i][1]);
640 G4double x2 = (G4double)(a[i][2]);
641 G4double x3 = (G4double)(a[i][3]);
642 G4double x4 = (G4double)(a[i][4]);
643
644 // Free electron gas model
645 if ( T < 0.001 ) {
646 G4double shigh = G4Log( 1.0 + x3*1000.0 + x4*0.001 )* x2*1000.0;
647 ionloss = slow*shigh*std::sqrt(T*1000.0) / (slow + shigh) ;
648
649 // Main parametrisation
650 } else {
651 slow *= G4Exp(G4Log(T*1000.0)*x1);
652 G4double shigh = G4Log( 1.0 + x3/T + x4*T ) * x2/T;
653 ionloss = slow*shigh / (slow + shigh) ;
654 /*
655 G4cout << "## " << i << ". T= " << T << " slow= " << slow
656 << " a0= " << a[i][0] << " a1= " << a[i][1]
657 << " shigh= " << shigh
658 << " dedx= " << ionloss << " q^2= " << HeEffChargeSquare(z, T)
659 << G4endl;
660 */
661 }
662 ionloss = std::max(ionloss, 0.0);
663
664 // He effective charge
665 // ionloss /= effChargeSquare;
666 // G4cout << ionloss << G4endl;
667 return ionloss;
668}
G4double G4Exp(G4double initial_x)
Exponential Function double precision.
Definition: G4Exp.hh:179
float G4float
Definition: G4Types.hh:84
int G4lrint(double ad)
Definition: templates.hh:134

References G4Exp(), G4Log(), G4lrint(), G4INCL::Math::max(), CLHEP::MeV, and G4INCL::Math::min().

Referenced by DEDX(), and StoppingPower().

◆ FillNumberOfSecondaries()

void G4VEmModel::FillNumberOfSecondaries ( G4int numberOfTriplets,
G4int numberOfRecoil 
)
virtualinherited

Definition at line 365 of file G4VEmModel.cc.

367{
368 numberOfTriplets = 0;
369 numberOfRecoil = 0;
370}

Referenced by G4VEmProcess::PostStepDoIt(), and G4VEnergyLossProcess::PostStepDoIt().

◆ ForceBuildTableFlag()

G4bool G4VEmModel::ForceBuildTableFlag ( ) const
inlineinherited

Definition at line 711 of file G4VEmModel.hh.

712{
713 return flagForceBuildTable;
714}
G4bool flagForceBuildTable
Definition: G4VEmModel.hh:456

References G4VEmModel::flagForceBuildTable.

Referenced by G4VMscModel::GetParticleChangeForMSC().

◆ GetAngularDistribution()

G4VEmAngularDistribution * G4VEmModel::GetAngularDistribution ( )
inlineinherited

Definition at line 621 of file G4VEmModel.hh.

622{
623 return anglModel;
624}
G4VEmAngularDistribution * anglModel
Definition: G4VEmModel.hh:414

References G4VEmModel::anglModel.

Referenced by G4EmModelManager::DumpModelList(), G4AtimaEnergyLossModel::Initialise(), G4BetheBlochModel::Initialise(), Initialise(), G4BraggModel::Initialise(), G4ICRU73QOModel::Initialise(), G4LindhardSorensenIonModel::Initialise(), G4MollerBhabhaModel::Initialise(), G4AdjointBremsstrahlungModel::RapidSampleSecondaries(), G4LivermoreBremsstrahlungModel::SampleSecondaries(), G4eBremParametrizedModel::SampleSecondaries(), G4eBremsstrahlungRelModel::SampleSecondaries(), G4SeltzerBergerModel::SampleSecondaries(), G4DNABornIonisationModel1::SampleSecondaries(), G4DNABornIonisationModel2::SampleSecondaries(), G4DNAEmfietzoglouIonisationModel::SampleSecondaries(), G4DNARuddIonisationExtendedModel::SampleSecondaries(), G4DNARuddIonisationModel::SampleSecondaries(), G4PAIModel::SampleSecondaries(), G4PAIPhotModel::SampleSecondaries(), G4LivermoreIonisationModel::SampleSecondaries(), G4LivermorePhotoElectricModel::SampleSecondaries(), G4LivermoreRayleighModel::SampleSecondaries(), G4MicroElecInelasticModel::SampleSecondaries(), G4MicroElecInelasticModel_new::SampleSecondaries(), G4MuBremsstrahlungModel::SampleSecondaries(), G4MuPairProductionModel::SampleSecondaries(), G4AtimaEnergyLossModel::SampleSecondaries(), G4BetheBlochModel::SampleSecondaries(), G4BetheHeitlerModel::SampleSecondaries(), SampleSecondaries(), G4BraggModel::SampleSecondaries(), G4ICRU73QOModel::SampleSecondaries(), G4LindhardSorensenIonModel::SampleSecondaries(), G4MollerBhabhaModel::SampleSecondaries(), G4PairProductionRelModel::SampleSecondaries(), G4PEEffectFluoModel::SampleSecondaries(), and G4IonParametrisedLossModel::SampleSecondaries().

◆ GetChargeSquareRatio()

G4double G4BraggIonModel::GetChargeSquareRatio ( const G4ParticleDefinition p,
const G4Material mat,
G4double  kineticEnergy 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 151 of file G4BraggIonModel.cc.

154{
155 return
156 (!isAlpha) ? corr->EffectiveChargeSquareRatio(p,mat,kineticEnergy) : 1.0;
157}

References corr, G4EmCorrections::EffectiveChargeSquareRatio(), and isAlpha.

◆ GetCrossSectionTable()

G4PhysicsTable * G4VEmModel::GetCrossSectionTable ( )
inlineinherited

◆ GetCurrentElement()

const G4Element * G4VEmModel::GetCurrentElement ( ) const
inlineinherited

◆ GetCurrentIsotope()

const G4Isotope * G4VEmModel::GetCurrentIsotope ( ) const
inlineinherited

Definition at line 512 of file G4VEmModel.hh.

513{
514 return fCurrentIsotope;
515}
const G4Isotope * fCurrentIsotope
Definition: G4VEmModel.hh:418

References G4VEmModel::fCurrentIsotope.

Referenced by G4VEmProcess::GetTargetIsotope().

◆ GetElementData()

G4ElementData * G4VEmModel::GetElementData ( )
inlineinherited

◆ GetElementSelectors()

std::vector< G4EmElementSelector * > * G4VEmModel::GetElementSelectors ( )
inlineinherited

◆ GetModelOfFluctuations()

G4VEmFluctuationModel * G4VEmModel::GetModelOfFluctuations ( )
inlineinherited

◆ GetName()

const G4String & G4VEmModel::GetName ( ) const
inlineinherited

◆ GetPartialCrossSection()

G4double G4VEmModel::GetPartialCrossSection ( const G4Material ,
G4int  level,
const G4ParticleDefinition ,
G4double  kineticEnergy 
)
virtualinherited

◆ GetParticleChangeForGamma()

G4ParticleChangeForGamma * G4VEmModel::GetParticleChangeForGamma ( )
protectedinherited

Definition at line 123 of file G4VEmModel.cc.

124{
125 G4ParticleChangeForGamma* p = nullptr;
126 if (pParticleChange != nullptr) {
127 p = static_cast<G4ParticleChangeForGamma*>(pParticleChange);
128 } else {
129 p = new G4ParticleChangeForGamma();
130 pParticleChange = p;
131 }
132 if(fTripletModel != nullptr) { fTripletModel->SetParticleChange(p); }
133 return p;
134}
void SetParticleChange(G4VParticleChange *, G4VEmFluctuationModel *f=nullptr)
Definition: G4VEmModel.cc:447
G4VParticleChange * pParticleChange
Definition: G4VEmModel.hh:425
G4VEmModel * fTripletModel
Definition: G4VEmModel.hh:415

References G4VEmModel::fTripletModel, G4VEmModel::pParticleChange, and G4VEmModel::SetParticleChange().

Referenced by G4MicroElecLOPhononModel::G4MicroElecLOPhononModel(), G4DNAChampionElasticModel::Initialise(), G4DNACPA100ElasticModel::Initialise(), G4DNADingfelderChargeDecreaseModel::Initialise(), G4DNADingfelderChargeIncreaseModel::Initialise(), G4DNAMeltonAttachmentModel::Initialise(), G4DNAMillerGreenExcitationModel::Initialise(), G4DNARuddIonisationExtendedModel::Initialise(), G4DNARuddIonisationModel::Initialise(), G4DNASancheExcitationModel::Initialise(), G4DNAScreenedRutherfordElasticModel::Initialise(), G4DNATransformElectronModel::Initialise(), G4DNAUeharaScreenedRutherfordElasticModel::Initialise(), G4LEPTSAttachmentModel::Initialise(), G4LEPTSDissociationModel::Initialise(), G4LEPTSElasticModel::Initialise(), G4LEPTSExcitationModel::Initialise(), G4LEPTSIonisationModel::Initialise(), G4LEPTSPositroniumModel::Initialise(), G4LEPTSRotExcitationModel::Initialise(), G4LEPTSVibExcitationModel::Initialise(), G4BoldyshevTripletModel::Initialise(), G4eplusTo3GammaOKVIModel::Initialise(), G4eSingleCoulombScatteringModel::Initialise(), G4IonCoulombScatteringModel::Initialise(), G4eeToHadronsMultiModel::Initialise(), G4JAEAElasticScatteringModel::Initialise(), G4JAEAPolarizedElasticScatteringModel::Initialise(), G4LivermoreComptonModel::Initialise(), G4LivermoreGammaConversion5DModel::Initialise(), G4LivermoreGammaConversionModel::Initialise(), G4LivermoreNuclearGammaConversionModel::Initialise(), G4LivermorePhotoElectricModel::Initialise(), G4LivermorePolarizedComptonModel::Initialise(), G4LivermorePolarizedGammaConversionModel::Initialise(), G4LivermorePolarizedRayleighModel::Initialise(), G4LivermoreRayleighModel::Initialise(), G4LowEPComptonModel::Initialise(), G4LowEPPolarizedComptonModel::Initialise(), G4MicroElecElasticModel::Initialise(), G4MicroElecElasticModel_new::Initialise(), G4MicroElecInelasticModel::Initialise(), G4MicroElecInelasticModel_new::Initialise(), G4MicroElecLOPhononModel::Initialise(), G4PenelopeAnnihilationModel::Initialise(), G4PenelopeComptonModel::Initialise(), G4PenelopeGammaConversionModel::Initialise(), G4PenelopePhotoElectricModel::Initialise(), G4PenelopeRayleighModel::Initialise(), G4PenelopeRayleighModelMI::Initialise(), G4PolarizedAnnihilationModel::Initialise(), G4BetheHeitlerModel::Initialise(), G4eCoulombScatteringModel::Initialise(), G4eDPWACoulombScatteringModel::Initialise(), G4eeToTwoGammaModel::Initialise(), G4eplusTo2GammaOKVIModel::Initialise(), G4hCoulombScatteringModel::Initialise(), G4KleinNishinaCompton::Initialise(), G4KleinNishinaModel::Initialise(), G4PairProductionRelModel::Initialise(), G4PEEffectFluoModel::Initialise(), G4XrayRayleighModel::Initialise(), G4DNABornExcitationModel1::Initialise(), G4DNABornExcitationModel2::Initialise(), G4DNABornIonisationModel1::Initialise(), G4DNABornIonisationModel2::Initialise(), G4DNACPA100ExcitationModel::Initialise(), G4DNACPA100IonisationModel::Initialise(), G4DNADiracRMatrixExcitationModel::Initialise(), G4DNAEmfietzoglouExcitationModel::Initialise(), G4DNAEmfietzoglouIonisationModel::Initialise(), G4DNAQuinnPlasmonExcitationModel::Initialise(), G4DNARelativisticIonisationModel::Initialise(), G4DNAELSEPAElasticModel::Initialise(), G4DNAModelInterface::Initialise(), and G4DNAIonElasticModel::Initialise().

◆ GetParticleChangeForLoss()

G4ParticleChangeForLoss * G4VEmModel::GetParticleChangeForLoss ( )
protectedinherited

◆ GetParticleCharge()

G4double G4BraggIonModel::GetParticleCharge ( const G4ParticleDefinition p,
const G4Material mat,
G4double  kineticEnergy 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 161 of file G4BraggIonModel.cc.

164{
165 return corr->GetParticleCharge(p,mat,kineticEnergy);
166}
G4double GetParticleCharge(const G4ParticleDefinition *, const G4Material *, G4double kineticEnergy)

References corr, and G4EmCorrections::GetParticleCharge().

◆ GetTripletModel()

G4VEmModel * G4VEmModel::GetTripletModel ( )
inlineinherited

◆ HasMaterial()

G4int G4BraggIonModel::HasMaterial ( const G4Material material) const
private

Definition at line 414 of file G4BraggIonModel.cc.

415{
416 const G4String& chFormula = mat->GetChemicalFormula();
417 if(chFormula.empty()) { return -1; }
418
419 // ICRU Report N49, 1993. Ziegler model for He.
420
421 static const size_t numberOfMolecula = 11;
422 static const G4String molName[numberOfMolecula] = {
423 "CaF_2", "Cellulose_Nitrate", "LiF", "Policarbonate",
424 "(C_2H_4)_N-Polyethylene", "(C_2H_4)_N-Polymethly_Methacralate",
425 "Polysterene", "SiO_2", "NaI", "H_2O",
426 "Graphite" };
427
428 // Search for the material in the table
429 for (size_t i=0; i<numberOfMolecula; ++i) {
430 if (chFormula == molName[i]) {
431 return i;
432 }
433 }
434 return -1;
435}
static const G4int numberOfMolecula

References G4Material::GetChemicalFormula(), and numberOfMolecula.

Referenced by DEDX().

◆ HeEffChargeSquare()

G4double G4BraggIonModel::HeEffChargeSquare ( const G4double  z,
const G4double  kinEnergyInMeV 
) const
private

Definition at line 744 of file G4BraggIonModel.cc.

746{
747 // The aproximation of He effective charge from:
748 // J.F.Ziegler, J.P. Biersack, U. Littmark
749 // The Stopping and Range of Ions in Matter,
750 // Vol.1, Pergamon Press, 1985
751
752 static const G4double c[6] = {0.2865, 0.1266, -0.001429,
753 0.02402,-0.01135, 0.001475};
754
755 G4double e = std::max(0.0, G4Log(kinEnergyHeInMeV*massFactor));
756 G4double x = c[0] ;
757 G4double y = 1.0 ;
758 for (G4int i=1; i<6; ++i) {
759 y *= e;
760 x += y * c[i];
761 }
762
763 G4double w = 7.6 - e ;
764 w = 1.0 + (0.007 + 0.00005*z) * G4Exp( -w*w ) ;
765 w = 4.0 * (1.0 - G4Exp(-x)) * w * w ;
766
767 return w;
768}

References G4Exp(), G4Log(), massFactor, and G4INCL::Math::max().

Referenced by ComputeCrossSectionPerAtom(), ComputeDEDXPerVolume(), and CrossSectionPerVolume().

◆ HighEnergyActivationLimit()

G4double G4VEmModel::HighEnergyActivationLimit ( ) const
inlineinherited

◆ HighEnergyLimit()

G4double G4VEmModel::HighEnergyLimit ( ) const
inlineinherited

Definition at line 655 of file G4VEmModel.hh.

656{
657 return highLimit;
658}
G4double highLimit
Definition: G4VEmModel.hh:437

References G4VEmModel::highLimit.

Referenced by G4DNAChampionElasticModel::CrossSectionPerVolume(), G4DNACPA100ElasticModel::CrossSectionPerVolume(), G4DNACPA100ExcitationModel::CrossSectionPerVolume(), G4DNACPA100IonisationModel::CrossSectionPerVolume(), G4DNAEmfietzoglouExcitationModel::CrossSectionPerVolume(), G4DNAEmfietzoglouIonisationModel::CrossSectionPerVolume(), G4DNAMeltonAttachmentModel::CrossSectionPerVolume(), G4DNASancheExcitationModel::CrossSectionPerVolume(), G4DNAScreenedRutherfordElasticModel::CrossSectionPerVolume(), G4DNATransformElectronModel::CrossSectionPerVolume(), G4DNAELSEPAElasticModel::CrossSectionPerVolume(), G4DNAChampionElasticModel::G4DNAChampionElasticModel(), G4DNACPA100ElasticModel::G4DNACPA100ElasticModel(), G4DNAMeltonAttachmentModel::G4DNAMeltonAttachmentModel(), G4DNASancheExcitationModel::G4DNASancheExcitationModel(), G4DNAUeharaScreenedRutherfordElasticModel::G4DNAUeharaScreenedRutherfordElasticModel(), G4eeToHadronsModel::G4eeToHadronsModel(), G4IonParametrisedLossModel::G4IonParametrisedLossModel(), G4LivermorePolarizedRayleighModel::G4LivermorePolarizedRayleighModel(), G4ContinuousGainOfEnergy::GetContinuousStepLimit(), G4PenelopeBremsstrahlungModel::GetCrossSectionTableForCouple(), G4VMscModel::GetParticleChangeForMSC(), G4DNAChampionElasticModel::Initialise(), G4DNACPA100ElasticModel::Initialise(), G4DNADingfelderChargeDecreaseModel::Initialise(), G4DNADingfelderChargeIncreaseModel::Initialise(), G4DNAMeltonAttachmentModel::Initialise(), G4DNAMillerGreenExcitationModel::Initialise(), G4DNARuddIonisationExtendedModel::Initialise(), G4DNARuddIonisationModel::Initialise(), G4DNASancheExcitationModel::Initialise(), G4DNAScreenedRutherfordElasticModel::Initialise(), G4DNAUeharaScreenedRutherfordElasticModel::Initialise(), G4BoldyshevTripletModel::Initialise(), G4PAIModel::Initialise(), G4PAIPhotModel::Initialise(), G4JAEAElasticScatteringModel::Initialise(), G4JAEAPolarizedElasticScatteringModel::Initialise(), G4LivermoreComptonModel::Initialise(), G4LivermoreGammaConversion5DModel::Initialise(), G4LivermoreGammaConversionModel::Initialise(), G4LivermoreIonisationModel::Initialise(), G4LivermoreNuclearGammaConversionModel::Initialise(), G4LivermorePolarizedComptonModel::Initialise(), G4LivermorePolarizedGammaConversionModel::Initialise(), G4LivermoreRayleighModel::Initialise(), G4LowEPComptonModel::Initialise(), G4LowEPPolarizedComptonModel::Initialise(), G4MicroElecElasticModel::Initialise(), G4MicroElecElasticModel_new::Initialise(), G4MicroElecInelasticModel::Initialise(), G4MicroElecInelasticModel_new::Initialise(), G4PenelopeAnnihilationModel::Initialise(), G4PenelopeBremsstrahlungModel::Initialise(), G4PenelopeComptonModel::Initialise(), G4PenelopeGammaConversionModel::Initialise(), G4PenelopeIonisationModel::Initialise(), G4PenelopePhotoElectricModel::Initialise(), G4PenelopeRayleighModel::Initialise(), G4PenelopeRayleighModelMI::Initialise(), G4MuBremsstrahlungModel::Initialise(), G4MuPairProductionModel::Initialise(), G4eBremsstrahlungRelModel::Initialise(), G4eDPWACoulombScatteringModel::Initialise(), G4GoudsmitSaundersonMscModel::Initialise(), G4PairProductionRelModel::Initialise(), G4SeltzerBergerModel::Initialise(), G4WentzelVIModel::Initialise(), G4DNABornExcitationModel1::Initialise(), G4DNABornExcitationModel2::Initialise(), G4DNABornIonisationModel1::Initialise(), G4DNABornIonisationModel2::Initialise(), G4DNACPA100ExcitationModel::Initialise(), G4DNACPA100IonisationModel::Initialise(), G4DNADiracRMatrixExcitationModel::Initialise(), G4DNAEmfietzoglouExcitationModel::Initialise(), G4DNAEmfietzoglouIonisationModel::Initialise(), G4DNAQuinnPlasmonExcitationModel::Initialise(), G4DNARelativisticIonisationModel::Initialise(), G4EmModelManager::Initialise(), G4DNAELSEPAElasticModel::Initialise(), G4DNADummyModel::Initialise(), G4DNAIonElasticModel::Initialise(), G4mplIonisation::InitialiseEnergyLossProcess(), G4ionIonisation::InitialiseEnergyLossProcess(), G4MuBremsstrahlungModel::InitialiseLocal(), G4MuPairProductionModel::InitialiseLocal(), G4eBremsstrahlungRelModel::InitialiseLocal(), G4PairProductionRelModel::InitialiseLocal(), G4CoulombScattering::InitialiseProcess(), G4VEmProcess::PostStepDoIt(), G4VEmProcess::PreparePhysicsTable(), G4VEnergyLossProcess::PreparePhysicsTable(), G4VMultipleScattering::PreparePhysicsTable(), G4DNACPA100IonisationModel::SampleSecondaries(), G4DNAEmfietzoglouIonisationModel::SampleSecondaries(), G4DNASancheExcitationModel::SampleSecondaries(), G4EmConfigurator::SetExtraEmModel(), G4mplIonisationModel::SetParticle(), G4mplIonisationWithDeltaModel::SetParticle(), G4eBremsstrahlung::StreamProcessInfo(), and G4EmConfigurator::UpdateModelEnergyRange().

◆ Initialise()

void G4BraggIonModel::Initialise ( const G4ParticleDefinition p,
const G4DataVector  
)
overridevirtual

Implements G4VEmModel.

Definition at line 105 of file G4BraggIonModel.cc.

107{
108 if(p != particle) { SetParticle(p); }
109
110 // always false before the run
111 SetDeexcitationFlag(false);
112
113 // initialise once
114 if(nullptr == fParticleChange) {
116 if(IsMaster()) {
117 if(pname == "proton" || pname == "GenericIon" || pname == "alpha") {
118 if(nullptr == fASTAR) { fASTAR = new G4ASTARStopping(); }
119 fASTAR->Initialise();
120
121 if(G4EmParameters::Instance()->UseICRU90Data()) {
124 }
125 }
126 }
127 if(particle->GetPDGCharge() > CLHEP::eplus || pname == "GenericIon") {
128 isIon = true;
129 }
130 if(pname == "alpha") { isAlpha = true; }
131
132 if(UseAngularGeneratorFlag() && nullptr == GetAngularDistribution()) {
134 }
136
138 }
139}
G4ParticleChangeForLoss * fParticleChange
static G4EmParameters * Instance()
static G4LossTableManager * Instance()
G4EmCorrections * EmCorrections()
G4ICRU90StoppingData * GetICRU90StoppingData()
static G4NistManager * Instance()
G4double GetPDGCharge() const
const G4String & GetParticleName() const
G4VEmAngularDistribution * GetAngularDistribution()
Definition: G4VEmModel.hh:621
void SetDeexcitationFlag(G4bool val)
Definition: G4VEmModel.hh:823
void SetAngularDistribution(G4VEmAngularDistribution *)
Definition: G4VEmModel.hh:628
G4bool UseAngularGeneratorFlag() const
Definition: G4VEmModel.hh:718
G4ParticleChangeForLoss * GetParticleChangeForLoss()
Definition: G4VEmModel.cc:108
static constexpr double eplus
string pname
Definition: eplot.py:33

References corr, G4LossTableManager::EmCorrections(), CLHEP::eplus, fASTAR, fICRU90, fParticleChange, G4VEmModel::GetAngularDistribution(), G4NistManager::GetICRU90StoppingData(), G4VEmModel::GetParticleChangeForLoss(), G4ParticleDefinition::GetParticleName(), G4ParticleDefinition::GetPDGCharge(), G4ICRU90StoppingData::Initialise(), G4ASTARStopping::Initialise(), G4NistManager::Instance(), G4EmParameters::Instance(), G4LossTableManager::Instance(), isAlpha, isIon, G4VEmModel::IsMaster(), particle, eplot::pname, G4VEmModel::SetAngularDistribution(), G4VEmModel::SetDeexcitationFlag(), SetParticle(), and G4VEmModel::UseAngularGeneratorFlag().

Referenced by G4LindhardSorensenIonModel::Initialise().

◆ InitialiseElementSelectors()

void G4VEmModel::InitialiseElementSelectors ( const G4ParticleDefinition part,
const G4DataVector cuts 
)
inherited

Definition at line 138 of file G4VEmModel.cc.

140{
141 // using spline for element selectors should be investigated in details
142 // because small number of points may provide biased results
143 // large number of points requires significant increase of memory
144 G4bool spline = false;
145
146 //G4cout << "IES: for " << GetName() << " Emin(MeV)= " << lowLimit/MeV
147 // << " Emax(MeV)= " << highLimit/MeV << G4endl;
148
149 // two times less bins because probability functon is normalized
150 // so correspondingly is more smooth
151 if(highLimit <= lowLimit) { return; }
152
154
155 G4ProductionCutsTable* theCoupleTable=
157 G4int numOfCouples = theCoupleTable->GetTableSize();
158
159 // prepare vector
160 if(!elmSelectors) {
161 elmSelectors = new std::vector<G4EmElementSelector*>;
162 }
163 if(numOfCouples > nSelectors) {
164 for(G4int i=nSelectors; i<numOfCouples; ++i) {
165 elmSelectors->push_back(nullptr);
166 }
167 nSelectors = numOfCouples;
168 }
169
170 // initialise vector
171 for(G4int i=0; i<numOfCouples; ++i) {
172
173 // no need in element selectors for infinite cuts
174 if(cuts[i] == DBL_MAX) { continue; }
175
176 auto couple = theCoupleTable->GetMaterialCutsCouple(i);
177 auto material = couple->GetMaterial();
178 SetCurrentCouple(couple);
179
180 // selector already exist then delete
181 delete (*elmSelectors)[i];
182
183 G4double emin = std::max(lowLimit, MinPrimaryEnergy(material, part, cuts[i]));
184 G4double emax = std::max(highLimit, 10*emin);
185 static const G4double invlog106 = 1.0/(6*G4Log(10.));
186 G4int nbins = (G4int)(nbinsPerDec*G4Log(emax/emin)*invlog106);
187 nbins = std::max(nbins, 3);
188
189 (*elmSelectors)[i] = new G4EmElementSelector(this,material,nbins,
190 emin,emax,spline);
191 ((*elmSelectors)[i])->Initialise(part, cuts[i]);
192 /*
193 G4cout << "G4VEmModel::InitialiseElmSelectors i= " << i
194 << " " << part->GetParticleName()
195 << " for " << GetName() << " cut= " << cuts[i]
196 << " " << (*elmSelectors)[i] << G4endl;
197 ((*elmSelectors)[i])->Dump(part);
198 */
199 }
200}
bool G4bool
Definition: G4Types.hh:86
G4int NumberOfBinsPerDecade() const
const G4MaterialCutsCouple * GetMaterialCutsCouple(G4int i) const
std::size_t GetTableSize() const
static G4ProductionCutsTable * GetProductionCutsTable()
virtual G4double MinPrimaryEnergy(const G4Material *, const G4ParticleDefinition *, G4double cut=0.0)
Definition: G4VEmModel.cc:415
G4double lowLimit
Definition: G4VEmModel.hh:436
G4int nSelectors
Definition: G4VEmModel.hh:443
virtual void Initialise(const G4ParticleDefinition *, const G4DataVector &)=0

References DBL_MAX, G4VEmModel::elmSelectors, emax, G4Log(), G4ProductionCutsTable::GetMaterialCutsCouple(), G4ProductionCutsTable::GetProductionCutsTable(), G4ProductionCutsTable::GetTableSize(), G4VEmModel::highLimit, G4VEmModel::Initialise(), G4EmParameters::Instance(), G4VEmModel::lowLimit, eplot::material, G4INCL::Math::max(), G4VEmModel::MinPrimaryEnergy(), G4VEmModel::nSelectors, G4EmParameters::NumberOfBinsPerDecade(), and G4VEmModel::SetCurrentCouple().

Referenced by G4eSingleCoulombScatteringModel::Initialise(), G4PAIModel::Initialise(), G4PAIPhotModel::Initialise(), G4JAEAElasticScatteringModel::Initialise(), G4JAEAPolarizedElasticScatteringModel::Initialise(), G4LivermoreComptonModel::Initialise(), G4LivermoreGammaConversion5DModel::Initialise(), G4LivermoreGammaConversionModel::Initialise(), G4LivermoreNuclearGammaConversionModel::Initialise(), G4LivermorePolarizedComptonModel::Initialise(), G4LivermorePolarizedGammaConversionModel::Initialise(), G4LivermorePolarizedRayleighModel::Initialise(), G4LivermoreRayleighModel::Initialise(), G4LowEPComptonModel::Initialise(), G4LowEPPolarizedComptonModel::Initialise(), G4PenelopePhotoElectricModel::Initialise(), G4MuBremsstrahlungModel::Initialise(), G4MuPairProductionModel::Initialise(), G4BetheHeitlerModel::Initialise(), G4eBremParametrizedModel::Initialise(), G4eBremsstrahlungRelModel::Initialise(), G4eCoulombScatteringModel::Initialise(), G4eDPWACoulombScatteringModel::Initialise(), G4hCoulombScatteringModel::Initialise(), G4KleinNishinaCompton::Initialise(), G4KleinNishinaModel::Initialise(), G4PairProductionRelModel::Initialise(), G4SeltzerBergerModel::Initialise(), and G4XrayRayleighModel::Initialise().

◆ InitialiseForElement()

void G4VEmModel::InitialiseForElement ( const G4ParticleDefinition ,
G4int  Z 
)
virtualinherited

◆ InitialiseForMaterial()

void G4VEmModel::InitialiseForMaterial ( const G4ParticleDefinition part,
const G4Material material 
)
virtualinherited

Definition at line 209 of file G4VEmModel.cc.

211{
212 if(material != nullptr) {
213 size_t n = material->GetNumberOfElements();
214 for(size_t i=0; i<n; ++i) {
215 G4int Z = material->GetElement(i)->GetZasInt();
216 InitialiseForElement(part, Z);
217 }
218 }
219}
virtual void InitialiseForElement(const G4ParticleDefinition *, G4int Z)
Definition: G4VEmModel.cc:223

References G4VEmModel::InitialiseForElement(), eplot::material, CLHEP::detail::n, and Z.

Referenced by G4EmCalculator::FindEmModel().

◆ InitialiseLocal()

void G4VEmModel::InitialiseLocal ( const G4ParticleDefinition ,
G4VEmModel masterModel 
)
virtualinherited

◆ IsActive()

G4bool G4VEmModel::IsActive ( G4double  kinEnergy) const
inlineinherited

◆ IsLocked()

G4bool G4VEmModel::IsLocked ( ) const
inlineinherited

◆ IsMaster()

G4bool G4VEmModel::IsMaster ( ) const
inlineinherited

Definition at line 746 of file G4VEmModel.hh.

747{
748 return isMaster;
749}
G4bool isMaster
Definition: G4VEmModel.hh:457

References G4VEmModel::isMaster.

Referenced by G4PenelopeBremsstrahlungModel::BuildXSTable(), G4PenelopeBremsstrahlungModel::ClearTables(), G4MuPairProductionModel::DataCorrupted(), G4PenelopePhotoElectricModel::GetNumberOfShellXS(), G4VMscModel::GetParticleChangeForMSC(), G4BoldyshevTripletModel::Initialise(), G4eSingleCoulombScatteringModel::Initialise(), G4PAIModel::Initialise(), G4PAIPhotModel::Initialise(), G4EmMultiModel::Initialise(), G4mplIonisationModel::Initialise(), G4mplIonisationWithDeltaModel::Initialise(), G4JAEAElasticScatteringModel::Initialise(), G4JAEAPolarizedElasticScatteringModel::Initialise(), G4LivermoreBremsstrahlungModel::Initialise(), G4LivermoreComptonModel::Initialise(), G4LivermoreGammaConversion5DModel::Initialise(), G4LivermoreGammaConversionModel::Initialise(), G4LivermoreNuclearGammaConversionModel::Initialise(), G4LivermorePhotoElectricModel::Initialise(), G4LivermorePolarizedComptonModel::Initialise(), G4LivermorePolarizedGammaConversionModel::Initialise(), G4LivermorePolarizedRayleighModel::Initialise(), G4LivermoreRayleighModel::Initialise(), G4LowEPComptonModel::Initialise(), G4LowEPPolarizedComptonModel::Initialise(), G4PenelopeAnnihilationModel::Initialise(), G4PenelopeBremsstrahlungModel::Initialise(), G4PenelopeComptonModel::Initialise(), G4PenelopeGammaConversionModel::Initialise(), G4PenelopeIonisationModel::Initialise(), G4PenelopePhotoElectricModel::Initialise(), G4PenelopeRayleighModel::Initialise(), G4PenelopeRayleighModelMI::Initialise(), G4MuBremsstrahlungModel::Initialise(), G4MuPairProductionModel::Initialise(), G4BetheBlochModel::Initialise(), G4BetheHeitlerModel::Initialise(), Initialise(), G4BraggModel::Initialise(), G4eBremParametrizedModel::Initialise(), G4eBremsstrahlungRelModel::Initialise(), G4eCoulombScatteringModel::Initialise(), G4eDPWACoulombScatteringModel::Initialise(), G4eeToTwoGammaModel::Initialise(), G4eplusTo2GammaOKVIModel::Initialise(), G4GoudsmitSaundersonMscModel::Initialise(), G4hCoulombScatteringModel::Initialise(), G4KleinNishinaCompton::Initialise(), G4KleinNishinaModel::Initialise(), G4LindhardSorensenIonModel::Initialise(), G4PairProductionRelModel::Initialise(), G4SeltzerBergerModel::Initialise(), G4WentzelVIModel::Initialise(), G4PenelopeBremsstrahlungModel::InitialiseLocal(), G4PenelopeGammaConversionModel::ReadDataFile(), G4PenelopePhotoElectricModel::ReadDataFile(), G4BetheHeitlerModel::~G4BetheHeitlerModel(), G4BoldyshevTripletModel::~G4BoldyshevTripletModel(), ~G4BraggIonModel(), G4BraggModel::~G4BraggModel(), G4eBremsstrahlungRelModel::~G4eBremsstrahlungRelModel(), G4eDPWACoulombScatteringModel::~G4eDPWACoulombScatteringModel(), G4GoudsmitSaundersonMscModel::~G4GoudsmitSaundersonMscModel(), G4JAEAElasticScatteringModel::~G4JAEAElasticScatteringModel(), G4JAEAPolarizedElasticScatteringModel::~G4JAEAPolarizedElasticScatteringModel(), G4LivermoreBremsstrahlungModel::~G4LivermoreBremsstrahlungModel(), G4LivermoreComptonModel::~G4LivermoreComptonModel(), G4LivermoreGammaConversion5DModel::~G4LivermoreGammaConversion5DModel(), G4LivermoreGammaConversionModel::~G4LivermoreGammaConversionModel(), G4LivermoreNuclearGammaConversionModel::~G4LivermoreNuclearGammaConversionModel(), G4LivermorePhotoElectricModel::~G4LivermorePhotoElectricModel(), G4LivermorePolarizedComptonModel::~G4LivermorePolarizedComptonModel(), G4LivermorePolarizedGammaConversionModel::~G4LivermorePolarizedGammaConversionModel(), G4LivermorePolarizedRayleighModel::~G4LivermorePolarizedRayleighModel(), G4LivermoreRayleighModel::~G4LivermoreRayleighModel(), G4LowEPComptonModel::~G4LowEPComptonModel(), G4LowEPPolarizedComptonModel::~G4LowEPPolarizedComptonModel(), G4mplIonisationModel::~G4mplIonisationModel(), G4mplIonisationWithDeltaModel::~G4mplIonisationWithDeltaModel(), G4PAIModel::~G4PAIModel(), G4PAIPhotModel::~G4PAIPhotModel(), G4PairProductionRelModel::~G4PairProductionRelModel(), G4PenelopeBremsstrahlungModel::~G4PenelopeBremsstrahlungModel(), G4PenelopeGammaConversionModel::~G4PenelopeGammaConversionModel(), G4PenelopeIonisationModel::~G4PenelopeIonisationModel(), G4PenelopePhotoElectricModel::~G4PenelopePhotoElectricModel(), G4PenelopeRayleighModel::~G4PenelopeRayleighModel(), G4PenelopeRayleighModelMI::~G4PenelopeRayleighModelMI(), G4SeltzerBergerModel::~G4SeltzerBergerModel(), and G4WentzelVIModel::~G4WentzelVIModel().

◆ LowEnergyActivationLimit()

G4double G4VEmModel::LowEnergyActivationLimit ( ) const
inlineinherited

◆ LowEnergyLimit()

G4double G4VEmModel::LowEnergyLimit ( ) const
inlineinherited

Definition at line 662 of file G4VEmModel.hh.

663{
664 return lowLimit;
665}

References G4VEmModel::lowLimit.

Referenced by G4eBremsstrahlungRelModel::ComputeCrossSectionPerAtom(), G4KleinNishinaCompton::ComputeCrossSectionPerAtom(), G4KleinNishinaModel::ComputeCrossSectionPerAtom(), G4LivermoreComptonModel::ComputeCrossSectionPerAtom(), G4LivermorePolarizedComptonModel::ComputeCrossSectionPerAtom(), G4LowEPComptonModel::ComputeCrossSectionPerAtom(), G4LowEPPolarizedComptonModel::ComputeCrossSectionPerAtom(), G4mplIonisationWithDeltaModel::ComputeCrossSectionPerElectron(), G4EmCalculator::ComputeDEDX(), G4eBremsstrahlungRelModel::ComputeDEDXPerVolume(), G4mplIonisationWithDeltaModel::ComputeDEDXPerVolume(), G4IonParametrisedLossModel::ComputeDEDXPerVolume(), G4IonParametrisedLossModel::CorrectionsAlongStep(), G4PenelopeRayleighModelMI::CrossSectionPerVolume(), G4PenelopeComptonModel::CrossSectionPerVolume(), G4DNAChampionElasticModel::CrossSectionPerVolume(), G4DNACPA100ElasticModel::CrossSectionPerVolume(), G4DNACPA100ExcitationModel::CrossSectionPerVolume(), G4DNACPA100IonisationModel::CrossSectionPerVolume(), G4DNAEmfietzoglouExcitationModel::CrossSectionPerVolume(), G4DNAEmfietzoglouIonisationModel::CrossSectionPerVolume(), G4DNAMeltonAttachmentModel::CrossSectionPerVolume(), G4DNASancheExcitationModel::CrossSectionPerVolume(), G4DNAScreenedRutherfordElasticModel::CrossSectionPerVolume(), G4DNAELSEPAElasticModel::CrossSectionPerVolume(), G4EmCalculator::FindEmModel(), G4DNAChampionElasticModel::G4DNAChampionElasticModel(), G4DNACPA100ElasticModel::G4DNACPA100ElasticModel(), G4DNAMeltonAttachmentModel::G4DNAMeltonAttachmentModel(), G4DNASancheExcitationModel::G4DNASancheExcitationModel(), G4DNAUeharaScreenedRutherfordElasticModel::G4DNAUeharaScreenedRutherfordElasticModel(), G4eeToHadronsModel::G4eeToHadronsModel(), G4LivermorePolarizedRayleighModel::G4LivermorePolarizedRayleighModel(), G4PenelopeBremsstrahlungModel::GetCrossSectionTableForCouple(), G4VMscModel::GetParticleChangeForMSC(), G4DNAChampionElasticModel::Initialise(), G4DNACPA100ElasticModel::Initialise(), G4DNADingfelderChargeDecreaseModel::Initialise(), G4DNADingfelderChargeIncreaseModel::Initialise(), G4DNAMeltonAttachmentModel::Initialise(), G4DNAMillerGreenExcitationModel::Initialise(), G4DNARuddIonisationExtendedModel::Initialise(), G4DNARuddIonisationModel::Initialise(), G4DNASancheExcitationModel::Initialise(), G4DNAScreenedRutherfordElasticModel::Initialise(), G4DNAUeharaScreenedRutherfordElasticModel::Initialise(), G4BoldyshevTripletModel::Initialise(), G4PAIModel::Initialise(), G4PAIPhotModel::Initialise(), G4JAEAElasticScatteringModel::Initialise(), G4JAEAPolarizedElasticScatteringModel::Initialise(), G4LivermoreComptonModel::Initialise(), G4LivermoreGammaConversion5DModel::Initialise(), G4LivermoreGammaConversionModel::Initialise(), G4LivermoreIonisationModel::Initialise(), G4LivermoreNuclearGammaConversionModel::Initialise(), G4LivermorePolarizedComptonModel::Initialise(), G4LivermorePolarizedGammaConversionModel::Initialise(), G4LivermoreRayleighModel::Initialise(), G4LowEPComptonModel::Initialise(), G4LowEPPolarizedComptonModel::Initialise(), G4MicroElecElasticModel::Initialise(), G4MicroElecElasticModel_new::Initialise(), G4MicroElecInelasticModel::Initialise(), G4MicroElecInelasticModel_new::Initialise(), G4PenelopeAnnihilationModel::Initialise(), G4PenelopeBremsstrahlungModel::Initialise(), G4PenelopeComptonModel::Initialise(), G4PenelopeGammaConversionModel::Initialise(), G4PenelopeIonisationModel::Initialise(), G4PenelopePhotoElectricModel::Initialise(), G4PenelopeRayleighModel::Initialise(), G4PenelopeRayleighModelMI::Initialise(), G4MuPairProductionModel::Initialise(), G4eBremParametrizedModel::Initialise(), G4eBremsstrahlungRelModel::Initialise(), G4eDPWACoulombScatteringModel::Initialise(), G4GoudsmitSaundersonMscModel::Initialise(), G4PairProductionRelModel::Initialise(), G4SeltzerBergerModel::Initialise(), G4WentzelVIModel::Initialise(), G4DNABornExcitationModel1::Initialise(), G4DNABornExcitationModel2::Initialise(), G4DNABornIonisationModel1::Initialise(), G4DNABornIonisationModel2::Initialise(), G4DNACPA100ExcitationModel::Initialise(), G4DNACPA100IonisationModel::Initialise(), G4DNADiracRMatrixExcitationModel::Initialise(), G4DNAEmfietzoglouExcitationModel::Initialise(), G4DNAEmfietzoglouIonisationModel::Initialise(), G4DNAQuinnPlasmonExcitationModel::Initialise(), G4DNARelativisticIonisationModel::Initialise(), G4EmModelManager::Initialise(), G4DNAELSEPAElasticModel::Initialise(), G4DNADummyModel::Initialise(), G4DNAIonElasticModel::Initialise(), G4mplIonisation::InitialiseEnergyLossProcess(), G4eBremsstrahlungRelModel::InitialiseLocal(), G4PairProductionRelModel::InitialiseLocal(), G4CoulombScattering::InitialiseProcess(), G4VEmProcess::PostStepDoIt(), G4eBremsstrahlungRelModel::SampleSecondaries(), G4DNACPA100IonisationModel::SampleSecondaries(), G4DNAEmfietzoglouIonisationModel::SampleSecondaries(), G4LivermoreComptonModel::SampleSecondaries(), G4LivermorePolarizedComptonModel::SampleSecondaries(), G4LowEPComptonModel::SampleSecondaries(), G4LowEPPolarizedComptonModel::SampleSecondaries(), G4PenelopeComptonModel::SampleSecondaries(), G4PolarizedComptonModel::SampleSecondaries(), G4KleinNishinaCompton::SampleSecondaries(), G4KleinNishinaModel::SampleSecondaries(), G4EmConfigurator::SetExtraEmModel(), G4mplIonisationModel::SetParticle(), G4mplIonisationWithDeltaModel::SetParticle(), and G4EmConfigurator::UpdateModelEnergyRange().

◆ LPMFlag()

G4bool G4VEmModel::LPMFlag ( ) const
inlineinherited

◆ MaxSecondaryEnergy()

G4double G4BraggIonModel::MaxSecondaryEnergy ( const G4ParticleDefinition pd,
G4double  kinEnergy 
)
finalprotectedvirtual

Reimplemented from G4VEmModel.

Definition at line 388 of file G4BraggIonModel.cc.

390{
391 if(pd != particle) { SetParticle(pd); }
392 G4double tau = kinEnergy/mass;
393 G4double tmax = 2.0*electron_mass_c2*tau*(tau + 2.) /
394 (1. + 2.0*(tau + 1.)*ratio + ratio*ratio);
395 return tmax;
396}
float electron_mass_c2
Definition: hepunit.py:273

References source.hepunit::electron_mass_c2, mass, particle, ratio, and SetParticle().

Referenced by ComputeCrossSectionPerElectron(), and ComputeDEDXPerVolume().

◆ MaxSecondaryKinEnergy()

G4double G4VEmModel::MaxSecondaryKinEnergy ( const G4DynamicParticle dynParticle)
inlineinherited

◆ MinEnergyCut()

G4double G4BraggIonModel::MinEnergyCut ( const G4ParticleDefinition ,
const G4MaterialCutsCouple couple 
)
overridevirtual

Reimplemented from G4VEmModel.

Definition at line 143 of file G4BraggIonModel.cc.

145{
147}
G4double GetMeanExcitationEnergy() const
G4IonisParamMat * GetIonisation() const
Definition: G4Material.hh:222

References G4Material::GetIonisation(), G4MaterialCutsCouple::GetMaterial(), and G4IonisParamMat::GetMeanExcitationEnergy().

◆ MinPrimaryEnergy()

G4double G4VEmModel::MinPrimaryEnergy ( const G4Material ,
const G4ParticleDefinition ,
G4double  cut = 0.0 
)
virtualinherited

◆ ModelDescription()

void G4VEmModel::ModelDescription ( std::ostream &  outFile) const
virtualinherited

Reimplemented in G4eeToHadronsMultiModel.

Definition at line 469 of file G4VEmModel.cc.

470{
471 outFile << "The description for this model has not been written yet.\n";
472}

◆ operator=()

G4BraggIonModel & G4BraggIonModel::operator= ( const G4BraggIonModel right)
delete

◆ PolarAngleLimit()

G4double G4VEmModel::PolarAngleLimit ( ) const
inlineinherited

◆ SampleSecondaries()

void G4BraggIonModel::SampleSecondaries ( std::vector< G4DynamicParticle * > *  vdp,
const G4MaterialCutsCouple couple,
const G4DynamicParticle dp,
G4double  tmin,
G4double  maxEnergy 
)
overridevirtual

Implements G4VEmModel.

Definition at line 309 of file G4BraggIonModel.cc.

314{
315 const G4double tmax = MaxSecondaryKinEnergy(dp);
316 const G4double xmax = std::min(tmax, maxEnergy);
317 const G4double xmin = std::max(lowestKinEnergy*massRate, minEnergy);
318 if(xmin >= xmax) { return; }
319
320 G4double kineticEnergy = dp->GetKineticEnergy();
321 const G4double energy = kineticEnergy + mass;
322 const G4double energy2 = energy*energy;
323 const G4double beta2 = kineticEnergy*(kineticEnergy + 2.0*mass)/energy2;
324 const G4double grej = 1.0;
325 G4double deltaKinEnergy, f;
326
327 CLHEP::HepRandomEngine* rndmEngineMod = G4Random::getTheEngine();
328 G4double rndm[2];
329
330 // sampling follows ...
331 do {
332 rndmEngineMod->flatArray(2, rndm);
333 deltaKinEnergy = xmin*xmax/(xmin*(1.0 - rndm[0]) + xmax*rndm[0]);
334
335 f = 1.0 - beta2*deltaKinEnergy/tmax;
336
337 if(f > grej) {
338 G4cout << "G4BraggIonModel::SampleSecondary Warning! "
339 << "Majorant " << grej << " < "
340 << f << " for e= " << deltaKinEnergy
341 << G4endl;
342 }
343
344 // Loop checking, 03-Aug-2015, Vladimir Ivanchenko
345 } while( grej*rndm[1] >= f );
346
347 G4ThreeVector deltaDirection;
348
350 const G4Material* mat = couple->GetMaterial();
352
353 deltaDirection =
354 GetAngularDistribution()->SampleDirection(dp, deltaKinEnergy, Z, mat);
355
356 } else {
357
358 G4double deltaMomentum =
359 sqrt(deltaKinEnergy * (deltaKinEnergy + 2.0*electron_mass_c2));
360 G4double cost = deltaKinEnergy * (energy + electron_mass_c2) /
361 (deltaMomentum * dp->GetTotalMomentum());
362 if(cost > 1.0) { cost = 1.0; }
363 G4double sint = sqrt((1.0 - cost)*(1.0 + cost));
364
365 G4double phi = twopi*rndmEngineMod->flat();
366
367 deltaDirection.set(sint*cos(phi),sint*sin(phi), cost) ;
368 deltaDirection.rotateUz(dp->GetMomentumDirection());
369 }
370
371 // create G4DynamicParticle object for delta ray
372 G4DynamicParticle* delta =
373 new G4DynamicParticle(theElectron,deltaDirection,deltaKinEnergy);
374
375 vdp->push_back(delta);
376
377 // Change kinematics of primary particle
378 kineticEnergy -= deltaKinEnergy;
379 G4ThreeVector finalP = dp->GetMomentum() - delta->GetMomentum();
380 finalP = finalP.unit();
381
384}
static constexpr double twopi
Definition: G4SIunits.hh:56
#define G4endl
Definition: G4ios.hh:57
G4GLOB_DLL std::ostream G4cout
Hep3Vector unit() const
void set(double x, double y, double z)
Hep3Vector & rotateUz(const Hep3Vector &)
Definition: ThreeVector.cc:33
virtual double flat()=0
virtual void flatArray(const int size, double *vect)=0
const G4ThreeVector & GetMomentumDirection() const
G4ThreeVector GetMomentum() const
G4double GetTotalMomentum() const
void SetProposedKineticEnergy(G4double proposedKinEnergy)
void SetProposedMomentumDirection(const G4ThreeVector &dir)
virtual G4ThreeVector & SampleDirection(const G4DynamicParticle *dp, G4double finalTotalEnergy, G4int Z, const G4Material *)=0
G4int SelectRandomAtomNumber(const G4Material *)
Definition: G4VEmModel.cc:297
G4double MaxSecondaryKinEnergy(const G4DynamicParticle *dynParticle)
Definition: G4VEmModel.hh:520

References source.hepunit::electron_mass_c2, G4INCL::KinematicsUtils::energy(), CLHEP::HepRandomEngine::flat(), CLHEP::HepRandomEngine::flatArray(), fParticleChange, G4cout, G4endl, G4VEmModel::GetAngularDistribution(), G4DynamicParticle::GetKineticEnergy(), G4MaterialCutsCouple::GetMaterial(), G4DynamicParticle::GetMomentum(), G4DynamicParticle::GetMomentumDirection(), G4DynamicParticle::GetTotalMomentum(), lowestKinEnergy, mass, massRate, G4INCL::Math::max(), G4VEmModel::MaxSecondaryKinEnergy(), G4INCL::Math::min(), CLHEP::Hep3Vector::rotateUz(), G4VEmAngularDistribution::SampleDirection(), G4VEmModel::SelectRandomAtomNumber(), CLHEP::Hep3Vector::set(), G4ParticleChangeForLoss::SetProposedKineticEnergy(), G4ParticleChangeForLoss::SetProposedMomentumDirection(), theElectron, twopi, CLHEP::Hep3Vector::unit(), G4VEmModel::UseAngularGeneratorFlag(), and Z.

◆ SecondaryThreshold()

G4double G4VEmModel::SecondaryThreshold ( ) const
inlineinherited

◆ SelectIsotopeNumber()

G4int G4VEmModel::SelectIsotopeNumber ( const G4Element elm)
inherited

Definition at line 319 of file G4VEmModel.cc.

320{
322 const size_t ni = elm->GetNumberOfIsotopes();
323 fCurrentIsotope = elm->GetIsotope(0);
324 size_t idx = 0;
325 if(ni > 1) {
326 const G4double* ab = elm->GetRelativeAbundanceVector();
328 for(; idx<ni; ++idx) {
329 x -= ab[idx];
330 if (x <= 0.0) {
331 fCurrentIsotope = elm->GetIsotope(idx);
332 break;
333 }
334 }
335 }
336 return fCurrentIsotope->GetN();
337}
static const G4double ab
#define G4UniformRand()
Definition: Randomize.hh:52
G4double * GetRelativeAbundanceVector() const
Definition: G4Element.hh:167
const G4Isotope * GetIsotope(G4int iso) const
Definition: G4Element.hh:170
size_t GetNumberOfIsotopes() const
Definition: G4Element.hh:159
G4int GetN() const
Definition: G4Isotope.hh:93

References ab, G4VEmModel::fCurrentIsotope, G4UniformRand, G4Element::GetIsotope(), G4Isotope::GetN(), G4Element::GetNumberOfIsotopes(), G4Element::GetRelativeAbundanceVector(), and G4VEmModel::SetCurrentElement().

Referenced by G4eSingleCoulombScatteringModel::SampleSecondaries(), G4IonCoulombScatteringModel::SampleSecondaries(), G4eCoulombScatteringModel::SampleSecondaries(), G4hCoulombScatteringModel::SampleSecondaries(), and G4BetheHeitler5DModel::SampleSecondaries().

◆ SelectRandomAtom() [1/2]

const G4Element * G4VEmModel::SelectRandomAtom ( const G4Material mat,
const G4ParticleDefinition pd,
G4double  kineticEnergy,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
inherited

Definition at line 275 of file G4VEmModel.cc.

280{
281 size_t n = mat->GetNumberOfElements();
282 fCurrentElement = mat->GetElement(0);
283 if (n > 1) {
284 const G4double x = G4UniformRand()*
285 G4VEmModel::CrossSectionPerVolume(mat,pd,kinEnergy,tcut,tmax);
286 for(size_t i=0; i<n; ++i) {
287 if (x <= xsec[i]) {
288 fCurrentElement = mat->GetElement(i);
289 break;
290 }
291 }
292 }
293 return fCurrentElement;
294}
const G4Element * GetElement(G4int iel) const
Definition: G4Material.hh:198
size_t GetNumberOfElements() const
Definition: G4Material.hh:182
std::vector< G4double > xsec
Definition: G4VEmModel.hh:466

References G4VEmModel::CrossSectionPerVolume(), G4VEmModel::fCurrentElement, G4UniformRand, G4Material::GetElement(), G4Material::GetNumberOfElements(), CLHEP::detail::n, and G4VEmModel::xsec.

◆ SelectRandomAtom() [2/2]

const G4Element * G4VEmModel::SelectRandomAtom ( const G4MaterialCutsCouple couple,
const G4ParticleDefinition part,
G4double  kineticEnergy,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
inlineinherited

Definition at line 580 of file G4VEmModel.hh.

585{
586 SetCurrentCouple(couple);
588 ((*elmSelectors)[couple->GetIndex()])->SelectRandomAtom(kinEnergy) :
589 SelectRandomAtom(pBaseMaterial,part,kinEnergy,cutEnergy,maxEnergy);
590 fCurrentIsotope = nullptr;
591 return fCurrentElement;
592}
const G4Element * SelectRandomAtom(const G4MaterialCutsCouple *, const G4ParticleDefinition *, G4double kineticEnergy, G4double cutEnergy=0.0, G4double maxEnergy=DBL_MAX)
Definition: G4VEmModel.hh:580

References G4VEmModel::elmSelectors, G4VEmModel::fCurrentElement, G4VEmModel::fCurrentIsotope, G4MaterialCutsCouple::GetIndex(), G4VEmModel::nSelectors, G4VEmModel::pBaseMaterial, G4VEmModel::SelectRandomAtom(), and G4VEmModel::SetCurrentCouple().

Referenced by G4AdjointBremsstrahlungModel::RapidSampleSecondaries(), G4LivermoreBremsstrahlungModel::SampleSecondaries(), G4JAEAElasticScatteringModel::SampleSecondaries(), G4JAEAPolarizedElasticScatteringModel::SampleSecondaries(), G4LivermoreComptonModel::SampleSecondaries(), G4LivermoreNuclearGammaConversionModel::SampleSecondaries(), G4LivermorePhotoElectricModel::SampleSecondaries(), G4LivermorePolarizedComptonModel::SampleSecondaries(), G4LivermorePolarizedGammaConversionModel::SampleSecondaries(), G4LivermorePolarizedRayleighModel::SampleSecondaries(), G4LivermoreRayleighModel::SampleSecondaries(), G4LowEPComptonModel::SampleSecondaries(), G4LowEPPolarizedComptonModel::SampleSecondaries(), G4PenelopePhotoElectricModel::SampleSecondaries(), G4MuBremsstrahlungModel::SampleSecondaries(), G4MuPairProductionModel::SampleSecondaries(), G4hCoulombScatteringModel::SampleSecondaries(), G4KleinNishinaModel::SampleSecondaries(), G4PEEffectFluoModel::SampleSecondaries(), G4VEmModel::SelectRandomAtom(), and G4VEmModel::SelectTargetAtom().

◆ SelectRandomAtomNumber()

G4int G4VEmModel::SelectRandomAtomNumber ( const G4Material mat)
inherited

Definition at line 297 of file G4VEmModel.cc.

298{
299 // this algorith assumes that cross section is proportional to
300 // number electrons multiplied by number of atoms
301 const size_t nn = mat->GetNumberOfElements();
302 fCurrentElement = mat->GetElement(0);
303 if(1 < nn) {
304 const G4double* at = mat->GetVecNbOfAtomsPerVolume();
306 for(size_t i=0; i<nn; ++i) {
307 tot -= at[i];
308 if(tot <= 0.0) {
309 fCurrentElement = mat->GetElement(i);
310 break;
311 }
312 }
313 }
314 return fCurrentElement->GetZasInt();
315}
G4int GetZasInt() const
Definition: G4Element.hh:132
G4double GetTotNbOfAtomsPerVolume() const
Definition: G4Material.hh:205
const G4double * GetVecNbOfAtomsPerVolume() const
Definition: G4Material.hh:202

References G4VEmModel::fCurrentElement, G4UniformRand, G4Material::GetElement(), G4Material::GetNumberOfElements(), G4Material::GetTotNbOfAtomsPerVolume(), G4Material::GetVecNbOfAtomsPerVolume(), G4Element::GetZasInt(), and G4InuclParticleNames::nn.

Referenced by G4AtimaEnergyLossModel::SampleSecondaries(), G4BetheBlochModel::SampleSecondaries(), SampleSecondaries(), G4BraggModel::SampleSecondaries(), G4ICRU73QOModel::SampleSecondaries(), G4LindhardSorensenIonModel::SampleSecondaries(), G4MollerBhabhaModel::SampleSecondaries(), and G4IonParametrisedLossModel::SampleSecondaries().

◆ SelectTargetAtom()

const G4Element * G4VEmModel::SelectTargetAtom ( const G4MaterialCutsCouple couple,
const G4ParticleDefinition part,
G4double  kineticEnergy,
G4double  logKineticEnergy,
G4double  cutEnergy = 0.0,
G4double  maxEnergy = DBL_MAX 
)
inlineinherited

◆ SetActivationHighEnergyLimit()

void G4VEmModel::SetActivationHighEnergyLimit ( G4double  val)
inlineinherited

◆ SetActivationLowEnergyLimit()

void G4VEmModel::SetActivationLowEnergyLimit ( G4double  val)
inlineinherited

◆ SetAngularDistribution()

void G4VEmModel::SetAngularDistribution ( G4VEmAngularDistribution p)
inlineinherited

Definition at line 628 of file G4VEmModel.hh.

629{
630 if(p != anglModel) {
631 delete anglModel;
632 anglModel = p;
633 }
634}

References G4VEmModel::anglModel.

Referenced by G4EmLivermorePhysics::ConstructProcess(), G4EmLowEPPhysics::ConstructProcess(), G4EmStandardPhysics::ConstructProcess(), G4EmStandardPhysics_option3::ConstructProcess(), G4EmStandardPhysics_option4::ConstructProcess(), G4EmStandardPhysicsSS::ConstructProcess(), G4BetheHeitlerModel::G4BetheHeitlerModel(), G4DNABornIonisationModel1::G4DNABornIonisationModel1(), G4DNABornIonisationModel2::G4DNABornIonisationModel2(), G4DNAEmfietzoglouIonisationModel::G4DNAEmfietzoglouIonisationModel(), G4DNARuddIonisationExtendedModel::G4DNARuddIonisationExtendedModel(), G4DNARuddIonisationModel::G4DNARuddIonisationModel(), G4eBremParametrizedModel::G4eBremParametrizedModel(), G4eBremsstrahlungRelModel::G4eBremsstrahlungRelModel(), G4IonParametrisedLossModel::G4IonParametrisedLossModel(), G4LivermoreBremsstrahlungModel::G4LivermoreBremsstrahlungModel(), G4LivermoreIonisationModel::G4LivermoreIonisationModel(), G4LivermorePhotoElectricModel::G4LivermorePhotoElectricModel(), G4LivermoreRayleighModel::G4LivermoreRayleighModel(), G4MicroElecInelasticModel::G4MicroElecInelasticModel(), G4MicroElecInelasticModel_new::G4MicroElecInelasticModel_new(), G4MuBremsstrahlungModel::G4MuBremsstrahlungModel(), G4MuPairProductionModel::G4MuPairProductionModel(), G4PAIModel::G4PAIModel(), G4PAIPhotModel::G4PAIPhotModel(), G4PairProductionRelModel::G4PairProductionRelModel(), G4PEEffectFluoModel::G4PEEffectFluoModel(), G4SeltzerBergerModel::G4SeltzerBergerModel(), G4AtimaEnergyLossModel::Initialise(), G4BetheBlochModel::Initialise(), Initialise(), G4BraggModel::Initialise(), G4ICRU73QOModel::Initialise(), G4LindhardSorensenIonModel::Initialise(), and G4MollerBhabhaModel::Initialise().

◆ SetAngularGeneratorFlag()

void G4VEmModel::SetAngularGeneratorFlag ( G4bool  val)
inlineinherited

Definition at line 725 of file G4VEmModel.hh.

726{
728}
G4bool useAngularGenerator
Definition: G4VEmModel.hh:461

References G4VEmModel::useAngularGenerator.

Referenced by G4VEnergyLossProcess::PreparePhysicsTable().

◆ SetCrossSectionTable()

void G4VEmModel::SetCrossSectionTable ( G4PhysicsTable p,
G4bool  isLocal 
)
inherited

Definition at line 455 of file G4VEmModel.cc.

456{
457 if(p != xSectionTable) {
458 if(xSectionTable != nullptr && localTable) {
460 delete xSectionTable;
461 }
462 xSectionTable = p;
463 }
464 localTable = isLocal;
465}
void clearAndDestroy()
G4bool localTable
Definition: G4VEmModel.hh:459

References G4PhysicsTable::clearAndDestroy(), G4VEmModel::localTable, and G4VEmModel::xSectionTable.

Referenced by G4VMultipleScattering::BuildPhysicsTable().

◆ SetCurrentCouple()

void G4VEmModel::SetCurrentCouple ( const G4MaterialCutsCouple ptr)
inlineinherited

Definition at line 472 of file G4VEmModel.hh.

473{
474 if(fCurrentCouple != ptr) {
475 fCurrentCouple = ptr;
477 pBaseMaterial = ptr->GetMaterial();
478 pFactor = 1.0;
479 if(useBaseMaterials) {
480 basedCoupleIndex = (*theDensityIdx)[currentCoupleIndex];
481 if(nullptr != pBaseMaterial->GetBaseMaterial())
483 pFactor = (*theDensityFactor)[currentCoupleIndex];
484 }
485 }
486}
const G4Material * GetBaseMaterial() const
Definition: G4Material.hh:229
G4bool useBaseMaterials
Definition: G4VEmModel.hh:462
size_t currentCoupleIndex
Definition: G4VEmModel.hh:448
size_t basedCoupleIndex
Definition: G4VEmModel.hh:449

References G4VEmModel::basedCoupleIndex, G4VEmModel::currentCoupleIndex, G4VEmModel::fCurrentCouple, G4Material::GetBaseMaterial(), G4MaterialCutsCouple::GetIndex(), G4MaterialCutsCouple::GetMaterial(), G4VEmModel::pBaseMaterial, G4VEmModel::pFactor, and G4VEmModel::useBaseMaterials.

Referenced by G4VMultipleScattering::AlongStepGetPhysicalInteractionLength(), G4EmMultiModel::ComputeCrossSectionPerAtom(), G4VEmModel::ComputeDEDX(), G4TablesForExtrapolator::ComputeTrasportXS(), G4UrbanAdjointMscModel::ComputeTruePathLengthLimit(), G4GoudsmitSaundersonMscModel::ComputeTruePathLengthLimit(), G4UrbanMscModel::ComputeTruePathLengthLimit(), G4VEmModel::CrossSection(), G4AdjointPhotoElectricModel::DefineCurrentMaterialAndElectronEnergy(), G4WentzelVIModel::DefineMaterial(), G4WentzelVIRelModel::DefineMaterial(), G4EmCalculator::GetCrossSectionPerVolume(), G4LivermoreGammaConversion5DModel::Initialise(), G4VEmModel::InitialiseElementSelectors(), G4PEEffectFluoModel::SampleSecondaries(), G4EmMultiModel::SampleSecondaries(), G4VEnergyLossProcess::SelectModel(), G4VEmProcess::SelectModel(), G4VEmModel::SelectRandomAtom(), G4VEmModel::SelectTargetAtom(), and G4VEmModel::Value().

◆ SetCurrentElement()

void G4VEmModel::SetCurrentElement ( const G4Element elm)
inlineprotectedinherited

◆ SetDeexcitationFlag()

void G4VEmModel::SetDeexcitationFlag ( G4bool  val)
inlineinherited

Definition at line 823 of file G4VEmModel.hh.

824{
825 flagDeexcitation = val;
826}

References G4VEmModel::flagDeexcitation.

Referenced by G4DNABornIonisationModel1::G4DNABornIonisationModel1(), G4DNABornIonisationModel2::G4DNABornIonisationModel2(), G4DNACPA100IonisationModel::G4DNACPA100IonisationModel(), G4DNAEmfietzoglouIonisationModel::G4DNAEmfietzoglouIonisationModel(), G4DNARelativisticIonisationModel::G4DNARelativisticIonisationModel(), G4DNARuddIonisationExtendedModel::G4DNARuddIonisationExtendedModel(), G4DNARuddIonisationModel::G4DNARuddIonisationModel(), G4KleinNishinaModel::G4KleinNishinaModel(), G4LEPTSIonisationModel::G4LEPTSIonisationModel(), G4LivermoreComptonModel::G4LivermoreComptonModel(), G4LivermorePhotoElectricModel::G4LivermorePhotoElectricModel(), G4LivermorePolarizedComptonModel::G4LivermorePolarizedComptonModel(), G4LowEPComptonModel::G4LowEPComptonModel(), G4LowEPPolarizedComptonModel::G4LowEPPolarizedComptonModel(), G4MicroElecInelasticModel::G4MicroElecInelasticModel(), G4MicroElecInelasticModel_new::G4MicroElecInelasticModel_new(), G4PEEffectFluoModel::G4PEEffectFluoModel(), G4PenelopeBremsstrahlungModel::G4PenelopeBremsstrahlungModel(), G4PenelopeComptonModel::G4PenelopeComptonModel(), G4PenelopeIonisationModel::G4PenelopeIonisationModel(), G4PenelopePhotoElectricModel::G4PenelopePhotoElectricModel(), G4AtimaEnergyLossModel::Initialise(), G4BetheBlochModel::Initialise(), Initialise(), G4BraggModel::Initialise(), G4ICRU73QOModel::Initialise(), and G4LindhardSorensenIonModel::Initialise().

◆ SetElementSelectors()

void G4VEmModel::SetElementSelectors ( std::vector< G4EmElementSelector * > *  p)
inlineinherited

Definition at line 852 of file G4VEmModel.hh.

853{
854 if(p != elmSelectors) {
855 elmSelectors = p;
856 nSelectors = (nullptr != elmSelectors) ? G4int(elmSelectors->size()) : 0;
857 localElmSelectors = false;
858 }
859}
G4bool localElmSelectors
Definition: G4VEmModel.hh:460

References G4VEmModel::elmSelectors, G4VEmModel::localElmSelectors, and G4VEmModel::nSelectors.

Referenced by G4eDPWACoulombScatteringModel::InitialiseLocal(), G4eSingleCoulombScatteringModel::InitialiseLocal(), G4PAIModel::InitialiseLocal(), G4PAIPhotModel::InitialiseLocal(), G4JAEAElasticScatteringModel::InitialiseLocal(), G4JAEAPolarizedElasticScatteringModel::InitialiseLocal(), G4LivermoreComptonModel::InitialiseLocal(), G4LivermoreNuclearGammaConversionModel::InitialiseLocal(), G4LivermorePolarizedComptonModel::InitialiseLocal(), G4LivermorePolarizedGammaConversionModel::InitialiseLocal(), G4LivermorePolarizedRayleighModel::InitialiseLocal(), G4LivermoreRayleighModel::InitialiseLocal(), G4LowEPComptonModel::InitialiseLocal(), G4LowEPPolarizedComptonModel::InitialiseLocal(), G4PenelopePhotoElectricModel::InitialiseLocal(), G4MuBremsstrahlungModel::InitialiseLocal(), G4MuPairProductionModel::InitialiseLocal(), G4BetheHeitlerModel::InitialiseLocal(), G4eBremParametrizedModel::InitialiseLocal(), G4eBremsstrahlungRelModel::InitialiseLocal(), G4eCoulombScatteringModel::InitialiseLocal(), G4hCoulombScatteringModel::InitialiseLocal(), G4KleinNishinaCompton::InitialiseLocal(), G4KleinNishinaModel::InitialiseLocal(), and G4PairProductionRelModel::InitialiseLocal().

◆ SetFluctuationFlag()

void G4VEmModel::SetFluctuationFlag ( G4bool  val)
inlineinherited

Definition at line 732 of file G4VEmModel.hh.

733{
734 lossFlucFlag = val;
735}
G4bool lossFlucFlag
Definition: G4VEmModel.hh:450

References G4VEmModel::lossFlucFlag.

Referenced by G4EmCalculator::ComputeNuclearDEDX().

◆ SetForceBuildTable()

void G4VEmModel::SetForceBuildTable ( G4bool  val)
inlineinherited

Definition at line 830 of file G4VEmModel.hh.

831{
833}

References G4VEmModel::flagForceBuildTable.

◆ SetHighEnergyLimit()

void G4VEmModel::SetHighEnergyLimit ( G4double  val)
inlineinherited

Definition at line 767 of file G4VEmModel.hh.

768{
769 highLimit = val;
770}

References G4VEmModel::highLimit.

Referenced by G4EmModelActivator::ActivateEmOptions(), G4EmModelActivator::ActivatePAI(), LBE::ConstructEM(), G4EmDNAPhysics_option2::ConstructProcess(), G4EmDNAPhysics_option5::ConstructProcess(), G4EmDNAPhysics_option7::ConstructProcess(), G4EmDNAPhysics_stationary::ConstructProcess(), G4EmLivermorePhysics::ConstructProcess(), G4EmLowEPPhysics::ConstructProcess(), G4EmPenelopePhysics::ConstructProcess(), G4EmStandardPhysics::ConstructProcess(), G4EmStandardPhysics_option1::ConstructProcess(), G4EmStandardPhysics_option2::ConstructProcess(), G4EmStandardPhysics_option4::ConstructProcess(), G4EmStandardPhysicsGS::ConstructProcess(), G4EmStandardPhysicsWVI::ConstructProcess(), G4BraggIonModel(), G4BraggModel::G4BraggModel(), G4DNAChampionElasticModel::G4DNAChampionElasticModel(), G4DNACPA100ElasticModel::G4DNACPA100ElasticModel(), G4DNACPA100ExcitationModel::G4DNACPA100ExcitationModel(), G4DNACPA100IonisationModel::G4DNACPA100IonisationModel(), G4DNAELSEPAElasticModel::G4DNAELSEPAElasticModel(), G4DNAEmfietzoglouExcitationModel::G4DNAEmfietzoglouExcitationModel(), G4DNAEmfietzoglouIonisationModel::G4DNAEmfietzoglouIonisationModel(), G4DNAIonElasticModel::G4DNAIonElasticModel(), G4DNAMeltonAttachmentModel::G4DNAMeltonAttachmentModel(), G4DNASancheExcitationModel::G4DNASancheExcitationModel(), G4DNAScreenedRutherfordElasticModel::G4DNAScreenedRutherfordElasticModel(), G4DNATransformElectronModel::G4DNATransformElectronModel(), G4DNAUeharaScreenedRutherfordElasticModel::G4DNAUeharaScreenedRutherfordElasticModel(), G4eDPWACoulombScatteringModel::G4eDPWACoulombScatteringModel(), G4ICRU73QOModel::G4ICRU73QOModel(), G4MicroElecElasticModel::G4MicroElecElasticModel(), G4MicroElecElasticModel_new::G4MicroElecElasticModel_new(), G4PenelopeAnnihilationModel::G4PenelopeAnnihilationModel(), G4PenelopeBremsstrahlungModel::G4PenelopeBremsstrahlungModel(), G4PenelopeComptonModel::G4PenelopeComptonModel(), G4PenelopeGammaConversionModel::G4PenelopeGammaConversionModel(), G4PenelopeIonisationModel::G4PenelopeIonisationModel(), G4PenelopePhotoElectricModel::G4PenelopePhotoElectricModel(), G4PenelopeRayleighModel::G4PenelopeRayleighModel(), G4PenelopeRayleighModelMI::G4PenelopeRayleighModelMI(), G4TDNAOneStepThermalizationModel< MODEL >::G4TDNAOneStepThermalizationModel(), G4XrayRayleighModel::G4XrayRayleighModel(), G4VLEPTSModel::Init(), G4DNAChampionElasticModel::Initialise(), G4DNACPA100ElasticModel::Initialise(), G4DNADingfelderChargeDecreaseModel::Initialise(), G4DNADingfelderChargeIncreaseModel::Initialise(), G4DNAMeltonAttachmentModel::Initialise(), G4DNAMillerGreenExcitationModel::Initialise(), G4DNARuddIonisationExtendedModel::Initialise(), G4DNARuddIonisationModel::Initialise(), G4DNASancheExcitationModel::Initialise(), G4MicroElecElasticModel::Initialise(), G4MicroElecInelasticModel::Initialise(), G4MicroElecInelasticModel_new::Initialise(), G4DNABornExcitationModel1::Initialise(), G4DNABornExcitationModel2::Initialise(), G4DNABornIonisationModel1::Initialise(), G4DNABornIonisationModel2::Initialise(), G4DNAELSEPAElasticModel::Initialise(), G4DNAModelInterface::Initialise(), G4DNAIonElasticModel::Initialise(), G4hhIonisation::InitialiseEnergyLossProcess(), G4mplIonisation::InitialiseEnergyLossProcess(), G4ePairProduction::InitialiseEnergyLossProcess(), G4MuBremsstrahlung::InitialiseEnergyLossProcess(), G4MuIonisation::InitialiseEnergyLossProcess(), G4MuPairProduction::InitialiseEnergyLossProcess(), G4PolarizedBremsstrahlung::InitialiseEnergyLossProcess(), G4PolarizedIonisation::InitialiseEnergyLossProcess(), G4eBremsstrahlung::InitialiseEnergyLossProcess(), G4eIonisation::InitialiseEnergyLossProcess(), G4hIonisation::InitialiseEnergyLossProcess(), G4ionIonisation::InitialiseEnergyLossProcess(), G4DNAAttachment::InitialiseProcess(), G4DNAChargeDecrease::InitialiseProcess(), G4DNAChargeIncrease::InitialiseProcess(), G4DNADissociation::InitialiseProcess(), G4DNAElastic::InitialiseProcess(), G4DNAExcitation::InitialiseProcess(), G4DNAIonisation::InitialiseProcess(), G4DNAPlasmonExcitation::InitialiseProcess(), G4DNAPositronium::InitialiseProcess(), G4DNARotExcitation::InitialiseProcess(), G4DNAVibExcitation::InitialiseProcess(), G4PolarizedCompton::InitialiseProcess(), G4PolarizedGammaConversion::InitialiseProcess(), G4PolarizedPhotoElectric::InitialiseProcess(), G4ComptonScattering::InitialiseProcess(), G4CoulombScattering::InitialiseProcess(), G4eplusAnnihilation::InitialiseProcess(), G4GammaConversion::InitialiseProcess(), G4PhotoElectricEffect::InitialiseProcess(), G4VEmProcess::PreparePhysicsTable(), G4VEnergyLossProcess::PreparePhysicsTable(), G4VMultipleScattering::PreparePhysicsTable(), G4DNAUeharaScreenedRutherfordElasticModel::SelectHighEnergyLimit(), G4VEmAdjointModel::SetHighEnergyLimit(), G4DNAELSEPAElasticModel::SetMaximumEnergy(), G4mplIonisationModel::SetParticle(), G4mplIonisationWithDeltaModel::SetParticle(), and G4EmConfigurator::UpdateModelEnergyRange().

◆ SetLocked()

void G4VEmModel::SetLocked ( G4bool  val)
inlineinherited

◆ SetLowEnergyLimit()

void G4VEmModel::SetLowEnergyLimit ( G4double  val)
inlineinherited

Definition at line 774 of file G4VEmModel.hh.

775{
776 lowLimit = val;
777}

References G4VEmModel::lowLimit.

Referenced by G4EmModelActivator::ActivatePAI(), G4EmDNAPhysics_option2::ConstructProcess(), G4EmDNAPhysics_option5::ConstructProcess(), G4EmDNAPhysics_stationary::ConstructProcess(), G4EmLivermorePhysics::ConstructProcess(), G4EmLowEPPhysics::ConstructProcess(), G4EmPenelopePhysics::ConstructProcess(), G4EmStandardPhysics::ConstructProcess(), G4EmStandardPhysics_option1::ConstructProcess(), G4EmStandardPhysics_option2::ConstructProcess(), G4EmStandardPhysics_option3::ConstructProcess(), G4EmStandardPhysics_option4::ConstructProcess(), G4EmStandardPhysicsGS::ConstructProcess(), G4EmStandardPhysicsWVI::ConstructProcess(), G4DNASancheExcitationModel::ExtendLowEnergyLimit(), G4AtimaEnergyLossModel::G4AtimaEnergyLossModel(), G4BetheBlochModel::G4BetheBlochModel(), G4BetheHeitler5DModel::G4BetheHeitler5DModel(), G4DNAChampionElasticModel::G4DNAChampionElasticModel(), G4DNACPA100ElasticModel::G4DNACPA100ElasticModel(), G4DNACPA100ExcitationModel::G4DNACPA100ExcitationModel(), G4DNACPA100IonisationModel::G4DNACPA100IonisationModel(), G4DNAELSEPAElasticModel::G4DNAELSEPAElasticModel(), G4DNAEmfietzoglouExcitationModel::G4DNAEmfietzoglouExcitationModel(), G4DNAEmfietzoglouIonisationModel::G4DNAEmfietzoglouIonisationModel(), G4DNAIonElasticModel::G4DNAIonElasticModel(), G4DNAMeltonAttachmentModel::G4DNAMeltonAttachmentModel(), G4DNASancheExcitationModel::G4DNASancheExcitationModel(), G4DNAScreenedRutherfordElasticModel::G4DNAScreenedRutherfordElasticModel(), G4DNATransformElectronModel::G4DNATransformElectronModel(), G4DNAUeharaScreenedRutherfordElasticModel::G4DNAUeharaScreenedRutherfordElasticModel(), G4DummyModel::G4DummyModel(), G4eBremParametrizedModel::G4eBremParametrizedModel(), G4eBremsstrahlungRelModel::G4eBremsstrahlungRelModel(), G4eDPWACoulombScatteringModel::G4eDPWACoulombScatteringModel(), G4LivermoreBremsstrahlungModel::G4LivermoreBremsstrahlungModel(), G4MicroElecElasticModel::G4MicroElecElasticModel(), G4MicroElecElasticModel_new::G4MicroElecElasticModel_new(), G4SeltzerBergerModel::G4SeltzerBergerModel(), G4TDNAOneStepThermalizationModel< MODEL >::G4TDNAOneStepThermalizationModel(), G4VLEPTSModel::Init(), G4DNAChampionElasticModel::Initialise(), G4DNACPA100ElasticModel::Initialise(), G4DNADingfelderChargeDecreaseModel::Initialise(), G4DNADingfelderChargeIncreaseModel::Initialise(), G4DNAMeltonAttachmentModel::Initialise(), G4DNAMillerGreenExcitationModel::Initialise(), G4DNARuddIonisationExtendedModel::Initialise(), G4DNARuddIonisationModel::Initialise(), G4MicroElecElasticModel::Initialise(), G4MicroElecInelasticModel::Initialise(), G4MicroElecInelasticModel_new::Initialise(), G4BetheHeitler5DModel::Initialise(), G4DNABornExcitationModel1::Initialise(), G4DNABornExcitationModel2::Initialise(), G4DNABornIonisationModel1::Initialise(), G4DNABornIonisationModel2::Initialise(), G4DNAELSEPAElasticModel::Initialise(), G4DNAModelInterface::Initialise(), G4DNAIonElasticModel::Initialise(), G4hhIonisation::InitialiseEnergyLossProcess(), G4mplIonisation::InitialiseEnergyLossProcess(), G4ePairProduction::InitialiseEnergyLossProcess(), G4MuBremsstrahlung::InitialiseEnergyLossProcess(), G4MuIonisation::InitialiseEnergyLossProcess(), G4MuPairProduction::InitialiseEnergyLossProcess(), G4PolarizedBremsstrahlung::InitialiseEnergyLossProcess(), G4PolarizedIonisation::InitialiseEnergyLossProcess(), G4eBremsstrahlung::InitialiseEnergyLossProcess(), G4eIonisation::InitialiseEnergyLossProcess(), G4hIonisation::InitialiseEnergyLossProcess(), G4ionIonisation::InitialiseEnergyLossProcess(), G4DNAAttachment::InitialiseProcess(), G4DNAChargeDecrease::InitialiseProcess(), G4DNAChargeIncrease::InitialiseProcess(), G4DNADissociation::InitialiseProcess(), G4DNAElastic::InitialiseProcess(), G4DNAExcitation::InitialiseProcess(), G4DNAIonisation::InitialiseProcess(), G4DNAPlasmonExcitation::InitialiseProcess(), G4DNAPositronium::InitialiseProcess(), G4DNARotExcitation::InitialiseProcess(), G4DNAVibExcitation::InitialiseProcess(), G4PolarizedCompton::InitialiseProcess(), G4PolarizedGammaConversion::InitialiseProcess(), G4PolarizedPhotoElectric::InitialiseProcess(), G4ComptonScattering::InitialiseProcess(), G4CoulombScattering::InitialiseProcess(), G4eplusAnnihilation::InitialiseProcess(), G4GammaConversion::InitialiseProcess(), G4PhotoElectricEffect::InitialiseProcess(), G4VEmAdjointModel::SetLowEnergyLimit(), G4mplIonisationModel::SetParticle(), G4mplIonisationWithDeltaModel::SetParticle(), and G4EmConfigurator::UpdateModelEnergyRange().

◆ SetLPMFlag()

void G4VEmModel::SetLPMFlag ( G4bool  val)
inlineinherited

◆ SetMasterThread()

void G4VEmModel::SetMasterThread ( G4bool  val)
inlineinherited

◆ SetParticle()

void G4BraggIonModel::SetParticle ( const G4ParticleDefinition p)
private

◆ SetParticleChange()

void G4VEmModel::SetParticleChange ( G4VParticleChange p,
G4VEmFluctuationModel f = nullptr 
)
inherited

◆ SetPolarAngleLimit()

void G4VEmModel::SetPolarAngleLimit ( G4double  val)
inlineinherited

◆ SetSecondaryThreshold()

void G4VEmModel::SetSecondaryThreshold ( G4double  val)
inlineinherited

◆ SetTripletModel()

void G4VEmModel::SetTripletModel ( G4VEmModel p)
inlineinherited

Definition at line 645 of file G4VEmModel.hh.

646{
647 if(p != fTripletModel) {
648 delete fTripletModel;
649 fTripletModel = p;
650 }
651}

References G4VEmModel::fTripletModel.

Referenced by G4eplusTo2GammaOKVIModel::G4eplusTo2GammaOKVIModel().

◆ SetupForMaterial()

void G4VEmModel::SetupForMaterial ( const G4ParticleDefinition ,
const G4Material ,
G4double  kineticEnergy 
)
virtualinherited

◆ SetUseBaseMaterials()

void G4VEmModel::SetUseBaseMaterials ( G4bool  val)
inlineinherited

◆ StartTracking()

void G4VEmModel::StartTracking ( G4Track )
virtualinherited

◆ StoppingPower()

G4double G4BraggIonModel::StoppingPower ( const G4Material material,
const G4double  kinEnergy 
) const
private

Definition at line 439 of file G4BraggIonModel.cc.

441{
442 G4double ionloss = 0.0 ;
443
444 if (iMolecula >= 0) {
445
446 // The data and the fit from:
447 // ICRU Report N49, 1993. Ziegler's model for alpha
448 // He energy in internal units of parametrisation formula (MeV)
449 // Input scaled energy of a proton or GenericIon
450
451 // G4double T = kineticEnergy*rateMassHe2p/CLHEP::MeV;
452 G4double T = kineticEnergy/CLHEP::MeV;
453
454 static const G4float a[11][5] = {
455 {9.43672f, 0.54398f, 84.341f, 1.3705f, 57.422f},
456 {67.1503f, 0.41409f, 404.512f, 148.97f, 20.99f},
457 {5.11203f, 0.453f, 36.718f, 50.6f, 28.058f},
458 {61.793f, 0.48445f, 361.537f, 57.889f, 50.674f},
459 {7.83464f, 0.49804f, 160.452f, 3.192f, 0.71922f},
460 {19.729f, 0.52153f, 162.341f, 58.35f, 25.668f},
461 {26.4648f, 0.50112f, 188.913f, 30.079f, 16.509f},
462 {7.8655f, 0.5205f, 63.96f, 51.32f, 67.775f},
463 {8.8965f, 0.5148f, 339.36f, 1.7205f, 0.70423f},
464 {2.959f, 0.53255f, 34.247f, 60.655f, 15.153f},
465 {3.80133f, 0.41590f, 12.9966f, 117.83f, 242.28f} };
466
467 static const G4double atomicWeight[11] = {
468 101.96128f, 44.0098f, 16.0426f, 28.0536f, 42.0804f,
469 104.1512f, 44.665f, 60.0843f, 18.0152f, 18.0152f, 12.0f};
470
471 G4int i = iMolecula;
472
473 G4double slow = (G4double)(a[i][0]);
474
475 G4double x1 = (G4double)(a[i][1]);
476 G4double x2 = (G4double)(a[i][2]);
477 G4double x3 = (G4double)(a[i][3]);
478 G4double x4 = (G4double)(a[i][4]);
479
480 // Free electron gas model
481 if ( T < 0.001 ) {
482 G4double shigh = G4Log( 1.0 + x3*1000.0 + x4*0.001 ) *x2*1000.0;
483 ionloss = slow*shigh / (slow + shigh) ;
484 ionloss *= sqrt(T*1000.0) ;
485
486 // Main parametrisation
487 } else {
488 slow *= G4Exp(G4Log(T*1000.0)*x1) ;
489 G4double shigh = G4Log( 1.0 + x3/T + x4*T ) * x2/T ;
490 ionloss = slow*shigh / (slow + shigh) ;
491 /*
492 G4cout << "## " << i << ". T= " << T << " slow= " << slow
493 << " a0= " << a[i][0] << " a1= " << a[i][1]
494 << " shigh= " << shigh
495 << " dedx= " << ionloss << " q^2= " << HeEffChargeSquare(z, T*MeV)
496 << G4endl;
497 */
498 }
499 ionloss = std::max(ionloss, 0.0);
500
501 // He effective charge
502 ionloss /= (effChargeSquare*atomicWeight[iMolecula]);
503
504 // pure material (normally not the case for this function)
505 } else if(1 == (material->GetNumberOfElements())) {
506 const G4double z = material->GetZ() ;
507 ionloss = ElectronicStoppingPower( z, kineticEnergy ) ;
508 }
509
510 return ionloss;
511}

References effChargeSquare, ElectronicStoppingPower(), G4Exp(), G4Log(), iMolecula, eplot::material, G4INCL::Math::max(), and CLHEP::MeV.

Referenced by DEDX().

◆ UseAngularGeneratorFlag()

G4bool G4VEmModel::UseAngularGeneratorFlag ( ) const
inlineinherited

◆ UseBaseMaterials()

G4bool G4VEmModel::UseBaseMaterials ( ) const
inlineinherited

Definition at line 760 of file G4VEmModel.hh.

761{
762 return useBaseMaterials;
763}

References G4VEmModel::useBaseMaterials.

◆ Value()

G4double G4VEmModel::Value ( const G4MaterialCutsCouple couple,
const G4ParticleDefinition p,
G4double  kineticEnergy 
)
virtualinherited

Field Documentation

◆ anglModel

G4VEmAngularDistribution* G4VEmModel::anglModel = nullptr
privateinherited

◆ basedCoupleIndex

size_t G4VEmModel::basedCoupleIndex = 0
protectedinherited

◆ baseMaterial

const G4Material* G4BraggIonModel::baseMaterial = nullptr
private

Definition at line 160 of file G4BraggIonModel.hh.

Referenced by DEDX().

◆ chargeSquare

G4double G4BraggIonModel::chargeSquare = 1.0
private

◆ corr

G4EmCorrections* G4BraggIonModel::corr = nullptr
private

◆ currentCoupleIndex

size_t G4VEmModel::currentCoupleIndex = 0
protectedinherited

Definition at line 448 of file G4VEmModel.hh.

Referenced by G4VEmModel::SetCurrentCouple().

◆ currentMaterial

const G4Material* G4BraggIonModel::currentMaterial = nullptr
private

Definition at line 159 of file G4BraggIonModel.hh.

Referenced by DEDX().

◆ effChargeSquare

G4double G4BraggIonModel::effChargeSquare = 1.0
private

Definition at line 167 of file G4BraggIonModel.hh.

Referenced by ComputeDEDXPerVolume(), SetParticle(), and StoppingPower().

◆ elmSelectors

std::vector<G4EmElementSelector*>* G4VEmModel::elmSelectors = nullptr
privateinherited

◆ eMaxActive

G4double G4VEmModel::eMaxActive = DBL_MAX
privateinherited

◆ eMinActive

G4double G4VEmModel::eMinActive = 0.0
privateinherited

◆ fASTAR

G4ASTARStopping * G4BraggIonModel::fASTAR = nullptr
staticprivate

Definition at line 162 of file G4BraggIonModel.hh.

Referenced by DEDX(), Initialise(), and ~G4BraggIonModel().

◆ fCurrentCouple

const G4MaterialCutsCouple* G4VEmModel::fCurrentCouple = nullptr
privateinherited

Definition at line 416 of file G4VEmModel.hh.

Referenced by G4VEmModel::CurrentCouple(), and G4VEmModel::SetCurrentCouple().

◆ fCurrentElement

const G4Element* G4VEmModel::fCurrentElement = nullptr
privateinherited

◆ fCurrentIsotope

const G4Isotope* G4VEmModel::fCurrentIsotope = nullptr
privateinherited

◆ fElementData

G4ElementData* G4VEmModel::fElementData = nullptr
protectedinherited

◆ fEmManager

G4LossTableManager* G4VEmModel::fEmManager
privateinherited

Definition at line 420 of file G4VEmModel.hh.

Referenced by G4VEmModel::G4VEmModel(), and G4VEmModel::~G4VEmModel().

◆ fICRU90

G4ICRU90StoppingData* G4BraggIonModel::fICRU90 = nullptr
private

Definition at line 157 of file G4BraggIonModel.hh.

Referenced by DEDX(), and Initialise().

◆ flagDeexcitation

G4bool G4VEmModel::flagDeexcitation = false
privateinherited

Definition at line 455 of file G4VEmModel.hh.

Referenced by G4VEmModel::DeexcitationFlag(), and G4VEmModel::SetDeexcitationFlag().

◆ flagForceBuildTable

G4bool G4VEmModel::flagForceBuildTable = false
privateinherited

◆ flucModel

G4VEmFluctuationModel* G4VEmModel::flucModel = nullptr
privateinherited

◆ fParticleChange

G4ParticleChangeForLoss* G4BraggIonModel::fParticleChange = nullptr
private

Definition at line 156 of file G4BraggIonModel.hh.

Referenced by Initialise(), and SampleSecondaries().

◆ fTripletModel

G4VEmModel* G4VEmModel::fTripletModel = nullptr
privateinherited

◆ HeMass

G4double G4BraggIonModel::HeMass
private

Definition at line 170 of file G4BraggIonModel.hh.

Referenced by G4BraggIonModel().

◆ highLimit

G4double G4VEmModel::highLimit
privateinherited

◆ iASTAR

G4int G4BraggIonModel::iASTAR = -1
private

Definition at line 177 of file G4BraggIonModel.hh.

Referenced by DEDX().

◆ iICRU90

G4int G4BraggIonModel::iICRU90 = -1
private

Definition at line 178 of file G4BraggIonModel.hh.

Referenced by DEDX().

◆ iMolecula

G4int G4BraggIonModel::iMolecula = -1
private

Definition at line 176 of file G4BraggIonModel.hh.

Referenced by DEDX(), and StoppingPower().

◆ inveplus

G4double G4VEmModel::inveplus
protectedinherited

◆ isAlpha

G4bool G4BraggIonModel::isAlpha = false
private

◆ isIon

G4bool G4BraggIonModel::isIon = false
private

Definition at line 179 of file G4BraggIonModel.hh.

Referenced by CorrectionsAlongStep(), Initialise(), and SetParticle().

◆ isLocked

G4bool G4VEmModel::isLocked = false
privateinherited

◆ isMaster

G4bool G4VEmModel::isMaster = true
privateinherited

◆ localElmSelectors

G4bool G4VEmModel::localElmSelectors = true
privateinherited

Definition at line 460 of file G4VEmModel.hh.

Referenced by G4VEmModel::SetElementSelectors(), and G4VEmModel::~G4VEmModel().

◆ localTable

G4bool G4VEmModel::localTable = true
privateinherited

Definition at line 459 of file G4VEmModel.hh.

Referenced by G4VEmModel::SetCrossSectionTable(), and G4VEmModel::~G4VEmModel().

◆ lossFlucFlag

G4bool G4VEmModel::lossFlucFlag = true
protectedinherited

◆ lowestKinEnergy

G4double G4BraggIonModel::lowestKinEnergy
private

◆ lowLimit

G4double G4VEmModel::lowLimit
privateinherited

◆ mass

G4double G4BraggIonModel::mass = 0.0
private

◆ massFactor

G4double G4BraggIonModel::massFactor
private

Definition at line 171 of file G4BraggIonModel.hh.

Referenced by G4BraggIonModel(), and HeEffChargeSquare().

◆ massRate

G4double G4BraggIonModel::massRate = 1.0
private

◆ name

const G4String G4VEmModel::name
privateinherited

◆ nsec

G4int G4VEmModel::nsec = 5
privateinherited

Definition at line 444 of file G4VEmModel.hh.

Referenced by G4VEmModel::CrossSectionPerVolume(), and G4VEmModel::G4VEmModel().

◆ nSelectors

G4int G4VEmModel::nSelectors = 0
privateinherited

◆ particle

const G4ParticleDefinition* G4BraggIonModel::particle = nullptr
private

◆ pBaseMaterial

const G4Material* G4VEmModel::pBaseMaterial = nullptr
protectedinherited

◆ pFactor

G4double G4VEmModel::pFactor = 1.0
protectedinherited

◆ polarAngleLimit

G4double G4VEmModel::polarAngleLimit
privateinherited

Definition at line 441 of file G4VEmModel.hh.

Referenced by G4VEmModel::PolarAngleLimit(), and G4VEmModel::SetPolarAngleLimit().

◆ pParticleChange

G4VParticleChange* G4VEmModel::pParticleChange = nullptr
protectedinherited

◆ rateMassHe2p

G4double G4BraggIonModel::rateMassHe2p
private

Definition at line 172 of file G4BraggIonModel.hh.

Referenced by ComputeDEDXPerVolume(), and G4BraggIonModel().

◆ ratio

G4double G4BraggIonModel::ratio = 1.0
private

Definition at line 169 of file G4BraggIonModel.hh.

Referenced by MaxSecondaryEnergy(), and SetParticle().

◆ secondaryThreshold

G4double G4VEmModel::secondaryThreshold = DBL_MAX
privateinherited

◆ spin

G4double G4BraggIonModel::spin = 0.0
private

Definition at line 165 of file G4BraggIonModel.hh.

Referenced by ComputeCrossSectionPerElectron(), and SetParticle().

◆ theDensityFactor

const std::vector<G4double>* G4VEmModel::theDensityFactor = nullptr
protectedinherited

Definition at line 428 of file G4VEmModel.hh.

Referenced by G4VEmModel::G4VEmModel().

◆ theDensityIdx

const std::vector<G4int>* G4VEmModel::theDensityIdx = nullptr
protectedinherited

Definition at line 429 of file G4VEmModel.hh.

Referenced by G4VEmModel::G4VEmModel().

◆ theElectron

const G4ParticleDefinition* G4BraggIonModel::theElectron
private

Definition at line 155 of file G4BraggIonModel.hh.

Referenced by G4BraggIonModel(), and SampleSecondaries().

◆ theLPMflag

G4bool G4VEmModel::theLPMflag = false
privateinherited

Definition at line 454 of file G4VEmModel.hh.

Referenced by G4VEmModel::LPMFlag(), and G4VEmModel::SetLPMFlag().

◆ theZieglerFactor

G4double G4BraggIonModel::theZieglerFactor
private

Definition at line 173 of file G4BraggIonModel.hh.

Referenced by DEDX().

◆ useAngularGenerator

G4bool G4VEmModel::useAngularGenerator = false
privateinherited

◆ useBaseMaterials

G4bool G4VEmModel::useBaseMaterials = false
privateinherited

◆ xsec

std::vector<G4double> G4VEmModel::xsec
privateinherited

◆ xSectionTable

G4PhysicsTable* G4VEmModel::xSectionTable = nullptr
protectedinherited

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