109 static const G4double a = 20.0 , b = 230.0 , c = 440.0;
120 p3Z =
Z*(d3 +
e3*
Z + f3*
Z*
Z), p4Z =
Z*(d4 +
e4*
Z + f4*
Z*
Z);
123 if (
Z < 1.5) {
T0 = 40.0*
keV; }
126 xSection = p1Z*
G4Log(1.+2.*X)/X
127 + (p2Z + p3Z*X + p4Z*X*X)/(1. + a*X + b*X*X + c*X*X*X);
130 if (GammaEnergy <
T0) {
134 + (p2Z + p3Z*X + p4Z*X*X)/(1. + a*X + b*X*X + c*X*X*X);
135 G4double c1 = -
T0*(sigma-xSection)/(xSection*dT0);
137 if (
Z > 1.5) { c2 = 0.375-0.0556*
G4Log(
Z); }
139 xSection *=
G4Exp(-y*(c1+c2*y));
148 std::vector<G4DynamicParticle*>* fvect,
182 static const G4int nlooplim = 1000;
187 if(nloop > nlooplim) {
return; }
190 rndmEngineMod->flatArray(3, rndm);
192 if ( alpha1 >
alpha2*rndm[0] ) {
197 epsilonsq = epsilon0sq + (1.- epsilon0sq)*rndm[1];
202 sint2 = onecost*(2.-onecost);
203 greject = 1. -
epsilon*sint2/(1.+ epsilonsq);
206 }
while (greject < rndm[2]);
212 if(sint2 < 0.0) { sint2 = 0.0; }
221 G4ThreeVector gamDirection1(sinTeta*cos(Phi), sinTeta*sin(Phi), cosTeta);
222 gamDirection1.
rotateUz(gamDirection0);
238 G4double eKinEnergy = gamEnergy0 - gamEnergy1;
241 G4ThreeVector eDirection = gamEnergy0*gamDirection0 - gamEnergy1*gamDirection1;
242 eDirection = eDirection.
unit();
246 fvect->push_back(dp);
static const G4double e4[47]
static const G4double e1[44]
static const G4double e2[44]
static const G4double e3[45]
G4double epsilon(G4double density, G4double temperature)
G4double G4Exp(G4double initial_x)
Exponential Function double precision.
G4double G4Log(G4double x)
static const G4double T0[78]
static constexpr double twopi
static constexpr double keV
static constexpr double eV
Hep3Vector & rotateUz(const Hep3Vector &)
const G4ThreeVector & GetMomentumDirection() const
G4double GetKineticEnergy() const
static G4Electron * Electron()
void Initialise(const G4ParticleDefinition *, const G4DataVector &) override
G4double lowestSecondaryEnergy
G4double ComputeCrossSectionPerAtom(const G4ParticleDefinition *, G4double kinEnergy, G4double Z, G4double A, G4double cut, G4double emax) override
void InitialiseLocal(const G4ParticleDefinition *, G4VEmModel *masterModel) override
G4KleinNishinaCompton(const G4ParticleDefinition *p=nullptr, const G4String &nam="Klein-Nishina")
G4ParticleDefinition * theGamma
G4ParticleChangeForGamma * fParticleChange
G4ParticleDefinition * theElectron
void SampleSecondaries(std::vector< G4DynamicParticle * > *, const G4MaterialCutsCouple *, const G4DynamicParticle *, G4double tmin, G4double maxEnergy) override
~G4KleinNishinaCompton() override
void SetProposedKineticEnergy(G4double proposedKinEnergy)
void ProposeMomentumDirection(G4double Px, G4double Py, G4double Pz)
void SetElementSelectors(std::vector< G4EmElementSelector * > *)
G4ParticleChangeForGamma * GetParticleChangeForGamma()
G4double LowEnergyLimit() const
std::vector< G4EmElementSelector * > * GetElementSelectors()
void InitialiseElementSelectors(const G4ParticleDefinition *, const G4DataVector &)
void ProposeTrackStatus(G4TrackStatus status)
void ProposeLocalEnergyDeposit(G4double anEnergyPart)
static constexpr double barn
T max(const T t1, const T t2)
brief Return the largest of the two arguments