50G4double G4PenelopeAnnihilationModel::fPielr2 = 0;
54 :
G4VEmModel(nam),fParticleChange(0),fParticle(0),isInitialised(false)
56 fIntrinsicLowEnergyLimit = 0.0;
57 fIntrinsicHighEnergyLimit = 100.0*GeV;
65 fPielr2 = pi*classic_electr_radius*classic_electr_radius;
88 G4cout <<
"Calling G4PenelopeAnnihilationModel::Initialise()" <<
G4endl;
94 if(verboseLevel > 0) {
95 G4cout <<
"Penelope Annihilation model is initialized " <<
G4endl
103 if(isInitialised)
return;
105 isInitialised =
true;
112 if (verboseLevel > 3)
113 G4cout <<
"Calling G4PenelopeAnnihilationModel::InitialiseLocal()" <<
G4endl;
126 verboseLevel = theModel->verboseLevel;
138 if (verboseLevel > 3)
139 G4cout <<
"Calling ComputeCrossSectionPerAtom() of G4PenelopeAnnihilationModel" <<
142 G4double cs = Z*ComputeCrossSectionPerElectron(energy);
144 if (verboseLevel > 2)
145 G4cout <<
"Annihilation cross Section at " << energy/keV <<
" keV for Z=" << Z <<
146 " = " << cs/barn <<
" barn" <<
G4endl;
173 if (verboseLevel > 3)
174 G4cout <<
"Calling SamplingSecondaries() of G4PenelopeAnnihilationModel" <<
G4endl;
182 if (kineticEnergy == 0.0)
186 G4double sinTheta = std::sqrt(1.0-cosTheta*cosTheta);
188 G4ThreeVector direction (sinTheta*std::cos(phi),sinTheta*std::sin(phi),cosTheta);
190 direction, electron_mass_c2);
192 -direction, electron_mass_c2);
194 fvect->push_back(firstGamma);
195 fvect->push_back(secondGamma);
202 G4double gamma = 1.0 + std::max(kineticEnergy,1.0*eV)/electron_mass_c2;
203 G4double gamma21 = std::sqrt(gamma*gamma-1);
205 G4double chimin = 1.0/(ani+gamma21);
206 G4double rchi = (1.0-chimin)/chimin;
216 G4double totalAvailableEnergy = kineticEnergy + 2.0*electron_mass_c2;
224 G4double sinTheta1 = std::sqrt(1.-cosTheta1*cosTheta1);
226 G4double dirx1 = sinTheta1 * std::cos(phi1);
227 G4double diry1 = sinTheta1 * std::sin(phi1);
230 G4double sinTheta2 = std::sqrt(1.-cosTheta2*cosTheta2);
232 G4double dirx2 = sinTheta2 * std::cos(phi2);
233 G4double diry2 = sinTheta2 * std::sin(phi2);
237 photon1Direction.
rotateUz(positronDirection);
242 fvect->push_back(aParticle1);
245 photon2Direction.
rotateUz(positronDirection);
250 fvect->push_back(aParticle2);
252 if (verboseLevel > 1)
254 G4cout <<
"-----------------------------------------------------------" <<
G4endl;
255 G4cout <<
"Energy balance from G4PenelopeAnnihilation" <<
G4endl;
256 G4cout <<
"Kinetic positron energy: " << kineticEnergy/keV <<
" keV" <<
G4endl;
257 G4cout <<
"Total available energy: " << totalAvailableEnergy/keV <<
" keV " <<
G4endl;
258 G4cout <<
"-----------------------------------------------------------" <<
G4endl;
259 G4cout <<
"Photon energy 1: " << photon1Energy/keV <<
" keV" <<
G4endl;
260 G4cout <<
"Photon energy 2: " << photon2Energy/keV <<
" keV" <<
G4endl;
261 G4cout <<
"Total final state: " << (photon1Energy+photon2Energy)/keV <<
263 G4cout <<
"-----------------------------------------------------------" <<
G4endl;
265 if (verboseLevel > 0)
267 G4double energyDiff = std::fabs(totalAvailableEnergy-photon1Energy-photon2Energy);
268 if (energyDiff > 0.05*keV)
269 G4cout <<
"Warning from G4PenelopeAnnihilation: problem with energy conservation: " <<
270 (photon1Energy+photon2Energy)/keV <<
271 " keV (final) vs. " <<
272 totalAvailableEnergy/keV <<
" keV (initial)" <<
G4endl;
279G4double G4PenelopeAnnihilationModel:: ComputeCrossSectionPerElectron(
G4double energy)
288 G4double gamma = 1.0+std::max(energy,1.0*eV)/electron_mass_c2;
292 G4double crossSection = fPielr2*((gamma2+4.0*gamma+1.0)*
G4Log(gamma+f1)/f2
293 - (gamma+3.0)/f1)/(gamma+1.0);
double epsilon(double density, double temperature)
G4double G4Log(G4double x)
G4GLOB_DLL std::ostream G4cout
Hep3Vector & rotateUz(const Hep3Vector &)
const G4ThreeVector & GetMomentumDirection() const
G4double GetKineticEnergy() const
void SetProposedKineticEnergy(G4double proposedKinEnergy)
virtual G4double ComputeCrossSectionPerAtom(const G4ParticleDefinition *, G4double kinEnergy, G4double Z, G4double A=0, G4double cut=0, G4double emax=DBL_MAX)
virtual void SampleSecondaries(std::vector< G4DynamicParticle * > *, const G4MaterialCutsCouple *, const G4DynamicParticle *, G4double tmin, G4double maxEnergy)
const G4ParticleDefinition * fParticle
virtual void InitialiseLocal(const G4ParticleDefinition *, G4VEmModel *)
G4PenelopeAnnihilationModel(const G4ParticleDefinition *p=0, const G4String &processName="PenAnnih")
virtual void Initialise(const G4ParticleDefinition *, const G4DataVector &)
virtual ~G4PenelopeAnnihilationModel()
G4ParticleChangeForGamma * fParticleChange
void SetHighEnergyLimit(G4double)
G4ParticleChangeForGamma * GetParticleChangeForGamma()
G4double LowEnergyLimit() const
G4double HighEnergyLimit() const
void ProposeTrackStatus(G4TrackStatus status)