61 static const G4double sixoverpi2 = 6.0/CLHEP::pi2;
65 G4double A0 = (P*P+H*H+P-3*H)/(4.0*g0);
69 if (E0 <= 0.0) {
return 0.0; }
72 if (E1 <= 0.0) {
return 0.0; }
77 if (rj < 0.0 || xs < 0.0) {
return 0.0; }
79 static const G4double fact = 2*CLHEP::millibarn
80 /(CLHEP::pi2*CLHEP::hbarc*CLHEP::hbarc*CLHEP::hbarc);
82 *
g4calc->
powN(g1*E1/(g0*E0),
N-2) * g1 / (E0*g0*g0);
G4int GetNumberOfParticles() const
G4int GetNumberOfHoles() const
G4double GetExcitationEnergy() const
G4int GetNumberOfCharged() const
G4double GetLevelDensity(G4int Z, G4int A, G4double U)
G4double powN(G4double x, G4int n) const
G4double CrossSection(G4double ekin) const
virtual G4double GetRj(G4int NumberParticles, G4int NumberCharged) const =0
G4double ProbabilityDistributionFunction(G4double eKin, const G4Fragment &) override
G4PreCompoundNucleon(const G4ParticleDefinition *, G4VCoulombBarrier *p=nullptr)
G4NuclearLevelData * fNucData
G4double theBindingEnergy