66 LEN =
new std::vector<G4double*>;
67 HEN =
new std::vector<G4double*>;
74 for(
G4int i=0; i<lens; ++i)
delete[] (*
LEN)[i];
77 for(
G4int i=0; i<hens; ++i)
delete[] (*
HEN)[i];
84 outFile <<
"G4ChipsPionPlusInelasticXS provides the inelastic cross\n"
85 <<
"section for pion+ nucleus scattering as a function of incident\n"
86 <<
"momentum. The cross section is calculated using M. Kossov's\n"
87 <<
"CHIPS parameterization of cross section data.\n";
138 if(lastCS<=0. && pMom>
lastTH)
157 colP.push_back(pMom);
205 if(sync<=I)
G4cerr<<
"*!*G4ChipsPiMinusNuclCS::CalcCrosSect:Sync="<<sync<<
"<="<<I<<
G4endl;
231 G4cerr<<
"***G4ChipsPiMinusNuclCS::CalcCrossSect: Sinc="<<sync<<
"#"<<I<<
", Z=" <<targZ
232 <<
", N="<<targN<<
", F="<<F<<
G4endl;
240 if (Momentum<
lastTH)
return 0.;
241 else if (Momentum<
Pmin)
245 else if (Momentum<
Pmax)
255 if(sigma<0.)
return 0.;
266 if(tZ<.99 || tN<0.)
return 0.;
267 else if(tZ==1 && tN==0)
return 300.;
272 return std::sqrt(T*(
tpM+T));
306 else if(tZ==1 && tN==1)
312 sigma=(.55*d*d+38.+23./std::sqrt(
P))/(1.+.3/p2/p2)+18./(f*f+.1089)+.02/(gg*gg+.0025);
314 else if(tZ<97 && tN<152)
330 sigma=(c+d*d)/(1.+(.2-.009*sa)/p4)+f/(u*u+h*h)/(1.+r/p2);
334 G4cerr<<
"-Warning-G4ChipsPiPlusNuclearCroSect::CSForm:*Bad A* Z="<<tZ<<
", N="<<tN<<
G4endl;
337 if(sigma<0.)
return 0.;
345 G4cerr<<
"***G4ChipsPionPlusInelasticXS::EquLinearFit: DX="<<DX<<
", N="<<N<<
G4endl;
351 G4int jj=
static_cast<int>(d);
353 else if(jj>N2) jj=N2;
G4_DECLARE_XS_FACTORY(G4ChipsPionPlusInelasticXS)
G4double Y(G4double density)
G4double G4Exp(G4double initial_x)
Exponential Function double precision.
G4double G4Log(G4double x)
static const G4double THmin
static constexpr double millibarn
G4GLOB_DLL std::ostream G4cerr
std::vector< G4double * > * LEN
std::vector< G4double * > * HEN
std::vector< G4int > colZ
G4double CrossSectionFormula(G4int targZ, G4int targN, G4double P, G4double lP)
G4double EquLinearFit(G4double X, G4int N, G4double X0, G4double DX, G4double *Y)
G4double CalculateCrossSection(G4int F, G4int I, G4int PDG, G4int Z, G4int N, G4double Momentum)
virtual G4double GetChipsCrossSection(G4double momentum, G4int Z, G4int N, G4int pdg)
~G4ChipsPionPlusInelasticXS()
virtual G4double GetIsoCrossSection(const G4DynamicParticle *, G4int tgZ, G4int A, const G4Isotope *iso=0, const G4Element *elm=0, const G4Material *mat=0)
G4double CrossSectionLog(G4int targZ, G4int targN, G4double lP)
std::vector< G4int > colN
virtual G4bool IsIsoApplicable(const G4DynamicParticle *Pt, G4int Z, G4int A, const G4Element *elm, const G4Material *mat)
virtual void CrossSectionDescription(std::ostream &) const
G4double CrossSectionLin(G4int targZ, G4int targN, G4double P)
G4double ThresholdMomentum(G4int targZ, G4int targN)
G4ChipsPionPlusInelasticXS()
std::vector< G4double > colTH
std::vector< G4double > colCS
std::vector< G4double > colP
G4double GetTotalMomentum() const
G4double GetPDGMass() const
static G4PionPlus * Definition()
static G4PionPlus * PionPlus()
static G4Pow * GetInstance()
G4double powA(G4double A, G4double y) const
const G4double al
Mysterious coefficient that appears in the wavefunctions.