101 std::vector<G4double*>::iterator
pos;
102 for (pos=
CST.begin(); pos<
CST.end(); pos++)
105 for (pos=
PAR.begin(); pos<
PAR.end(); pos++)
108 for (pos=
SST.begin(); pos<
SST.end(); pos++)
111 for (pos=
S1T.begin(); pos<
S1T.end(); pos++)
114 for (pos=
B1T.begin(); pos<
B1T.end(); pos++)
117 for (pos=
S2T.begin(); pos<
S2T.end(); pos++)
120 for (pos=
B2T.begin(); pos<
B2T.end(); pos++)
123 for (pos=
S3T.begin(); pos<
S3T.end(); pos++)
126 for (pos=
B3T.begin(); pos<
B3T.end(); pos++)
129 for (pos=
S4T.begin(); pos<
S4T.end(); pos++)
132 for (pos=
B4T.begin(); pos<
B4T.end(); pos++)
140 outFile <<
"G4ChipsAntiBaryonElasticXS provides the elastic cross\n" 141 <<
"section for anti-baryon nucleus scattering as a function of incident\n" 142 <<
"momentum. The cross section is calculated using M. Kossov's\n" 143 <<
"CHIPS parameterization of cross section data.\n";
239 if(lastCS<=0. && pEn>
lastTH)
260 colP.push_back(pMom);
343 G4int blast=
static_cast<int>(shift);
362 G4int blast=
static_cast<int>(shift);
393 if(lastSIG<0.) lastSIG = 0.;
403 const G4int n_appel=30;
405 G4double app_el[n_appel]={1.25,3.5,80.,1.,.0557,6.72,5.,74.,3.,3.4,.2,.17,.001,8.,.055,
406 3.64,5.e-5,4000.,1500.,.46,1.2e6,3.5e6,5.e-5,1.e10,8.5e8,
407 1.e10,1.1,3.4e6,6.8e6,0.};
411 if(PDG>-3335 && PDG<-1111)
426 if ( tgZ == 1 && tgN == 0 )
428 for (
G4int ip=0; ip<n_appel; ip++)
lastPAR[ip]=app_el[ip];
453 lastPAR[1]=2.8*asa/(1.+a*(.015+.05/ssa));
455 lastPAR[3]=.013*a2/(1.+a3*(.006+a*.00001));
468 lastPAR[11]=.7/(1.+4.e-12*a16);
469 lastPAR[12]=2.5/a8/(a4+1.e-16*a32);
477 lastPAR[19]=(42.+2.7e-11*a16)/(1.+.14*a);
481 lastPAR[22]=2.4e-3*a8/(1.+2.6e-4*a7);
482 lastPAR[23]=3.5e-36*a32*a8/(1.+5.e-15*a32/
a);
484 lastPAR[24]=1.e5/(a8+2.5e12/a16);
485 lastPAR[25]=8.e7/(a12+1.e-27*a28*a28);
494 lastPAR[32]=1.5e-4/(1.+5.e-6*a12);
521 lastPAR[11]=.6*a/(1.+2.e15/a16);
522 lastPAR[12]=.17/(a+9.e5/a3+1.5e33/a32);
524 lastPAR[14]=(p1a10*p1a10+2.e-29)/(1.+2.
e-22*a12);
526 lastPAR[15]=400./a12+2.e-22*a9;
527 lastPAR[16]=1.e-32*a12/(1.+5.e22/a14);
528 lastPAR[17]=1000./a2+9.5*sa*ssa;
529 lastPAR[18]=4.e-6*a*asa+1.e11/a16;
530 lastPAR[19]=(120./a+.002*
a2)/(1.+2.e14/a16);
538 lastPAR[25]=1.e-5*a2+2.e14/a16;
539 lastPAR[26]=1.2e-11*a2/(1.+1.5e19/a12);
540 lastPAR[27]=.016*asa/(1.+5.e16/a16);
544 lastPAR[30]=11.*a3/(1.+7.e23/a16/a8);
548 lastPAR[33]=3.5e-4*a2/(1.+1.e8/a8);
551 lastPAR[36]=1.e-9/a+s4a16*s4a16;
571 lastPAR[51]=1.e15+2.e27/a4/(1.+2.e-18*a16);
620 else G4cout<<
"*Warning*G4ChipsAntiBaryonElasticXS::GetPTables: PDG="<<PDG
621 <<
", Z="<<tgZ<<
", N="<<tgN<<
", i="<<ini<<
" > fin="<<fin<<
", LP="<<LP
622 <<
" > ILP="<<ILP<<
" nothing is done!"<<
G4endl;
624 else G4cout<<
"*Warning*G4ChipsAntiBaryonElasticXS::GetPTables: PDG="<<PDG
625 <<
", Z="<<tgZ<<
", N="<<tgN<<
", i="<<ini<<
">= max="<<
nPoints<<
", LP="<<LP
626 <<
" > ILP="<<ILP<<
", lPMax="<<
lPMax<<
" nothing is done!"<<
G4endl;
635 ed <<
"PDG = " << PDG <<
", Z = " << tgZ <<
", N = " << tgN
636 <<
", while it is defined only for Anti Baryons" <<
G4endl;
637 G4Exception(
"G4ChipsAntiBaryonElasticXS::GetPTables()",
"HAD_CHPS_0000",
651 if(PDG<-3334 || PDG>-1111)
G4cout<<
"*Warning*G4QAntiBaryonElCS::GetExT:PDG="<<PDG<<
G4endl;
700 if(a>6.5)E3*=tm2*tm2*tm2;
716 if(std::fabs(tss)>1.
e-7) q2=(std::sqrt(
theB1*(
theB1+(tss+tss)*q2))-
theB1)/tss;
740 if(a<6.5) q2=lastTM-q2;
744 if(!(q2>=-1.||q2<=1.))
G4cout<<
"*NAN*G4QaBElasticCrossSect::GetExchangeT:-t="<<q2<<
G4endl;
757 if(
lastLP<-4.3)
return 0.;
758 if(PDG<-3334 || PDG>-1111)
764 ed <<
"PDG = " << PDG <<
", Z = " << tgZ <<
", N = " << tgN
765 <<
", while it is defined only for Anti Baryons" <<
G4endl;
766 G4Exception(
"G4ChipsAntiBaryonElasticXS::GetSlope()",
"HAD_CHPS_0000",
785 if(PDG<-3334 || PDG>-1111)
G4cout<<
"*Warning*G4QAntiBaryElCS::GetTabV:PDG="<<PDG<<
G4endl;
788 G4cout<<
"*Warning*G4QAntiBaryonElCS::GetTabValue:(1-92) NoIsotopesFor Z="<<tgZ<<
G4endl;
803 if ( tgZ == 1 && tgN == 0 )
807 theS1=(lastPAR[7]+lastPAR[8]*dl2*dl2)/(1.+lastPAR[9]/p4/p)+
808 (lastPAR[10]/p2+lastPAR[11]*p)/(p4+lastPAR[12]*sp);
810 theS2=lastPAR[16]+lastPAR[17]/(p4+lastPAR[18]*p);
811 theB2=lastPAR[19]+lastPAR[20]/(p4+lastPAR[21]/
sp);
812 theS3=lastPAR[22]+lastPAR[23]/(p4*p4+lastPAR[24]*p2+lastPAR[25]);
813 theB3=lastPAR[26]+lastPAR[27]/(p4+lastPAR[28]);
819 return lastPAR[2]/(ye+lastPAR[3])+lastPAR[4]*dp*dp+lastPAR[5];
847 theB4=lastPAR[43]*pa/p2/(1.+pa*lastPAR[44]);
868 return (lastPAR[0]*dlp*dlp+lastPAR[1]+lastPAR[2]/p)/(1.+lastPAR[3]/p);
885 G4double mds=dmt*std::sqrt(pP2+mNuc2)+mNuc2+mt*mt;
886 return dmt*dmt*pP2/mds;
894 ed <<
"PDG = " << PDG <<
", Z = " << tgZ <<
", N = " << tgN
895 <<
", while it is defined only for p projectiles & Z_target>0" <<
G4endl;
896 G4Exception(
"G4ChipsAntiBaryonElasticXS::GetQ2max()",
"HAD_CHPS_0000",
std::vector< G4double * > B2T
virtual G4bool IsIsoApplicable(const G4DynamicParticle *Pt, G4int Z, G4int A, const G4Element *elm, const G4Material *mat)
static G4Pow * GetInstance()
std::vector< G4double * > S1T
std::vector< G4double > PIN
std::ostringstream G4ExceptionDescription
G4double GetQ2max(G4int pPDG, G4int tgZ, G4int tgN, G4double pP)
std::vector< G4double > colCS
std::vector< G4double * > SST
G4ParticleDefinition * GetIon(G4int Z, G4int A, G4int lvl=0)
~G4ChipsAntiBaryonElasticXS()
std::vector< G4int > colZ
G4double GetTotalMomentum() const
virtual void CrossSectionDescription(std::ostream &) const
std::vector< G4int > colN
G4_DECLARE_XS_FACTORY(G4ChipsAntiBaryonElasticXS)
std::vector< G4double * > S4T
G4GLOB_DLL std::ostream G4cout
double A(double temperature)
G4IonTable * GetIonTable() const
G4int GetPDGEncoding() const
std::vector< G4double * > PAR
G4double GetSlope(G4int tZ, G4int tN, G4int pPDG)
std::vector< G4double > colTH
static G4Proton * Proton()
std::vector< G4double * > B1T
static G4Neutron * Neutron()
G4double GetTabValues(G4double lp, G4int pPDG, G4int tgZ, G4int tgN)
G4ChipsAntiBaryonElasticXS()
std::vector< G4double > colP
void G4Exception(const char *originOfException, const char *exceptionCode, G4ExceptionSeverity severity, const char *comments)
G4double G4Log(G4double x)
G4double G4Exp(G4double initial_x)
Exponential Function double precision.
std::vector< G4double * > B4T
virtual G4double GetChipsCrossSection(G4double momentum, G4int Z, G4int N, G4int pdg)
std::vector< G4double * > S3T
static G4ParticleTable * GetParticleTable()
std::vector< G4double * > B3T
G4double GetPDGMass() const
static const double gigaelectronvolt
static const double millibarn
G4double GetPTables(G4double lpP, G4double lPm, G4int PDG, G4int tZ, G4int tN)
virtual G4double GetIsoCrossSection(const G4DynamicParticle *, G4int tgZ, G4int A, const G4Isotope *iso=0, const G4Element *elm=0, const G4Material *mat=0)
G4ParticleDefinition * GetDefinition() const
G4double CalculateCrossSection(G4bool CS, G4int F, G4int I, G4int pPDG, G4int Z, G4int N, G4double pP)
static const G4double third
std::vector< G4double * > CST
G4double powA(G4double A, G4double y) const
G4double GetExchangeT(G4int tZ, G4int tN, G4int pPDG)
static const G4double pos
std::vector< G4double * > S2T