Geant4-11
Public Member Functions | Static Public Member Functions | Protected Attributes | Private Member Functions | Private Attributes
G4ChipsKaonMinusInelasticXS Class Reference

#include <G4ChipsKaonMinusInelasticXS.hh>

Inheritance diagram for G4ChipsKaonMinusInelasticXS:
G4VCrossSectionDataSet

Public Member Functions

virtual void BuildPhysicsTable (const G4ParticleDefinition &)
 
G4double ComputeCrossSection (const G4DynamicParticle *, const G4Element *, const G4Material *mat=nullptr)
 
virtual void CrossSectionDescription (std::ostream &) const
 
virtual void DumpPhysicsTable (const G4ParticleDefinition &)
 
bool ForAllAtomsAndEnergies () const
 
 G4ChipsKaonMinusInelasticXS ()
 
virtual G4double GetChipsCrossSection (G4double momentum, G4int Z, G4int N, G4int pdg)
 
G4double GetCrossSection (const G4DynamicParticle *, const G4Element *, const G4Material *mat=nullptr)
 
virtual G4double GetElementCrossSection (const G4DynamicParticle *, G4int Z, const G4Material *mat=nullptr)
 
virtual G4double GetIsoCrossSection (const G4DynamicParticle *, G4int tgZ, G4int A, const G4Isotope *iso=0, const G4Element *elm=0, const G4Material *mat=0)
 
G4double GetMaxKinEnergy () const
 
G4double GetMinKinEnergy () const
 
const G4StringGetName () const
 
virtual G4int GetVerboseLevel () const
 
virtual G4bool IsElementApplicable (const G4DynamicParticle *, G4int Z, const G4Material *mat=nullptr)
 
virtual G4bool IsIsoApplicable (const G4DynamicParticle *Pt, G4int Z, G4int A, const G4Element *elm, const G4Material *mat)
 
virtual const G4IsotopeSelectIsotope (const G4Element *, G4double kinEnergy, G4double logE)
 
void SetForAllAtomsAndEnergies (G4bool val)
 
void SetMaxKinEnergy (G4double value)
 
void SetMinKinEnergy (G4double value)
 
void SetName (const G4String &nam)
 
virtual void SetVerboseLevel (G4int value)
 
 ~G4ChipsKaonMinusInelasticXS ()
 

Static Public Member Functions

static const char * Default_Name ()
 

Protected Attributes

G4String name
 
G4int verboseLevel
 

Private Member Functions

G4double CalculateCrossSection (G4int F, G4int I, G4int PDG, G4int Z, G4int N, G4double Momentum)
 
G4double CrossSectionFormula (G4int targZ, G4int targN, G4double P, G4double lP)
 
G4double CrossSectionLin (G4int targZ, G4int targN, G4double P)
 
G4double CrossSectionLog (G4int targZ, G4int targN, G4double lP)
 
G4double EquLinearFit (G4double X, G4int N, G4double X0, G4double DX, G4double *Y)
 

Private Attributes

std::vector< G4doublecolCS
 
std::vector< G4intcolN
 
std::vector< G4doublecolP
 
std::vector< G4doublecolTH
 
std::vector< G4intcolZ
 
std::vector< G4double * > * HEN
 
G4bool isForAllAtomsAndEnergies
 
G4int j =0
 
G4double lastCS
 
G4doublelastHEN
 
G4int lastI
 
G4doublelastLEN
 
G4int lastN
 
G4double lastP
 
G4double lastTH
 
G4int lastZ
 
std::vector< G4double * > * LEN
 
G4double maxKinEnergy
 
G4double minKinEnergy
 
G4CrossSectionDataSetRegistryregistry
 

Detailed Description

Definition at line 45 of file G4ChipsKaonMinusInelasticXS.hh.

Constructor & Destructor Documentation

◆ G4ChipsKaonMinusInelasticXS()

G4ChipsKaonMinusInelasticXS::G4ChipsKaonMinusInelasticXS ( )

Definition at line 66 of file G4ChipsKaonMinusInelasticXS.cc.

67{
68 lastLEN=0; // Pointer to lastArray of LowEn CS
69 lastHEN=0; // Pointer to lastArray of HighEn CS
70 lastN=0; // The last N of calculated nucleus
71 lastZ=0; // The last Z of calculated nucleus
72 lastP=0.; // Last used in CrossSection Momentum
73 lastTH=0.; // Last threshold momentum
74 lastCS=0.; // Last value of the Cross Section
75 lastI=0; // The last position in the DAMDB
76 LEN = new std::vector<G4double*>;
77 HEN = new std::vector<G4double*>;
78}
G4VCrossSectionDataSet(const G4String &nam="")

References HEN, lastCS, lastHEN, lastI, lastLEN, lastN, lastP, lastTH, lastZ, and LEN.

◆ ~G4ChipsKaonMinusInelasticXS()

G4ChipsKaonMinusInelasticXS::~G4ChipsKaonMinusInelasticXS ( )

Definition at line 80 of file G4ChipsKaonMinusInelasticXS.cc.

81{
82 G4int lens=LEN->size();
83 for(G4int i=0; i<lens; ++i) delete[] (*LEN)[i];
84 delete LEN;
85
86 G4int hens=HEN->size();
87 for(G4int i=0; i<hens; ++i) delete[] (*HEN)[i];
88 delete HEN;
89}
int G4int
Definition: G4Types.hh:85

References HEN, and LEN.

Member Function Documentation

◆ BuildPhysicsTable()

void G4VCrossSectionDataSet::BuildPhysicsTable ( const G4ParticleDefinition )
virtualinherited

◆ CalculateCrossSection()

G4double G4ChipsKaonMinusInelasticXS::CalculateCrossSection ( G4int  F,
G4int  I,
G4int  PDG,
G4int  Z,
G4int  N,
G4double  Momentum 
)
private

Definition at line 193 of file G4ChipsKaonMinusInelasticXS.cc.

195{
196 G4double sigma=0.;
197 if(F&&I) sigma=0.; // @@ *!* Fake line *!* to use F & I !!!Temporary!!!
198 //G4double A=targN+targZ; // A of the target
199 if(F<=0) // This isotope was not the last used isotop
200 {
201 if(F<0) // This isotope was found in DAMDB =-----=> RETRIEVE
202 {
203 G4int sync=LEN->size();
204 if(sync<=I) G4cerr<<"*!*G4QPiMinusNuclCS::CalcCrosSect:Sync="<<sync<<"<="<<I<<G4endl;
205 lastLEN=(*LEN)[I]; // Pointer to prepared LowEnergy cross sections
206 lastHEN=(*HEN)[I]; // Pointer to prepared High Energy cross sections
207 }
208 else // This isotope wasn't calculated before => CREATE
209 {
210 lastLEN = new G4double[nL]; // Allocate memory for the new LEN cross sections
211 lastHEN = new G4double[nH]; // Allocate memory for the new HEN cross sections
212 // --- Instead of making a separate function ---
213 G4double P=THmiG; // Table threshold in GeV/c
214 for(G4int k=0; k<nL; k++)
215 {
216 lastLEN[k] = CrossSectionLin(targZ, targN, P);
217 P+=dPG;
218 }
219 G4double lP=milPG;
220 for(G4int n=0; n<nH; n++)
221 {
222 lastHEN[n] = CrossSectionLog(targZ, targN, lP);
223 lP+=dlP;
224 }
225 // --- End of possible separate function
226 // *** The synchronization check ***
227 G4int sync=LEN->size();
228 if(sync!=I)
229 {
230 G4cerr<<"***G4ChipsKaonMinusCS::CalcCrossSect: Sinc="<<sync<<"#"<<I<<", Z=" <<targZ
231 <<", N="<<targN<<", F="<<F<<G4endl;
232 //G4Exception("G4PiMinusNuclearCS::CalculateCS:","39",FatalException,"DBoverflow");
233 }
234 LEN->push_back(lastLEN); // remember the Low Energy Table
235 HEN->push_back(lastHEN); // remember the High Energy Table
236 } // End of creation of the new set of parameters
237 } // End of parameters udate
238 // =------------------= NOW the Magic Formula =--------------------------=
239 if (Momentum<lastTH) return 0.; // It must be already checked in the interface class
240 else if (Momentum<Pmin) // High Energy region
241 {
242 sigma=EquLinearFit(Momentum,nL,THmin,dP,lastLEN);
243 }
244 else if (Momentum<Pmax) // High Energy region
245 {
246 G4double lP=std::log(Momentum);
247 sigma=EquLinearFit(lP,nH,milP,dlP,lastHEN);
248 }
249 else // UHE region (calculation, not frequent)
250 {
251 G4double P=0.001*Momentum; // Approximation formula is for P in GeV/c
252 sigma=CrossSectionFormula(targZ, targN, P, std::log(P));
253 }
254 if(sigma<0.) return 0.;
255 return sigma;
256}
static const G4int nL
static const G4double THmin
static const G4int nH
double G4double
Definition: G4Types.hh:83
G4GLOB_DLL std::ostream G4cerr
#define G4endl
Definition: G4ios.hh:57
G4double CrossSectionLin(G4int targZ, G4int targN, G4double P)
G4double CrossSectionFormula(G4int targZ, G4int targN, G4double P, G4double lP)
G4double CrossSectionLog(G4int targZ, G4int targN, G4double lP)
G4double EquLinearFit(G4double X, G4int N, G4double X0, G4double DX, G4double *Y)
static double P[]

References CrossSectionFormula(), CrossSectionLin(), CrossSectionLog(), anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::dlP, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::dP, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::dPG, EquLinearFit(), G4cerr, G4endl, HEN, lastHEN, lastLEN, lastTH, LEN, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::milP, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::milPG, CLHEP::detail::n, nH, nL, P, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::Pmax, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::Pmin, anonymous_namespace{G4ChipsKaonMinusInelasticXS.cc}::THmiG, and THmin.

Referenced by GetChipsCrossSection().

◆ ComputeCrossSection()

G4double G4VCrossSectionDataSet::ComputeCrossSection ( const G4DynamicParticle part,
const G4Element elm,
const G4Material mat = nullptr 
)
inherited

Definition at line 81 of file G4VCrossSectionDataSet.cc.

84{
85 G4int Z = elm->GetZasInt();
86
87 if (IsElementApplicable(part, Z, mat)) {
88 return GetElementCrossSection(part, Z, mat);
89 }
90
91 // isotope-wise cross section making sum over available
92 // isotope cross sections, which may be incomplete, so
93 // the result is corrected
94 size_t nIso = elm->GetNumberOfIsotopes();
95 G4double fact = 0.0;
96 G4double xsec = 0.0;
97
98 // user-defined isotope abundances
99 const G4IsotopeVector* isoVector = elm->GetIsotopeVector();
100 const G4double* abundVector = elm->GetRelativeAbundanceVector();
101
102 for (size_t j=0; j<nIso; ++j) {
103 const G4Isotope* iso = (*isoVector)[j];
104 G4int A = iso->GetN();
105 if(abundVector[j] > 0.0 && IsIsoApplicable(part, Z, A, elm, mat)) {
106 fact += abundVector[j];
107 xsec += abundVector[j]*GetIsoCrossSection(part, Z, A, iso, elm, mat);
108 }
109 }
110 return (fact > 0.0) ? xsec/fact : 0.0;
111}
std::vector< G4Isotope * > G4IsotopeVector
const G4int Z[17]
const G4double A[17]
G4double * GetRelativeAbundanceVector() const
Definition: G4Element.hh:167
size_t GetNumberOfIsotopes() const
Definition: G4Element.hh:159
G4int GetZasInt() const
Definition: G4Element.hh:132
G4IsotopeVector * GetIsotopeVector() const
Definition: G4Element.hh:163
G4int GetN() const
Definition: G4Isotope.hh:93
virtual G4double GetElementCrossSection(const G4DynamicParticle *, G4int Z, const G4Material *mat=nullptr)
virtual G4double GetIsoCrossSection(const G4DynamicParticle *, G4int Z, G4int A, const G4Isotope *iso=nullptr, const G4Element *elm=nullptr, const G4Material *mat=nullptr)
virtual G4bool IsIsoApplicable(const G4DynamicParticle *, G4int Z, G4int A, const G4Element *elm=nullptr, const G4Material *mat=nullptr)
virtual G4bool IsElementApplicable(const G4DynamicParticle *, G4int Z, const G4Material *mat=nullptr)

References A, G4VCrossSectionDataSet::GetElementCrossSection(), G4VCrossSectionDataSet::GetIsoCrossSection(), G4Element::GetIsotopeVector(), G4Isotope::GetN(), G4Element::GetNumberOfIsotopes(), G4Element::GetRelativeAbundanceVector(), G4Element::GetZasInt(), G4VCrossSectionDataSet::IsElementApplicable(), G4VCrossSectionDataSet::IsIsoApplicable(), and Z.

Referenced by G4VCrossSectionDataSet::GetCrossSection().

◆ CrossSectionDescription()

void G4ChipsKaonMinusInelasticXS::CrossSectionDescription ( std::ostream &  outFile) const
virtual

Reimplemented from G4VCrossSectionDataSet.

Definition at line 92 of file G4ChipsKaonMinusInelasticXS.cc.

93{
94 outFile << "G4ChipsKaonMinusInelasticXS provides the inelastic cross\n"
95 << "section for K- nucleus scattering as a function of incident\n"
96 << "momentum. The cross section is calculated using M. Kossov's\n"
97 << "CHIPS parameterization of cross section data.\n";
98}

◆ CrossSectionFormula()

G4double G4ChipsKaonMinusInelasticXS::CrossSectionFormula ( G4int  targZ,
G4int  targN,
G4double  P,
G4double  lP 
)
private

Definition at line 272 of file G4ChipsKaonMinusInelasticXS.cc.

274{
275 G4double sigma=0.;
276 if(tZ==1 && !tN) // PiMin-Proton interaction from G4QuasiElRatios
277 {
278 G4double ld=lP-3.5;
279 G4double ld2=ld*ld;
280 G4double p2=P*P;
281 G4double p4=p2*p2;
282 G4double sp=std::sqrt(P);
283 G4double psp=P*sp;
284 G4double lm=P-.39;
285 G4double md=lm*lm+.000156;
286 G4double lh=P-1.;
287 G4double hd=lh*lh+.0156;
288 G4double El=(.0557*ld2+2.23)/(1.-.7/sp+.075/p4);
289 G4double To=(.3*ld2+19.5)/(1.-.21/sp+.52/p4);
290 sigma=8.8/psp+(To-El)+.002/md+.15/hd;
291 }
292 else if(tZ==1 && tN==1) // kmp_tot
293 {
294 G4double p2=P*P;
295 G4double dX=lP-3.7;
296 G4double dR=P-.94;
297 G4double sp=std::sqrt(P);
298 sigma=(.6*dX*dX+36.)/(1.-.11/sp+.52/p2/p2)+.7/(dR*dR+.0256)+18./P/sp;
299 }
300 else if(tZ<97 && tN<152) // General solution
301 {
302 G4double d=lP-4.2;
303 G4double sp=std::sqrt(P);
304 G4double p2=P*P;
305 G4double a=tN+tZ; // A of the target
306 G4double sa=std::sqrt(a);
307 G4double al=std::log(a);
308 G4double a2=a*a;
309 G4double c=52.*std::exp(al*0.6)*(1.+97./a2)/(1.+9.8/a)/(1.+47./a2);
310 G4double gg=-.2-.003*a;
311 G4double h=.5+.07*a;
312 G4double v=P-1.;
313 G4double f=.6*a*sa/(1.+.00002*a2);
314 G4double u=.125+.127*al;
315 sigma=(c+d*d)/(1.+gg/sp+h/p2/p2)+f/(v*v+u*u)+20.*sa/P/sp;
316 }
317 else
318 {
319 G4cerr<<"-Warning-G4ChipsKMinusNuclearCroSect::CSForm:*Bad A* Z="<<tZ<<", N="<<tN<<G4endl;
320 sigma=0.;
321 }
322 if(sigma<0.) return 0.;
323 return sigma;
324}
const G4double al
Mysterious coefficient that appears in the wavefunctions.

References G4INCL::DeuteronDensity::anonymous_namespace{G4INCLDeuteronDensity.cc}::al, G4cerr, G4endl, P, and G4InuclParticleNames::sp.

Referenced by CalculateCrossSection(), CrossSectionLin(), and CrossSectionLog().

◆ CrossSectionLin()

G4double G4ChipsKaonMinusInelasticXS::CrossSectionLin ( G4int  targZ,
G4int  targN,
G4double  P 
)
private

Definition at line 259 of file G4ChipsKaonMinusInelasticXS.cc.

260{
261 G4double lP=std::log(P);
262 return CrossSectionFormula(tZ, tN, P, lP);
263}

References CrossSectionFormula(), and P.

Referenced by CalculateCrossSection().

◆ CrossSectionLog()

G4double G4ChipsKaonMinusInelasticXS::CrossSectionLog ( G4int  targZ,
G4int  targN,
G4double  lP 
)
private

Definition at line 266 of file G4ChipsKaonMinusInelasticXS.cc.

267{
268 G4double P=std::exp(lP);
269 return CrossSectionFormula(tZ, tN, P, lP);
270}

References CrossSectionFormula(), and P.

Referenced by CalculateCrossSection().

◆ Default_Name()

static const char * G4ChipsKaonMinusInelasticXS::Default_Name ( )
inlinestatic

◆ DumpPhysicsTable()

void G4VCrossSectionDataSet::DumpPhysicsTable ( const G4ParticleDefinition )
virtualinherited

◆ EquLinearFit()

G4double G4ChipsKaonMinusInelasticXS::EquLinearFit ( G4double  X,
G4int  N,
G4double  X0,
G4double  DX,
G4double Y 
)
private

Definition at line 326 of file G4ChipsKaonMinusInelasticXS.cc.

327{
328 if(DX<=0. || N<2)
329 {
330 G4cerr<<"***G4ChipsKaonMinusInelasticXS::EquLinearFit: DX="<<DX<<", N="<<N<<G4endl;
331 return Y[0];
332 }
333
334 G4int N2=N-2;
335 G4double d=(X-X0)/DX;
336 G4int jj=static_cast<int>(d);
337 if (jj<0) jj=0;
338 else if(jj>N2) jj=N2;
339 d-=jj; // excess
340 G4double yi=Y[jj];
341 G4double sigma=yi+(Y[jj+1]-yi)*d;
342
343 return sigma;
344}
G4double Y(G4double density)

References G4cerr, G4endl, and Y().

Referenced by CalculateCrossSection().

◆ ForAllAtomsAndEnergies()

bool G4VCrossSectionDataSet::ForAllAtomsAndEnergies ( ) const
inlineinherited

◆ GetChipsCrossSection()

G4double G4ChipsKaonMinusInelasticXS::GetChipsCrossSection ( G4double  momentum,
G4int  Z,
G4int  N,
G4int  pdg 
)
virtual

!The slave functions must provide cross-sections in millibarns (mb) !! (not in IU)

Definition at line 121 of file G4ChipsKaonMinusInelasticXS.cc.

122{
123 G4bool in=false; // By default the isotope must be found in the AMDB
124 if(tgN!=lastN || tgZ!=lastZ) // The nucleus was not the last used isotope
125 {
126 in = false; // By default the isotope haven't be found in AMDB
127 lastP = 0.; // New momentum history (nothing to compare with)
128 lastN = tgN; // The last N of the calculated nucleus
129 lastZ = tgZ; // The last Z of the calculated nucleus
130 lastI = colN.size(); // Size of the Associative Memory DB in the heap
131 j = 0; // A#0f records found in DB for this projectile
132 if(lastI) for(G4int i=0; i<lastI; i++) // AMDB exists, try to find the (Z,N) isotope
133 {
134 if(colN[i]==tgN && colZ[i]==tgZ) // Try the record "i" in the AMDB
135 {
136 lastI=i; // Remember the index for future fast/last use
137 lastTH =colTH[i]; // The last THreshold (A-dependent)
138 if(pMom<=lastTH)
139 {
140 return 0.; // Energy is below the Threshold value
141 }
142 lastP =colP [i]; // Last Momentum (A-dependent)
143 lastCS =colCS[i]; // Last CrossSect (A-dependent)
144 in = true; // This is the case when the isotop is found in DB
145 // Momentum pMom is in IU ! @@ Units
146 lastCS=CalculateCrossSection(-1,j,-321,lastZ,lastN,pMom); // read & update
147 if(lastCS<=0. && pMom>lastTH) // Correct the threshold (@@ No intermediate Zeros)
148 {
149 lastCS=0.;
150 lastTH=pMom;
151 }
152 break; // Go out of the LOOP
153 }
154 j++; // Increment a#0f records found in DB
155 }
156 if(!in) // This isotope has not been calculated previously
157 {
159 lastCS=CalculateCrossSection(0,j,-321,lastZ,lastN,pMom); //calculate & create
160 //if(lastCS>0.) // It means that the AMBD was initialized
161 //{
162
163 // lastTH = ThresholdEnergy(tgZ, tgN); // The Threshold Energy which is now the last
164
165 lastTH = 0; // WP - to be checked!!!
166 colN.push_back(tgN);
167 colZ.push_back(tgZ);
168 colP.push_back(pMom);
169 colTH.push_back(lastTH);
170 colCS.push_back(lastCS);
171 //} // M.K. Presence of H1 with high threshold breaks the syncronization
172 return lastCS*millibarn;
173 } // End of creation of the new set of parameters
174 else
175 {
176 colP[lastI]=pMom;
178 }
179 } // End of parameters udate
180 else if(pMom<=lastTH)
181 {
182 return 0.; // Momentum is below the Threshold Value -> CS=0
183 }
184 else // It is the last used -> use the current tables
185 {
186 lastCS=CalculateCrossSection(1,j,-321,lastZ,lastN,pMom); // Only read and UpdateDB
187 lastP=pMom;
188 }
189 return lastCS*millibarn;
190}
static constexpr double millibarn
Definition: G4SIunits.hh:86
bool G4bool
Definition: G4Types.hh:86
G4double CalculateCrossSection(G4int F, G4int I, G4int PDG, G4int Z, G4int N, G4double Momentum)

References CalculateCrossSection(), colCS, colN, colP, colTH, colZ, j, lastCS, lastI, lastN, lastP, lastTH, lastZ, and millibarn.

Referenced by G4ChipsKaonZeroInelasticXS::GetChipsCrossSection(), G4ChipsComponentXS::GetInelasticElementCrossSection(), GetIsoCrossSection(), and G4ChipsComponentXS::GetTotalElementCrossSection().

◆ GetCrossSection()

G4double G4VCrossSectionDataSet::GetCrossSection ( const G4DynamicParticle dp,
const G4Element elm,
const G4Material mat = nullptr 
)
inlineinherited

Definition at line 187 of file G4VCrossSectionDataSet.hh.

190{
191 return ComputeCrossSection(dp, elm, mat);
192}
G4double ComputeCrossSection(const G4DynamicParticle *, const G4Element *, const G4Material *mat=nullptr)

References G4VCrossSectionDataSet::ComputeCrossSection().

◆ GetElementCrossSection()

G4double G4VCrossSectionDataSet::GetElementCrossSection ( const G4DynamicParticle dynPart,
G4int  Z,
const G4Material mat = nullptr 
)
virtualinherited

Reimplemented in G4EMDissociationCrossSection, G4IonsShenCrossSection, G4NeutrinoElectronCcXsc, G4NeutrinoElectronNcXsc, G4NeutrinoElectronTotXsc, G4NeutronElectronElXsc, G4PhotoNuclearCrossSection, G4NeutronCaptureXS, G4NeutronElasticXS, G4NeutronInelasticXS, G4ElectroNuclearCrossSection, G4BGGNucleonElasticXS, G4BGGPionElasticXS, G4BGGPionInelasticXS, G4BGGNucleonInelasticXS, G4CrossSectionElastic, G4CrossSectionInelastic, G4GammaNuclearXS, G4ParticleInelasticXS, G4ZeroXS, G4NucleonNuclearCrossSection, G4MuNeutrinoNucleusTotXsc, and G4KokoulinMuonNuclearXS.

Definition at line 114 of file G4VCrossSectionDataSet.cc.

117{
119 ed << "GetElementCrossSection is not implemented in <" << name << ">\n"
120 << "Particle: " << dynPart->GetDefinition()->GetParticleName()
121 << " Ekin(MeV)= " << dynPart->GetKineticEnergy()/MeV;
122 if(mat) { ed << " material: " << mat->GetName(); }
123 ed << " target Z= " << Z << G4endl;
124 G4Exception("G4VCrossSectionDataSet::GetElementCrossSection", "had001",
125 FatalException, ed);
126 return 0.0;
127}
@ FatalException
void G4Exception(const char *originOfException, const char *exceptionCode, G4ExceptionSeverity severity, const char *description)
Definition: G4Exception.cc:35
std::ostringstream G4ExceptionDescription
Definition: G4Exception.hh:40
static constexpr double MeV
Definition: G4SIunits.hh:200
G4ParticleDefinition * GetDefinition() const
G4double GetKineticEnergy() const
const G4String & GetName() const
Definition: G4Material.hh:173
const G4String & GetParticleName() const

References FatalException, G4endl, G4Exception(), G4DynamicParticle::GetDefinition(), G4DynamicParticle::GetKineticEnergy(), G4Material::GetName(), G4ParticleDefinition::GetParticleName(), MeV, G4VCrossSectionDataSet::name, and Z.

Referenced by G4QMDReaction::ApplyYourself(), G4VCrossSectionDataSet::ComputeCrossSection(), G4GammaNuclearXS::GetElementCrossSection(), G4GammaNuclearXS::GetIsoCrossSection(), and G4GammaNuclearXS::Initialise().

◆ GetIsoCrossSection()

G4double G4ChipsKaonMinusInelasticXS::GetIsoCrossSection ( const G4DynamicParticle Pt,
G4int  tgZ,
G4int  A,
const G4Isotope iso = 0,
const G4Element elm = 0,
const G4Material mat = 0 
)
virtual

Reimplemented from G4VCrossSectionDataSet.

Definition at line 110 of file G4ChipsKaonMinusInelasticXS.cc.

114{
115 G4double pMom=Pt->GetTotalMomentum();
116 G4int tgN = A - tgZ;
117
118 return GetChipsCrossSection(pMom, tgZ, tgN, -321);
119}
virtual G4double GetChipsCrossSection(G4double momentum, G4int Z, G4int N, G4int pdg)
G4double GetTotalMomentum() const

References A, GetChipsCrossSection(), and G4DynamicParticle::GetTotalMomentum().

◆ GetMaxKinEnergy()

G4double G4VCrossSectionDataSet::GetMaxKinEnergy ( ) const
inlineinherited

◆ GetMinKinEnergy()

G4double G4VCrossSectionDataSet::GetMinKinEnergy ( ) const
inlineinherited

◆ GetName()

const G4String & G4VCrossSectionDataSet::GetName ( ) const
inlineinherited

◆ GetVerboseLevel()

G4int G4VCrossSectionDataSet::GetVerboseLevel ( ) const
inlinevirtualinherited

◆ IsElementApplicable()

G4bool G4VCrossSectionDataSet::IsElementApplicable ( const G4DynamicParticle ,
G4int  Z,
const G4Material mat = nullptr 
)
virtualinherited

◆ IsIsoApplicable()

G4bool G4ChipsKaonMinusInelasticXS::IsIsoApplicable ( const G4DynamicParticle Pt,
G4int  Z,
G4int  A,
const G4Element elm,
const G4Material mat 
)
virtual

Reimplemented from G4VCrossSectionDataSet.

Definition at line 100 of file G4ChipsKaonMinusInelasticXS.cc.

103{
104 return true;
105}

◆ SelectIsotope()

const G4Isotope * G4VCrossSectionDataSet::SelectIsotope ( const G4Element anElement,
G4double  kinEnergy,
G4double  logE 
)
virtualinherited

Reimplemented in G4GammaNuclearXS, G4NeutronCaptureXS, G4NeutronElasticXS, G4NeutronInelasticXS, and G4ParticleInelasticXS.

Definition at line 149 of file G4VCrossSectionDataSet.cc.

151{
152 size_t nIso = anElement->GetNumberOfIsotopes();
153 const G4Isotope* iso = anElement->GetIsotope(0);
154
155 // more than 1 isotope
156 if(1 < nIso) {
157 const G4double* abundVector = anElement->GetRelativeAbundanceVector();
158 G4double sum = 0.0;
160 for (size_t j=0; j<nIso; ++j) {
161 sum += abundVector[j];
162 if(q <= sum) {
163 iso = anElement->GetIsotope(j);
164 break;
165 }
166 }
167 }
168 return iso;
169}
#define G4UniformRand()
Definition: Randomize.hh:52
const G4Isotope * GetIsotope(G4int iso) const
Definition: G4Element.hh:170

References G4UniformRand, G4Element::GetIsotope(), G4Element::GetNumberOfIsotopes(), and G4Element::GetRelativeAbundanceVector().

◆ SetForAllAtomsAndEnergies()

void G4VCrossSectionDataSet::SetForAllAtomsAndEnergies ( G4bool  val)
inlineinherited

◆ SetMaxKinEnergy()

void G4VCrossSectionDataSet::SetMaxKinEnergy ( G4double  value)
inlineinherited

◆ SetMinKinEnergy()

void G4VCrossSectionDataSet::SetMinKinEnergy ( G4double  value)
inlineinherited

◆ SetName()

void G4VCrossSectionDataSet::SetName ( const G4String nam)
inlineinherited

Definition at line 240 of file G4VCrossSectionDataSet.hh.

241{
242 name = nam;
243}

References G4VCrossSectionDataSet::name.

Referenced by G4ParticleHPInelasticData::G4ParticleHPInelasticData().

◆ SetVerboseLevel()

void G4VCrossSectionDataSet::SetVerboseLevel ( G4int  value)
inlinevirtualinherited

Field Documentation

◆ colCS

std::vector<G4double> G4ChipsKaonMinusInelasticXS::colCS
private

Definition at line 97 of file G4ChipsKaonMinusInelasticXS.hh.

Referenced by GetChipsCrossSection().

◆ colN

std::vector<G4int> G4ChipsKaonMinusInelasticXS::colN
private

Definition at line 93 of file G4ChipsKaonMinusInelasticXS.hh.

Referenced by GetChipsCrossSection().

◆ colP

std::vector<G4double> G4ChipsKaonMinusInelasticXS::colP
private

Definition at line 95 of file G4ChipsKaonMinusInelasticXS.hh.

Referenced by GetChipsCrossSection().

◆ colTH

std::vector<G4double> G4ChipsKaonMinusInelasticXS::colTH
private

Definition at line 96 of file G4ChipsKaonMinusInelasticXS.hh.

Referenced by GetChipsCrossSection().

◆ colZ

std::vector<G4int> G4ChipsKaonMinusInelasticXS::colZ
private

Definition at line 94 of file G4ChipsKaonMinusInelasticXS.hh.

Referenced by GetChipsCrossSection().

◆ HEN

std::vector<G4double*>* G4ChipsKaonMinusInelasticXS::HEN
private

◆ isForAllAtomsAndEnergies

G4bool G4VCrossSectionDataSet::isForAllAtomsAndEnergies
privateinherited

◆ j

G4int G4ChipsKaonMinusInelasticXS::j =0
private

Definition at line 92 of file G4ChipsKaonMinusInelasticXS.hh.

Referenced by GetChipsCrossSection().

◆ lastCS

G4double G4ChipsKaonMinusInelasticXS::lastCS
private

◆ lastHEN

G4double* G4ChipsKaonMinusInelasticXS::lastHEN
private

◆ lastI

G4int G4ChipsKaonMinusInelasticXS::lastI
private

◆ lastLEN

G4double* G4ChipsKaonMinusInelasticXS::lastLEN
private

◆ lastN

G4int G4ChipsKaonMinusInelasticXS::lastN
private

◆ lastP

G4double G4ChipsKaonMinusInelasticXS::lastP
private

◆ lastTH

G4double G4ChipsKaonMinusInelasticXS::lastTH
private

◆ lastZ

G4int G4ChipsKaonMinusInelasticXS::lastZ
private

◆ LEN

std::vector<G4double*>* G4ChipsKaonMinusInelasticXS::LEN
private

◆ maxKinEnergy

G4double G4VCrossSectionDataSet::maxKinEnergy
privateinherited

◆ minKinEnergy

G4double G4VCrossSectionDataSet::minKinEnergy
privateinherited

◆ name

G4String G4VCrossSectionDataSet::name
protectedinherited

◆ registry

G4CrossSectionDataSetRegistry* G4VCrossSectionDataSet::registry
privateinherited

◆ verboseLevel

G4int G4VCrossSectionDataSet::verboseLevel
protectedinherited

Definition at line 168 of file G4VCrossSectionDataSet.hh.

Referenced by G4BGGNucleonElasticXS::BuildPhysicsTable(), G4BGGPionElasticXS::BuildPhysicsTable(), G4BGGPionInelasticXS::BuildPhysicsTable(), G4GammaNuclearXS::BuildPhysicsTable(), G4NeutronCaptureXS::BuildPhysicsTable(), G4NeutronElasticXS::BuildPhysicsTable(), G4NeutronInelasticXS::BuildPhysicsTable(), G4ParticleInelasticXS::BuildPhysicsTable(), G4BGGNucleonInelasticXS::BuildPhysicsTable(), G4LENDCrossSection::create_used_target_map(), G4BGGNucleonElasticXS::G4BGGNucleonElasticXS(), G4BGGNucleonInelasticXS::G4BGGNucleonInelasticXS(), G4BGGPionElasticXS::G4BGGPionElasticXS(), G4BGGPionInelasticXS::G4BGGPionInelasticXS(), G4GammaNuclearXS::G4GammaNuclearXS(), G4NeutronCaptureXS::G4NeutronCaptureXS(), G4NeutronElasticXS::G4NeutronElasticXS(), G4NeutronInelasticXS::G4NeutronInelasticXS(), G4ParticleInelasticXS::G4ParticleInelasticXS(), G4NeutronCaptureXS::GetElementCrossSection(), G4NeutronElasticXS::GetElementCrossSection(), G4NeutronInelasticXS::GetElementCrossSection(), G4BGGNucleonElasticXS::GetElementCrossSection(), G4BGGPionElasticXS::GetElementCrossSection(), G4BGGPionInelasticXS::GetElementCrossSection(), G4BGGNucleonInelasticXS::GetElementCrossSection(), G4GammaNuclearXS::GetElementCrossSection(), G4ParticleInelasticXS::GetElementCrossSection(), G4BGGNucleonElasticXS::GetIsoCrossSection(), G4BGGPionElasticXS::GetIsoCrossSection(), G4BGGPionInelasticXS::GetIsoCrossSection(), G4GammaNuclearXS::GetIsoCrossSection(), G4BGGNucleonInelasticXS::GetIsoCrossSection(), G4VCrossSectionDataSet::GetVerboseLevel(), G4NeutronElasticXS::Initialise(), G4ParticleInelasticXS::IsoCrossSection(), G4NeutronCaptureXS::IsoCrossSection(), G4NeutronInelasticXS::IsoCrossSection(), G4GammaNuclearXS::RetrieveVector(), G4NeutronCaptureXS::RetrieveVector(), G4NeutronInelasticXS::RetrieveVector(), G4ParticleInelasticXS::RetrieveVector(), and G4VCrossSectionDataSet::SetVerboseLevel().


The documentation for this class was generated from the following files: