G4ChipsKaonMinusInelasticXS.cc

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00025 //
00026 //
00027 // The lust update: M.V. Kossov, CERN/ITEP(Moscow) 17-June-02
00028 // GEANT4 tag $Name: not supported by cvs2svn $
00029 //
00030 //
00031 // G4 Physics class: G4ChipsKaonMinusInelasticXS for gamma+A cross sections
00032 // Created: M.V. Kossov, CERN/ITEP(Moscow), 20-Dec-03
00033 // The last update: M.V. Kossov, CERN/ITEP (Moscow) 15-Feb-04
00034 // --------------------------------------------------------------------------------
00035 // Short description: Cross-sections extracted from the CHIPS package for 
00036 // kaon(minus)-nuclear interactions. Author: M. Kossov
00037 // -------------------------------------------------------------------------------------
00038 //
00039 
00040 #include "G4ChipsKaonMinusInelasticXS.hh"
00041 #include "G4SystemOfUnits.hh"
00042 #include "G4DynamicParticle.hh"
00043 #include "G4ParticleDefinition.hh"
00044 #include "G4KaonMinus.hh"
00045 
00046 // factory
00047 #include "G4CrossSectionFactory.hh"
00048 //
00049 G4_DECLARE_XS_FACTORY(G4ChipsKaonMinusInelasticXS);
00050 
00051 // Initialization of the
00052 
00053 G4ChipsKaonMinusInelasticXS::G4ChipsKaonMinusInelasticXS():G4VCrossSectionDataSet(Default_Name())
00054 {
00055   lastLEN=0; // Pointer to lastArray of LowEn CS
00056   lastHEN=0; // Pointer to lastArray of HighEn CS
00057   lastN=0;   // The last N of calculated nucleus
00058   lastZ=0;   // The last Z of calculated nucleus
00059   lastP=0.;  // Last used in CrossSection Momentum
00060   lastTH=0.; // Last threshold momentum
00061   lastCS=0.; // Last value of the Cross Section
00062   lastI=0;   // The last position in the DAMDB
00063   LEN = new std::vector<G4double*>;
00064   HEN = new std::vector<G4double*>;
00065 }
00066 
00067 G4ChipsKaonMinusInelasticXS::~G4ChipsKaonMinusInelasticXS()
00068 {  
00069   G4int lens=LEN->size();
00070   for(G4int i=0; i<lens; ++i) delete[] (*LEN)[i];
00071   delete LEN;
00072  
00073   G4int hens=HEN->size();
00074   for(G4int i=0; i<hens; ++i) delete[] (*HEN)[i];
00075   delete HEN; 
00076 }
00077 
00078 G4bool G4ChipsKaonMinusInelasticXS::IsIsoApplicable(const G4DynamicParticle* Pt, G4int, G4int,    
00079                                  const G4Element*,
00080                                  const G4Material*)
00081 {
00082   G4ParticleDefinition* particle = Pt->GetDefinition();
00083   if (particle ==       G4KaonMinus::KaonMinus()      ) return true;
00084   return false;
00085 }
00086 
00087 
00088 // The main member function giving the collision cross section (P is in IU, CS is in mb)
00089 // Make pMom in independent units ! (Now it is MeV)
00090 G4double G4ChipsKaonMinusInelasticXS::GetIsoCrossSection(const G4DynamicParticle* Pt, G4int tgZ, G4int A,  
00091                                                          const G4Isotope*,
00092                                                          const G4Element*,
00093                                                          const G4Material*)
00094 {
00095   G4double pMom=Pt->GetTotalMomentum();
00096   G4int tgN = A - tgZ;
00097   
00098   return GetChipsCrossSection(pMom, tgZ, tgN, -321);
00099 }
00100 
00101 G4double G4ChipsKaonMinusInelasticXS::GetChipsCrossSection(G4double pMom, G4int tgZ, G4int tgN, G4int)
00102 {
00103   static G4int j;                      // A#0f Z/N-records already tested in AMDB
00104   static std::vector <G4int>    colN;  // Vector of N for calculated nuclei (isotops)
00105   static std::vector <G4int>    colZ;  // Vector of Z for calculated nuclei (isotops)
00106   static std::vector <G4double> colP;  // Vector of last momenta for the reaction
00107   static std::vector <G4double> colTH; // Vector of energy thresholds for the reaction
00108   static std::vector <G4double> colCS; // Vector of last cross sections for the reaction
00109   // ***---*** End of the mandatory Static Definitions of the Associative Memory ***---***
00110 
00111   G4bool in=false;                     // By default the isotope must be found in the AMDB
00112   if(tgN!=lastN || tgZ!=lastZ)         // The nucleus was not the last used isotope
00113   {
00114     in = false;                        // By default the isotope haven't be found in AMDB  
00115     lastP   = 0.;                      // New momentum history (nothing to compare with)
00116     lastN   = tgN;                     // The last N of the calculated nucleus
00117     lastZ   = tgZ;                     // The last Z of the calculated nucleus
00118     lastI   = colN.size();             // Size of the Associative Memory DB in the heap
00119     j  = 0;                            // A#0f records found in DB for this projectile
00120     if(lastI) for(G4int i=0; i<lastI; i++) // AMDB exists, try to find the (Z,N) isotope
00121     {
00122       if(colN[i]==tgN && colZ[i]==tgZ) // Try the record "i" in the AMDB
00123       {
00124         lastI=i;                       // Remember the index for future fast/last use
00125         lastTH =colTH[i];              // The last THreshold (A-dependent)
00126         if(pMom<=lastTH)
00127         {
00128           return 0.;                   // Energy is below the Threshold value
00129         }
00130         lastP  =colP [i];              // Last Momentum  (A-dependent)
00131         lastCS =colCS[i];              // Last CrossSect (A-dependent)
00132         in = true;                     // This is the case when the isotop is found in DB
00133         // Momentum pMom is in IU ! @@ Units
00134         lastCS=CalculateCrossSection(-1,j,-321,lastZ,lastN,pMom); // read & update
00135         if(lastCS<=0. && pMom>lastTH)  // Correct the threshold (@@ No intermediate Zeros)
00136         {
00137           lastCS=0.;
00138           lastTH=pMom;
00139         }
00140         break;                         // Go out of the LOOP
00141       }
00142       j++;                             // Increment a#0f records found in DB
00143     }
00144     if(!in)                            // This isotope has not been calculated previously
00145     {
00147       lastCS=CalculateCrossSection(0,j,-321,lastZ,lastN,pMom); //calculate & create
00148       //if(lastCS>0.)                   // It means that the AMBD was initialized
00149       //{
00150 
00151       //        lastTH = ThresholdEnergy(tgZ, tgN); // The Threshold Energy which is now the last
00152 
00153       lastTH = 0; // WP - to be checked!!!
00154         colN.push_back(tgN);
00155         colZ.push_back(tgZ);
00156         colP.push_back(pMom);
00157         colTH.push_back(lastTH);
00158         colCS.push_back(lastCS);
00159       //} // M.K. Presence of H1 with high threshold breaks the syncronization
00160       return lastCS*millibarn;
00161     } // End of creation of the new set of parameters
00162     else
00163     {
00164       colP[lastI]=pMom;
00165       colCS[lastI]=lastCS;
00166     }
00167   } // End of parameters udate
00168   else if(pMom<=lastTH)
00169   {
00170     return 0.;                         // Momentum is below the Threshold Value -> CS=0
00171   }
00172   else                                 // It is the last used -> use the current tables
00173   {
00174     lastCS=CalculateCrossSection(1,j,-321,lastZ,lastN,pMom); // Only read and UpdateDB
00175     lastP=pMom;
00176   }
00177   return lastCS*millibarn;
00178 }
00179 
00180 // The main member function giving the gamma-A cross section (E in GeV, CS in mb)
00181 G4double G4ChipsKaonMinusInelasticXS::CalculateCrossSection(G4int F, G4int I,
00182                                         G4int, G4int targZ, G4int targN, G4double Momentum)
00183 {
00184   static const G4double THmin=27.;     // default minimum Momentum (MeV/c) Threshold
00185   static const G4double THmiG=THmin*.001; // minimum Momentum (GeV/c) Threshold
00186   static const G4double dP=10.;        // step for the LEN (Low ENergy) table MeV/c
00187   static const G4double dPG=dP*.001;   // step for the LEN (Low ENergy) table GeV/c
00188   static const G4int    nL=105;        // A#of LEN points in E (step 10 MeV/c)
00189   static const G4double Pmin=THmin+(nL-1)*dP; // minP for the HighE part with safety
00190   static const G4double Pmax=227000.;  // maxP for the HEN (High ENergy) part 227 GeV
00191   static const G4int    nH=224;        // A#of HEN points in lnE
00192   static const G4double milP=std::log(Pmin);// Low logarithm energy for the HEN part
00193   static const G4double malP=std::log(Pmax);// High logarithm energy (each 2.75 percent)
00194   static const G4double dlP=(malP-milP)/(nH-1); // Step in log energy in the HEN part
00195   static const G4double milPG=std::log(.001*Pmin);// Low logarithmEnergy for HEN part GeV/c
00196   G4double sigma=0.;
00197   if(F&&I) sigma=0.;                   // @@ *!* Fake line *!* to use F & I !!!Temporary!!!
00198   //G4double A=targN+targZ;              // A of the target
00199   if(F<=0)                             // This isotope was not the last used isotop
00200   {
00201     if(F<0)                            // This isotope was found in DAMDB =-----=> RETRIEVE
00202     {
00203       G4int sync=LEN->size();
00204       if(sync<=I) G4cerr<<"*!*G4QPiMinusNuclCS::CalcCrosSect:Sync="<<sync<<"<="<<I<<G4endl;
00205       lastLEN=(*LEN)[I];                // Pointer to prepared LowEnergy cross sections
00206       lastHEN=(*HEN)[I];                // Pointer to prepared High Energy cross sections
00207     }
00208     else                               // This isotope wasn't calculated before => CREATE
00209     {
00210       lastLEN = new G4double[nL];      // Allocate memory for the new LEN cross sections
00211       lastHEN = new G4double[nH];      // Allocate memory for the new HEN cross sections
00212       // --- Instead of making a separate function ---
00213       G4double P=THmiG;                // Table threshold in GeV/c
00214       for(G4int k=0; k<nL; k++)
00215       {
00216         lastLEN[k] = CrossSectionLin(targZ, targN, P);
00217         P+=dPG;
00218       }
00219       G4double lP=milPG;
00220       for(G4int n=0; n<nH; n++)
00221       {
00222         lastHEN[n] = CrossSectionLog(targZ, targN, lP);
00223         lP+=dlP;
00224       }
00225       // --- End of possible separate function
00226       // *** The synchronization check ***
00227       G4int sync=LEN->size();
00228       if(sync!=I)
00229       {
00230         G4cerr<<"***G4ChipsKaonMinusCS::CalcCrossSect: Sinc="<<sync<<"#"<<I<<", Z=" <<targZ
00231               <<", N="<<targN<<", F="<<F<<G4endl;
00232         //G4Exception("G4PiMinusNuclearCS::CalculateCS:","39",FatalException,"DBoverflow");
00233       }
00234       LEN->push_back(lastLEN);         // remember the Low Energy Table
00235       HEN->push_back(lastHEN);         // remember the High Energy Table
00236     } // End of creation of the new set of parameters
00237   } // End of parameters udate
00238   // =------------------= NOW the Magic Formula =--------------------------=
00239   if (Momentum<lastTH) return 0.;      // It must be already checked in the interface class
00240   else if (Momentum<Pmin)              // High Energy region
00241   {
00242     sigma=EquLinearFit(Momentum,nL,THmin,dP,lastLEN);
00243   }
00244   else if (Momentum<Pmax)              // High Energy region
00245   {
00246     G4double lP=std::log(Momentum);
00247     sigma=EquLinearFit(lP,nH,milP,dlP,lastHEN);
00248   }
00249   else                                 // UHE region (calculation, not frequent)
00250   {
00251     G4double P=0.001*Momentum;         // Approximation formula is for P in GeV/c
00252     sigma=CrossSectionFormula(targZ, targN, P, std::log(P));
00253   }
00254   if(sigma<0.) return 0.;
00255   return sigma;
00256 }
00257 
00258 // Calculation formula for piMinus-nuclear inelastic cross-section (mb) (P in GeV/c)
00259 G4double G4ChipsKaonMinusInelasticXS::CrossSectionLin(G4int tZ, G4int tN, G4double P)
00260 {
00261   G4double lP=std::log(P);
00262   return CrossSectionFormula(tZ, tN, P, lP);
00263 }
00264 
00265 // Calculation formula for piMinus-nuclear inelastic cross-section (mb) log(P in GeV/c)
00266 G4double G4ChipsKaonMinusInelasticXS::CrossSectionLog(G4int tZ, G4int tN, G4double lP)
00267 {
00268   G4double P=std::exp(lP);
00269   return CrossSectionFormula(tZ, tN, P, lP);
00270 }
00271 // Calculation formula for piMinus-nuclear inelastic cross-section (mb) log(P in GeV/c)
00272 G4double G4ChipsKaonMinusInelasticXS::CrossSectionFormula(G4int tZ, G4int tN,
00273                                                               G4double P, G4double lP)
00274 {
00275   G4double sigma=0.;
00276   if(tZ==1 && !tN)                        // PiMin-Proton interaction from G4QuasiElRatios
00277   {
00278     G4double ld=lP-3.5;
00279     G4double ld2=ld*ld;
00280     G4double p2=P*P;
00281     G4double p4=p2*p2;
00282     G4double sp=std::sqrt(P);
00283     G4double psp=P*sp;
00284     G4double lm=P-.39;
00285     G4double md=lm*lm+.000156;
00286     G4double lh=P-1.;
00287     G4double hd=lh*lh+.0156;
00288     G4double El=(.0557*ld2+2.23)/(1.-.7/sp+.075/p4);
00289     G4double To=(.3*ld2+19.5)/(1.-.21/sp+.52/p4);
00290     sigma=8.8/psp+(To-El)+.002/md+.15/hd;
00291   }
00292   else if(tZ==1 && tN==1)                  // kmp_tot
00293   {
00294     G4double p2=P*P;
00295     G4double dX=lP-3.7;
00296     G4double dR=P-.94;
00297     G4double sp=std::sqrt(P);
00298     sigma=(.6*dX*dX+36.)/(1.-.11/sp+.52/p2/p2)+.7/(dR*dR+.0256)+18./P/sp;
00299   }
00300   else if(tZ<97 && tN<152)                // General solution
00301   {
00302     G4double d=lP-4.2;
00303     G4double sp=std::sqrt(P);
00304     G4double p2=P*P;
00305     G4double a=tN+tZ;                       // A of the target
00306     G4double sa=std::sqrt(a);
00307     G4double al=std::log(a);
00308     G4double a2=a*a;
00309     G4double c=52.*std::exp(al*0.6)*(1.+97./a2)/(1.+9.8/a)/(1.+47./a2);
00310     G4double gg=-.2-.003*a;
00311     G4double h=.5+.07*a;
00312     G4double v=P-1.;
00313     G4double f=.6*a*sa/(1.+.00002*a2);
00314     G4double u=.125+.127*al;
00315     sigma=(c+d*d)/(1.+gg/sp+h/p2/p2)+f/(v*v+u*u)+20.*sa/P/sp;
00316   }
00317   else
00318   {
00319     G4cerr<<"-Warning-G4ChipsKMinusNuclearCroSect::CSForm:*Bad A* Z="<<tZ<<", N="<<tN<<G4endl;
00320     sigma=0.;
00321   }
00322   if(sigma<0.) return 0.;
00323   return sigma;  
00324 }
00325 
00326 G4double G4ChipsKaonMinusInelasticXS::EquLinearFit(G4double X, G4int N, G4double X0, G4double DX, G4double* Y)
00327 {
00328   if(DX<=0. || N<2)
00329     {
00330       G4cerr<<"***G4ChipsKaonMinusInelasticXS::EquLinearFit: DX="<<DX<<", N="<<N<<G4endl;
00331       return Y[0];
00332     }
00333   
00334   G4int    N2=N-2;
00335   G4double d=(X-X0)/DX;
00336   G4int         j=static_cast<int>(d);
00337   if     (j<0)  j=0;
00338   else if(j>N2) j=N2;
00339   d-=j; // excess
00340   G4double yi=Y[j];
00341   G4double sigma=yi+(Y[j+1]-yi)*d;
00342   
00343   return sigma;
00344 }

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