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G4InuclParamMomDst.cc
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25 //
26 // Author: Michael Kelsey (SLAC)
27 // Date: 7 March 2013
28 //
29 // Description: intermediate base class for INUCL parametrizations of
30 // final-state momentum distributions in Bertini-style cascade
31 //
32 // 20130308 M. Kelsey -- Move PQ,PR calculation to G4InuclSpecialFunctions.
33 // 20130924 M. Kelsey -- Replace std::pow with G4Pow::powN() for CPU speed
34 
35 #include "G4InuclParamMomDst.hh"
37 #include "G4InuclParticleNames.hh"
38 #include "G4Pow.hh"
39 #include "Randomize.hh"
40 
41 using namespace G4InuclSpecialFunctions;
42 using namespace G4InuclParticleNames;
43 
44 
45 // Use coefficients in power expansion of random fraction
46 
47 G4double
48 G4InuclParamMomDst::GetMomentum(G4int ptype, const G4double& ekin) const {
49  if (verboseLevel>3) {
50  G4cout << theName << "::GetMomentum: ptype " << ptype << " ekin " << ekin
51  << G4endl;
52  }
53 
54  G4int JK = (ptype==pro || ptype==neu) ? 0 : 1; // nucleon vs. other
55 
56  if (verboseLevel > 3) G4cout << " JK " << JK << G4endl;
57 
58  G4Pow* theG4Pow = G4Pow::GetInstance(); // For convenience
59 
60  G4double Spow = randomInuclPowers(ekin, coeffPR[JK]);
61 
62  G4double C=0., PS=0.;
63  for(G4int im = 0; im < 3; im++) {
64  C = coeffPS[JK][im];
65  PS += C * theG4Pow->powN(ekin, im);
66 
67  if (verboseLevel >3) {
68  G4cout << " im " << im << " : coeffPS[JK][im] " << C
69  << " ekin^im " << theG4Pow->powN(ekin, im) << G4endl;
70  }
71  }
72 
73  G4double PRA = PS * Spow;
74 
75  if (verboseLevel > 3)
76  G4cout << " PS " << PS << " Spow = sqrt(S)*(PR+(1-PQ)*S^4) " << Spow
77  << " PRA = PS*Spow " << PRA << G4endl;
78 
79  return std::fabs(PRA);
80 }