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Toolkit for the simulation of the passage of particles through matter
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G4INCLCrossSections.hh
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25//
26// INCL++ intra-nuclear cascade model
27// Pekka Kaitaniemi, CEA and Helsinki Institute of Physics
28// Davide Mancusi, CEA
29// Alain Boudard, CEA
30// Sylvie Leray, CEA
31// Joseph Cugnon, University of Liege
32//
33// INCL++ revision: v5.1.8
34//
35#define INCLXX_IN_GEANT4_MODE 1
36
37#include "globals.hh"
38
39#ifndef G4INCLCrossSections_hh
40#define G4INCLCrossSections_hh 1
41
42#include "G4INCLParticle.hh"
43#include "G4INCLIAvatar.hh"
44#include "G4INCLIChannel.hh"
45
46namespace G4INCL {
48 public:
49 static G4double elastic(Particle const * const p1, Particle const * const p2);
50 static G4double total(Particle const * const p1, Particle const * const p2);
51
52 static G4double pionNucleon(Particle const * const p1, Particle const * const p2);
53
54 static G4double recombination(Particle const * const p1, Particle const * const p2);
55 static G4double deltaProduction(Particle const * const p1, Particle const * const p2);
56 /** \brief Calculate the slope of the NN DDXS.
57 *
58 * \param energyCM energy in the CM frame, in MeV
59 * \param iso total isospin of the system
60 *
61 * \return the slope of the angular distribution
62 */
64
65 /** \brief Compute the "interaction distance".
66 *
67 * Defined on the basis of the average value of the N-N cross sections at
68 * the given kinetic energy.
69 *
70 * \return the interaction distance
71 */
72 static G4double interactionDistanceNN(const G4double projectileKineticEnergy);
73
74 /** \brief Compute the "interaction distance".
75 *
76 * Defined on the basis of the average value of the pi-N cross sections at
77 * the given kinetic energy.
78 *
79 * \return the interaction distance
80 */
81 static G4double interactionDistancePiN(const G4double projectileKineticEnergy);
82
83 /** \brief The interaction distance for nucleons at 1 GeV.
84 *
85 * Used to determine the universe radius at any energy.
86 */
89 return answer;
90 }
91
92 /** \brief The interaction distance for pions at 1 GeV.
93 *
94 * Used to determine the universe radius at any energy.
95 */
98 return answer;
99 }
100
101 private:
102 static G4double elasticNNHighEnergy(const G4double momentum);
103 static G4double elasticProtonNeutron(const G4double momentum);
104 static G4double elasticProtonProtonOrNeutronNeutron(const G4double momentum);
105 static G4double elasticNN(Particle const * const p1, Particle const * const p2);
106 static G4double elasticNNLegacy(Particle const * const p1, Particle const * const p2);
107
108 static G4double deltaProduction(const G4int isospin, const G4double pCM);
109
110 static G4double spnPiPlusPHE(const G4double x);
111 static G4double spnPiMinusPHE(const G4double x);
112
113 protected:
116
117 };
118}
119
120#endif
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
static G4double elastic(Particle const *const p1, Particle const *const p2)
static G4double interactionDistancePiN(const G4double projectileKineticEnergy)
Compute the "interaction distance".
static G4double deltaProduction(Particle const *const p1, Particle const *const p2)
static G4double interactionDistancePiN1GeV()
The interaction distance for pions at 1 GeV.
static G4double calculateNNDiffCrossSection(G4double energyCM, G4int iso)
Calculate the slope of the NN DDXS.
static G4double recombination(Particle const *const p1, Particle const *const p2)
static G4double total(Particle const *const p1, Particle const *const p2)
static G4double interactionDistanceNN1GeV()
The interaction distance for nucleons at 1 GeV.
static G4double pionNucleon(Particle const *const p1, Particle const *const p2)
static G4double interactionDistanceNN(const G4double projectileKineticEnergy)
Compute the "interaction distance".