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Toolkit for the simulation of the passage of particles through matter
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G4INCLNDFHardSphere.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/** \file G4INCLNDFHardSphere.hh
40 * \brief NDF* class for the deuteron density according to the HardSphere
41 * potential.
42 *
43 * \date 16 July 2012
44 * \author Davide Mancusi
45 */
46
47#ifndef G4INCLNDFHARDSPHERE_HH_
48#define G4INCLNDFHARDSPHERE_HH_
49
50#include "G4INCLIFunction1D.hh"
53
54namespace G4INCL {
55
56 namespace NuclearDensityFunctions {
57
58 class HardSphere : public IFunction1D {
59 public:
60 HardSphere(const G4double rMax) :
61 // We let the function go up to rMax. This can be the Fermi momentum
62 // for a sphere in momentum space, or the surface radius for a
63 // hard-sphere nucleus.
64 IFunction1D(0., rMax),
65 normalisation(3./std::pow(rMax,3.))
66 {};
67
68 inline G4double operator()(const G4double x) const {
69 return x*x*normalisation;
70 }
71 protected:
73 };
74
75 }
76
77}
78
79#endif // G4INCLNDFHARDSPHERE_HH_
80
Deuteron density in r and p according to the Paris potential.
Functor for 1-dimensional mathematical functions.
double G4double
Definition: G4Types.hh:64
G4double operator()(const G4double x) const
Compute the value of the function.