Geant4 Cross Reference

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Geant4/processes/hadronic/models/inclxx/incl_physics/include/G4INCLDeuteronDensity.hh

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 25 //
 26 // INCL++ intra-nuclear cascade model
 27 // Alain Boudard, CEA-Saclay, France
 28 // Joseph Cugnon, University of Liege, Belgium
 29 // Jean-Christophe David, CEA-Saclay, France
 30 // Pekka Kaitaniemi, CEA-Saclay, France, and Helsinki Institute of Physics, Finland
 31 // Sylvie Leray, CEA-Saclay, France
 32 // Davide Mancusi, CEA-Saclay, France
 33 //
 34 #define INCLXX_IN_GEANT4_MODE 1
 35 
 36 #include "globals.hh"
 37 
 38 /** \file G4INCLDeuteronDensity.hh
 39  * \brief Deuteron density in r and p according to the Paris potential.
 40  *
 41  * \date 6 March 2012
 42  * \author Davide Mancusi
 43  */
 44 
 45 #ifndef G4INCLDEUTERONDENSITY_HH_
 46 #define G4INCLDEUTERONDENSITY_HH_ 1
 47 
 48 #include "G4INCLIFunction1D.hh"
 49 
 50 namespace G4INCL {
 51 
 52   /// \brief Static class for the deuteron density
 53   namespace DeuteronDensity {
 54 
 55     /** \brief PDF for a nucleon in r space
 56      *
 57      * The distribution is normalised to 1.
 58      *
 59      * \param r distance from the deuteron centre [fm]
 60      * \return 4 * pi * r^2 * |psi|^2
 61      */
 62     G4double densityR(const G4double r);
 63 
 64     /** \brief First derivative of the r-space density function
 65      *
 66      * \param r distance from the deuteron centre [fm]
 67      * \return d|psi|^2/dr
 68      */
 69     G4double derivDensityR(const G4double r);
 70 
 71     /** \brief PDF for a nucleon in p space
 72      *
 73      * The distribution is normalised to 1.
 74      *
 75      * \param p nucleon momentum [MeV/c]
 76      * \return 4 * pi * p^2 * d|psi|^2/dp
 77      */
 78     G4double densityP(const G4double p);
 79 
 80     G4double wavefunctionR(const G4int l, const G4double r);
 81     G4double wavefunctionP(const G4int l, const G4double p);
 82     G4double derivWavefunctionR(const G4int l, const G4double r);
 83 
 84   }
 85 
 86 }
 87 
 88 #endif // G4INCLDEUTERONDENSITY_HH_
 89