Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4AdjointProton.cc
Go to the documentation of this file.
1//
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25//
26// $Id$
27//
28
29
30#include "G4AdjointProton.hh"
32#include "G4SystemOfUnits.hh"
33#include "G4ParticleTable.hh"
34
35// ######################################################################
36// ### PROTON ###
37// ######################################################################
38G4AdjointProton* G4AdjointProton::theInstance = 0;
39
41{
42 if (theInstance !=0) return theInstance;
43 const G4String name = "adj_proton";
44 // search in particle table]
46 G4ParticleDefinition* anInstance = pTable->FindParticle(name);
47 if (anInstance ==0)
48 {
49 // create particle
50 //
51 // Arguments for constructor are as follows
52 // name mass width charge
53 // 2*spin parity C-conjugation
54 // 2*Isospin 2*Isospin3 G-parity
55 // type lepton number baryon number PDG encoding
56 // stable lifetime decay table
57 // shortlived subType anti_encoding
58 // use constants in CLHEP
59 // static const double proton_mass_c2 = 938.27231 * MeV;
60
61 anInstance = new G4ParticleDefinition(
62 name, proton_mass_c2, 0.0*MeV, -eplus,
63 1, +1, 0,
64 1, +1, 0,
65 "adjoint", 0, +1, 100002212,
66 true, -1.0, NULL,
67 false, "adjoint_ion", 0,
68 0.0
69 );
70
71 // Magnetic Moment
72 G4double mN = eplus*hbar_Planck/2./(proton_mass_c2 /c_squared);
73 anInstance->SetPDGMagneticMoment( 2.792847351 * mN);
74 }
75 theInstance = reinterpret_cast<G4AdjointProton*>(anInstance);
76 return theInstance;
77}
78
80{
81 return Definition();
82}
83
85{
86 return Definition();
87}
88
89
double G4double
Definition: G4Types.hh:64
static G4AdjointProton * Definition()
static G4AdjointProton * AdjointProtonDefinition()
static G4AdjointProton * AdjointProton()
void SetPDGMagneticMoment(G4double mageticMoment)
G4ParticleDefinition * FindParticle(G4int PDGEncoding)
static G4ParticleTable * GetParticleTable()