Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4AntiNeutron.cc
Go to the documentation of this file.
1//
2// ********************************************************************
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6// * the Geant4 Collaboration. It is provided under the terms and *
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14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
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18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
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25//
26//
27// $Id$
28// GEANT4 tag $Name: geant4-09-04-ref-00 $
29//
30//
31// ----------------------------------------------------------------------
32// GEANT 4 class implementation file
33//
34// History: first implementation, based on object model of
35// 4th April 1996, G.Cosmo
36// H.Kurashige 7 July 1996
37// **********************************************************************
38// New impelemenataion as an utility class M.Asai, 26 July 2004
39// ----------------------------------------------------------------------
40
41#include "G4AntiNeutron.hh"
43#include "G4SystemOfUnits.hh"
44#include "G4ParticleTable.hh"
45
47#include "G4DecayTable.hh"
48
49// ######################################################################
50// ### ANTI NEUTRON ###
51// ######################################################################
52G4AntiNeutron* G4AntiNeutron::theInstance = 0;
53
55{
56 if (theInstance !=0) return theInstance;
57 const G4String name = "anti_neutron";
58 // search in particle table]
60 G4ParticleDefinition* anInstance = pTable->FindParticle(name);
61 if (anInstance ==0)
62 {
63 // create particle
64 //
65 // Arguments for constructor are as follows
66 // name mass width charge
67 // 2*spin parity C-conjugation
68 // 2*Isospin 2*Isospin3 G-parity
69 // type lepton number baryon number PDG encoding
70 // stable lifetime decay table
71 // shortlived subType anti_encoding
72 // use constants in CLHEP
73 // static const double neutron_mass_c2 = 939.56563 * MeV;
74
75 anInstance = new G4ParticleDefinition(
76 name, neutron_mass_c2, 7.467e-28*GeV, 0.0,
77 1, +1, 0,
78 1, +1, 0,
79 "baryon", 0, -1, -2112,
80 true, 885.7*second, NULL,
81 false, "nucleon"
82 );
83 // Magnetic Moment
84 G4double mN = eplus*hbar_Planck/2./(proton_mass_c2 /c_squared);
85 anInstance->SetPDGMagneticMoment( 1.9130427 * mN);
86 //create Decay Table
87 G4DecayTable* table = new G4DecayTable();
88 // create a decay channel
89 G4VDecayChannel* mode = new G4NeutronBetaDecayChannel("anti_neutron",1.00);
90 table->Insert(mode);
91 anInstance->SetDecayTable(table);
92
93 }
94 theInstance = reinterpret_cast<G4AntiNeutron*>(anInstance);
95 return theInstance;
96}
97
99{
100 return Definition();
101}
102
104{
105 return Definition();
106}
107
108
double G4double
Definition: G4Types.hh:64
static G4AntiNeutron * AntiNeutronDefinition()
static G4AntiNeutron * AntiNeutron()
static G4AntiNeutron * Definition()
void Insert(G4VDecayChannel *aChannel)
Definition: G4DecayTable.cc:60
void SetPDGMagneticMoment(G4double mageticMoment)
void SetDecayTable(G4DecayTable *aDecayTable)
G4ParticleDefinition * FindParticle(G4int PDGEncoding)
static G4ParticleTable * GetParticleTable()