source: trunk/source/particles/shortlived/include/G4ExcitedNucleonConstructor.hh @ 1340

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27// $Id: G4ExcitedNucleonConstructor.hh,v 1.7 2010/10/01 02:41:44 kurasige Exp $
28// GEANT4 tag $Name: particles-V09-03-15 $
29//
30//
31// --------------------------------------------------------------
32//      GEANT 4 class implementation file
33//
34//      History: first implementation, based on object model of
35//      10 oct 1998  H.Kurashige
36// ---------------------------------------------------------------
37#ifndef G4ExcitedNucleonConstructor_h
38#define G4ExcitedNucleonConstructor_h 1
39
40#include "globals.hh"
41#include "G4ios.hh"
42#include "G4ExcitedBaryonConstructor.hh"
43
44class G4ExcitedNucleonConstructor: public G4ExcitedBaryonConstructor
45{
46  //This class is a utility class for construction
47  //short lived particles
48
49  public:
50    G4ExcitedNucleonConstructor();
51    virtual  ~G4ExcitedNucleonConstructor();
52
53  protected: 
54    virtual  G4int    GetEncoding(G4int iIsoSpin3, G4int idxState);
55
56   protected: 
57    virtual  G4bool   Exist( G4int ){return true;}
58
59    virtual  G4int    GetQuarkContents(G4int, G4int);
60    virtual  G4String GetName(G4int iIso3, G4int iState);
61    virtual  G4String GetMultipletName(G4int iState);
62    virtual  G4double GetMass( G4int state, G4int iso);
63    virtual  G4double GetWidth( G4int state, G4int iso);
64    virtual  G4int    GetiSpin(G4int iState);
65    virtual  G4int    GetiParity(G4int iState);
66    virtual  G4int    GetEncodingOffset(G4int iState);
67
68    virtual  G4DecayTable* CreateDecayTable(const G4String& name,
69                                            G4int iIso3, G4int iState,
70                                            G4bool fAnti = false);
71  private:
72    G4DecayTable* AddNGammaMode( G4DecayTable* table, const G4String& name,
73                                    G4double br, G4int iIso3, G4bool fAnti);
74    G4DecayTable* AddNPiMode( G4DecayTable* table, const G4String& name,
75                                     G4double br, G4int iIso3, G4bool fAnti);
76    G4DecayTable* AddNEtaMode( G4DecayTable* table, const G4String& name,
77                                     G4double br, G4int iIso3, G4bool fAnti);
78    G4DecayTable* AddNOmegaMode( G4DecayTable* table, const G4String& name,
79                                     G4double br, G4int iIso3, G4bool fAnti);
80    G4DecayTable* AddNRhoMode( G4DecayTable* table, const G4String& name,
81                                     G4double br, G4int iIso3, G4bool fAnti);
82    G4DecayTable* AddN2PiMode( G4DecayTable* table, const G4String& name,
83                                     G4double br, G4int iIso3, G4bool fAnti);
84    G4DecayTable* AddDeltaPiMode( G4DecayTable* table, const G4String& name,
85                                     G4double br, G4int iIso3, G4bool fAnti);
86    G4DecayTable* AddNStarPiMode( G4DecayTable* table, const G4String& name,
87                                     G4double br, G4int iIso3, G4bool fAnti);
88    G4DecayTable* AddLambdaKMode( G4DecayTable* table, const G4String& name,
89                                     G4double br, G4int iIso3, G4bool fAnti);
90
91  public:
92    enum     { NStates = 15  };
93  private:
94   enum     { NucleonIsoSpin = 1  };
95
96  private:
97    static const char* name[ NStates ];
98    static const G4double mass[ NStates ];
99    static const G4double width[ NStates ];
100    static const G4int    iSpin[ NStates ];
101    static const G4int    iParity[ NStates ];
102    static const G4int    encodingOffset[ NStates ];
103   
104  public:
105    enum     { NumberOfDecayModes = 9 };
106  private:
107    enum     { NGamma=0,  NPi=1,   NEta=2, NOmega=3,  NRho=4,
108               N2Pi=5,  DeltaPi=6, NStarPi=7, LambdaK = 8 };
109  private:
110    static const G4double bRatio[ NStates ][ NumberOfDecayModes];
111};
112
113inline
114 G4double G4ExcitedNucleonConstructor::GetMass(G4int iState, G4int)
115{ 
116  return mass[iState]; 
117}
118
119inline
120 G4double G4ExcitedNucleonConstructor::GetWidth(G4int iState, G4int)
121{
122  return width[iState];
123}
124
125inline
126 G4int    G4ExcitedNucleonConstructor::GetiSpin(G4int iState)
127{
128  return iSpin[iState];
129}
130
131inline
132 G4int    G4ExcitedNucleonConstructor::GetiParity(G4int iState)
133{
134  return iParity[iState];
135}
136
137inline
138 G4int    G4ExcitedNucleonConstructor::GetEncodingOffset(G4int iState)
139{
140  return encodingOffset[iState];
141}
142
143inline
144 G4int  G4ExcitedNucleonConstructor::GetQuarkContents(G4int iQ, G4int iIso3)
145{
146  // Quark contents
147  //    iIso3 = -1 : udd
148  //    iIso3 = +1 : uud
149  G4int quark=0;
150  if ( iQ == 0 ){
151    // u-quark
152    quark = 2;
153  } else if ( iQ == 2 ){
154    // d-quark
155    quark = 1;
156  } else {
157    if ( iIso3 == -1 ){
158    // d-quark
159      quark = 1;
160    } else {
161    // u-quark
162      quark = 2;
163    }
164  }
165  return quark;
166}
167
168inline 
169 G4String G4ExcitedNucleonConstructor::GetMultipletName(G4int iState)
170{
171  return name[iState];
172}
173
174inline 
175 G4String  G4ExcitedNucleonConstructor::GetName(G4int iIso3, G4int iState)
176{
177  G4String particle = name[iState];
178  if ( iIso3 == -1 ){
179    particle += "0";
180  } else {
181    particle += "+";
182  }
183  return particle;
184}
185#endif
186
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