source: trunk/source/processes/hadronic/models/incl/include/G4AblaDataDefs.hh @ 1340

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26// $Id: G4AblaDataDefs.hh,v 1.11 2010/10/26 02:47:59 kaitanie Exp $
27// Translation of INCL4.2/ABLA V3
28// Pekka Kaitaniemi, HIP (translation)
29// Christelle Schmidt, IPNL (fission code)
30// Alain Boudard, CEA (contact person INCL/ABLA)
31// Aatos Heikkinen, HIP (project coordination)
32
33// Data structures needed by ABLA evaporation code.
34
35#ifndef G4AblaDataDefs_hh
36#define G4AblaDataDefs_hh 1
37
38// ABLA
39
40class G4Nevent {
41public:
42  G4Nevent() {};
43  ~G4Nevent() {};
44 
45  G4int ii;
46};
47
48// ABLA
49#define PACESIZEROWS 500
50#define PACESIZECOLS 500
51/**
52 * Masses.
53 */
54
55class G4Pace {
56
57public:
58  G4Pace() {};
59
60  ~G4Pace() {};
61 
62  G4double dm[PACESIZEROWS][PACESIZECOLS];
63};
64
65#define EC2SUBROWS 154
66#define EC2SUBCOLS 99
67  /**
68   *
69   */
70
71class G4Ec2sub {
72public:
73  G4Ec2sub() {};
74
75  ~G4Ec2sub() {};
76
77  G4double ecnz[EC2SUBROWS][EC2SUBCOLS]; 
78
79  /**
80   * Dump the contents of the ecnz data table.
81   */
82  void dump() {
83    for(G4int i = 0; i < EC2SUBROWS; i++) {
84      for(G4int j = 0; j < EC2SUBCOLS; j++) {
85        G4cout << ecnz[i][j] << " ";
86      }
87      G4cout << G4endl;
88    }
89  }
90};
91
92class G4Ald {
93public:
94  /**
95   *
96   */
97  G4Ald() {};
98  ~G4Ald() {};
99 
100  G4double av,as,ak,optafan;
101};
102
103#define ECLDROWS 154
104#define ECLDCOLS 99
105/**
106 * Shell corrections and deformations.
107 */
108
109class G4Ecld {
110
111public:
112  G4Ecld() {};
113  ~G4Ecld() {};
114
115  /**
116   * Ground state shell correction frldm for a spherical ground state.
117   */
118  G4double ecgnz[ECLDROWS][ECLDCOLS];
119
120  /**
121   * Shell correction for the saddle point (now: == 0).
122   */
123  G4double ecfnz[ECLDROWS][ECLDCOLS];
124
125  /**
126   * Difference between deformed ground state and ldm value.
127   */
128  G4double vgsld[ECLDROWS][ECLDCOLS]; 
129
130  /**
131   * Alpha ground state deformation (this is not beta2!)       
132   * beta2 = std::sqrt(5/(4pi)) * alpha
133   */
134  G4double alpha[ECLDROWS][ECLDCOLS];
135};
136
137class G4Fiss {
138  /**
139   * Options and parameters for fission channel.
140   */
141
142public:
143  G4Fiss() {};
144  ~G4Fiss() {};
145 
146  G4double akap,bet,homega,koeff,ifis;
147  G4int optshp, optxfis,optles,optcol;
148};
149
150#define FBROWS 101
151#define FBCOLS 161
152/**
153 * Fission barriers.
154 */
155 
156class G4Fb {
157 
158public:
159  G4Fb() {};
160  ~G4Fb() {;}
161 
162  //  G4double efa[FBROWS][FBCOLS];
163  G4double efa[FBCOLS][FBROWS];
164};
165
166/**
167 * Options
168 */
169
170class G4Opt {
171
172public:
173  G4Opt() {};
174  ~G4Opt() {};
175 
176  G4int optemd,optcha;
177  G4double eefac;                                 
178};
179
180#define EENUCSIZE 2002
181#define XHESIZE 50
182class G4Eenuc {
183public:
184  G4Eenuc() {};
185  ~G4Eenuc() {};
186 
187  G4double she[EENUCSIZE],xhe[XHESIZE][EENUCSIZE];                                           
188};
189
190//#define VOLANTSIZE 200
191#define VOLANTSIZE 301
192/**
193 * Evaporation and fission output data.
194 */
195
196class G4Volant {
197 
198public:
199  G4Volant()
200  {
201    clear();
202  }
203
204  ~G4Volant() {};
205
206  void clear()
207  {
208    for(G4int i = 0; i < VOLANTSIZE; i++) {
209      copied[i] = false;
210      acv[i] = 0;
211      zpcv[i] = 0;
212      pcv[i] = 0;
213      xcv[i] = 0;
214      ycv[i] = 0;
215      zcv[i] = 0;
216      iv = 0;
217    }
218  }
219
220  G4double getTotalMass()
221  {
222    G4double total = 0.0;
223    for(G4int i = 0; i <= iv; i++) {
224      total += acv[i];
225    }
226    return total;
227  }
228
229  void dump()
230  {
231    G4double totA = 0.0, totZ = 0.0, totP = 0.0;
232    G4cout <<"i \t ACV \t ZPCV \t PCV" << G4endl; 
233    for(G4int i = 0; i <= iv; i++) {
234      if(i == 0 && acv[i] != 0) {
235        G4cout <<"G4Volant: Particle stored at index " << i << G4endl;
236      }
237      totA += acv[i];
238      totZ += zpcv[i];
239      totP += pcv[i];
240      G4cout << "volant" << i << "\t" << acv[i] << " \t " << zpcv[i] << " \t " << pcv[i] << G4endl;
241    }
242    G4cout <<"Particle count index (iv) = " << iv << G4endl;
243    G4cout <<"ABLA Total: A = " << totA << " Z = " << totZ <<  " momentum = " << totP << G4endl;
244  }
245
246  G4double acv[VOLANTSIZE],zpcv[VOLANTSIZE],pcv[VOLANTSIZE],xcv[VOLANTSIZE];
247  G4double ycv[VOLANTSIZE],zcv[VOLANTSIZE];
248  G4bool copied[VOLANTSIZE];
249  G4int iv; 
250};
251
252#endif
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