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NuclearInteractionFTF.cc
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1 // system headers
2 #include <mutex>
3 #include <cmath>
4 #include <memory>
5 
6 // Framework Headers
9 
10 // Fast Sim headers
18 
20 
21 // Math
23 
24 // Geant4 headers
25 #include "G4Nucleus.hh"
26 #include "G4HadProjectile.hh"
27 #include "G4LorentzVector.hh"
28 #include "G4ThreeVector.hh"
29 
30 #include "G4ParticleDefinition.hh"
31 #include "G4DynamicParticle.hh"
32 #include "G4Track.hh"
33 #include "G4Step.hh"
34 #include "G4StepPoint.hh"
35 #include "G4TheoFSGenerator.hh"
36 #include "G4FTFModel.hh"
37 #include "G4ExcitedStringDecay.hh"
38 #include "G4LundStringFragmentation.hh"
39 #include "G4GeneratorPrecompoundInterface.hh"
40 #include "G4CascadeInterface.hh"
41 #include "G4DiffuseElastic.hh"
42 
43 #include "G4Proton.hh"
44 #include "G4Neutron.hh"
45 #include "G4PionPlus.hh"
46 #include "G4PionMinus.hh"
47 #include "G4AntiProton.hh"
48 #include "G4AntiNeutron.hh"
49 #include "G4KaonPlus.hh"
50 #include "G4KaonMinus.hh"
51 #include "G4KaonZeroLong.hh"
52 #include "G4KaonZeroShort.hh"
53 #include "G4KaonZero.hh"
54 #include "G4AntiKaonZero.hh"
55 #include "G4GenericIon.hh"
56 
57 #include "G4Lambda.hh"
58 #include "G4OmegaMinus.hh"
59 #include "G4SigmaMinus.hh"
60 #include "G4SigmaPlus.hh"
61 #include "G4SigmaZero.hh"
62 #include "G4XiMinus.hh"
63 #include "G4XiZero.hh"
64 #include "G4AntiLambda.hh"
65 #include "G4AntiOmegaMinus.hh"
66 #include "G4AntiSigmaMinus.hh"
67 #include "G4AntiSigmaPlus.hh"
68 #include "G4AntiSigmaZero.hh"
69 #include "G4AntiXiMinus.hh"
70 #include "G4AntiXiZero.hh"
71 #include "G4AntiAlpha.hh"
72 #include "G4AntiDeuteron.hh"
73 #include "G4AntiTriton.hh"
74 #include "G4AntiHe3.hh"
75 
76 #include "G4Material.hh"
77 #include "G4DecayPhysics.hh"
78 #include "G4ParticleTable.hh"
79 #include "G4IonTable.hh"
80 #include "G4ProcessManager.hh"
81 #include "G4PhysicsLogVector.hh"
82 
83 #include <CLHEP/Units/SystemOfUnits.h>
84 
86 // Author: Vladimir Ivanchenko
87 // Date: 20-Jan-2015
88 //
89 // Revision: Class structure modified to match SimplifiedGeometryPropagator
90 // Fixed a bug in which units where not properly converted from G4 to FastSim standard
91 // S. Kurz, 29 May 2017
93 
95 
96 namespace fastsim {
98 
103  public:
106 
108  ~NuclearInteractionFTF() override;
109 
111 
117  void interact(fastsim::Particle& particle,
118  const SimplifiedGeometry& layer,
119  std::vector<std::unique_ptr<fastsim::Particle> >& secondaries,
120  const RandomEngineAndDistribution& random) override;
121 
122  private:
123  static const int numHadrons = 30;
124  static const int npoints = 21;
125 
126  static const G4ParticleDefinition* theG4Hadron[numHadrons];
127  static int theId[numHadrons];
128 
129  G4PhysicsLogVector* vect;
130  G4TheoFSGenerator* theHadronicModel;
131  G4FTFModel* theStringModel;
132  G4ExcitedStringDecay* theStringDecay;
133  G4LundStringFragmentation* theLund;
134  G4GeneratorPrecompoundInterface* theCascade;
135 
136  G4CascadeInterface* theBertiniCascade;
137  G4DiffuseElastic* theDiffuseElastic;
138 
139  G4Step* dummyStep;
140  G4Track* currTrack;
141  const G4ParticleDefinition* currParticle;
142 
143  G4Nucleus targetNucleus;
144  G4HadProjectile theProjectile;
145  G4LorentzVector curr4Mom;
146  G4ThreeVector vectProj;
147  G4ThreeVector theBoost;
148 
150  double theEnergyLimit;
151 
152  double theDistCut;
153 
156 
157  int currIdx;
158  size_t index;
159 
162  {1.0872, 1.1026, 1.111, 1.111, 1.0105, 0.97622, 0.9511, 0.9526, 0.97591, 0.99277, 1.0099,
163  1.015, 1.0217, 1.0305, 1.0391, 1.0438, 1.0397, 1.0328, 1.0232, 1.0123, 1.0},
164  {1.0416, 1.1044, 1.1467, 1.1273, 1.026, 0.99085, 0.96572, 0.96724, 0.99091, 1.008, 1.0247,
165  1.0306, 1.0378, 1.0427, 1.0448, 1.0438, 1.0397, 1.0328, 1.0232, 1.0123, 1.0},
166  {0.5308, 0.53589, 0.67059, 0.80253, 0.82341, 0.79083, 0.85967, 0.90248, 0.93792, 0.9673, 1.0034,
167  1.022, 1.0418, 1.0596, 1.0749, 1.079, 1.0704, 1.0576, 1.0408, 1.0214, 1.0},
168  {0.49107, 0.50571, 0.64149, 0.77209, 0.80472, 0.78166, 0.83509, 0.8971, 0.93234, 0.96154, 0.99744,
169  1.0159, 1.0355, 1.0533, 1.0685, 1.0732, 1.0675, 1.0485, 1.0355, 1.0191, 1.0},
170  {1.9746, 1.7887, 1.5645, 1.2817, 1.0187, 0.95216, 0.9998, 1.035, 1.0498, 1.0535, 1.0524,
171  1.0495, 1.0461, 1.0424, 1.0383, 1.0338, 1.0287, 1.0228, 1.0161, 1.0085, 1.0},
172  {0.46028, 0.59514, 0.70355, 0.70698, 0.62461, 0.65103, 0.71945, 0.77753, 0.83582, 0.88422, 0.92117,
173  0.94889, 0.96963, 0.98497, 0.99596, 1.0033, 1.0075, 1.0091, 1.0081, 1.005, 1.0},
174  {0.75016, 0.89607, 0.97185, 0.91083, 0.77425, 0.77412, 0.8374, 0.88848, 0.93104, 0.96174, 0.98262,
175  0.99684, 1.0065, 1.0129, 1.0168, 1.0184, 1.018, 1.0159, 1.0121, 1.0068, 1.0},
176  {0.75016, 0.89607, 0.97185, 0.91083, 0.77425, 0.77412, 0.8374, 0.88848, 0.93104, 0.96174, 0.98262,
177  0.99684, 1.0065, 1.0129, 1.0168, 1.0184, 1.018, 1.0159, 1.0121, 1.0068, 1.0},
178  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
179  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
180  {1.1006, 1.1332, 1.121, 1.1008, 1.086, 1.077, 1.0717, 1.0679, 1.0643, 1.0608, 1.057,
181  1.053, 1.0487, 1.0441, 1.0392, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
182  {1.1318, 1.1255, 1.1062, 1.0904, 1.0802, 1.0742, 1.0701, 1.0668, 1.0636, 1.0602, 1.0566,
183  1.0527, 1.0485, 1.044, 1.0391, 1.0337, 1.028, 1.0217, 1.015, 1.0078, 1.0},
184  {1.1094, 1.1332, 1.1184, 1.0988, 1.0848, 1.0765, 1.0714, 1.0677, 1.0642, 1.0607, 1.0569,
185  1.053, 1.0487, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
186  {1.1087, 1.1332, 1.1187, 1.099, 1.0849, 1.0765, 1.0715, 1.0677, 1.0642, 1.0607, 1.057,
187  1.053, 1.0487, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
188  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
189  {1.1192, 1.132, 1.1147, 1.0961, 1.0834, 1.0758, 1.0711, 1.0674, 1.064, 1.0606, 1.0569,
190  1.0529, 1.0486, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
191  {1.1188, 1.1321, 1.1149, 1.0963, 1.0834, 1.0758, 1.0711, 1.0675, 1.0641, 1.0606, 1.0569,
192  1.0529, 1.0486, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
193  {0.50776, 0.5463, 0.5833, 0.61873, 0.65355, 0.68954, 0.72837, 0.7701, 0.81267, 0.85332, 0.89037,
194  0.92329, 0.95177, 0.97539, 0.99373, 1.0066, 1.014, 1.0164, 1.0144, 1.0087, 1.0},
195  {0.50787, 0.5464, 0.58338, 0.6188, 0.65361, 0.6896, 0.72841, 0.77013, 0.8127, 0.85333, 0.89038,
196  0.92329, 0.95178, 0.9754, 0.99373, 1.0066, 1.014, 1.0164, 1.0144, 1.0087, 1.0},
197  {1.1006, 1.1332, 1.121, 1.1008, 1.086, 1.077, 1.0717, 1.0679, 1.0643, 1.0608, 1.057,
198  1.053, 1.0487, 1.0441, 1.0392, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
199  {1.1318, 1.1255, 1.1062, 1.0904, 1.0802, 1.0742, 1.0701, 1.0668, 1.0636, 1.0602, 1.0566,
200  1.0527, 1.0485, 1.044, 1.0391, 1.0337, 1.028, 1.0217, 1.015, 1.0078, 1.0},
201  {1.1094, 1.1332, 1.1184, 1.0988, 1.0848, 1.0765, 1.0714, 1.0677, 1.0642, 1.0607, 1.0569,
202  1.053, 1.0487, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
203  {1.1087, 1.1332, 1.1187, 1.099, 1.0849, 1.0765, 1.0715, 1.0677, 1.0642, 1.0607, 1.057,
204  1.053, 1.0487, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
205  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
206  {1.1192, 1.132, 1.1147, 1.0961, 1.0834, 1.0758, 1.0711, 1.0674, 1.064, 1.0606, 1.0569,
207  1.0529, 1.0486, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
208  {1.1188, 1.1321, 1.1149, 1.0963, 1.0834, 1.0758, 1.0711, 1.0675, 1.0641, 1.0606, 1.0569,
209  1.0529, 1.0486, 1.0441, 1.0391, 1.0338, 1.028, 1.0218, 1.015, 1.0078, 1.0},
210  {0.47677, 0.51941, 0.56129, 0.60176, 0.64014, 0.67589, 0.70891, 0.73991, 0.77025, 0.80104, 0.83222,
211  0.86236, 0.8901, 0.91518, 0.9377, 0.95733, 0.97351, 0.98584, 0.9942, 0.99879, 1.0},
212  {0.49361, 0.53221, 0.56976, 0.60563, 0.63954, 0.67193, 0.70411, 0.73777, 0.77378, 0.81114, 0.84754,
213  0.88109, 0.91113, 0.93745, 0.95974, 0.97762, 0.99081, 0.99929, 1.0033, 1.0034, 1.0},
214  {0.4873, 0.52744, 0.56669, 0.60443, 0.64007, 0.67337, 0.70482, 0.73572, 0.76755, 0.80086, 0.83456,
215  0.86665, 0.8959, 0.92208, 0.94503, 0.96437, 0.97967, 0.99072, 0.99756, 1.0005, 1.0},
216  {0.48729, 0.52742, 0.56668, 0.60442, 0.64006, 0.67336, 0.70482, 0.73571, 0.76754, 0.80086, 0.83455,
217  0.86665, 0.8959, 0.92208, 0.94503, 0.96437, 0.97967, 0.99072, 0.99756, 1.0005, 1.0},
218  };
219 
221  const double corrfactors_el[numHadrons][npoints] = {
222  {0.58834, 1.1238, 1.7896, 1.4409, 0.93175, 0.80587, 0.80937, 0.83954, 0.87453, 0.91082, 0.94713,
223  0.98195, 1.0134, 1.0397, 1.0593, 1.071, 1.0739, 1.0678, 1.053, 1.03, 1.0},
224  {0.40938, 0.92337, 1.3365, 1.1607, 1.008, 0.82206, 0.81163, 0.79489, 0.82919, 0.91812, 0.96688,
225  1.0225, 1.0734, 1.0833, 1.0874, 1.0854, 1.0773, 1.0637, 1.0448, 1.0235, 1.0},
226  {0.43699, 0.42165, 0.46594, 0.64917, 0.85314, 0.80782, 0.83204, 0.91162, 1.0155, 1.0665, 1.0967,
227  1.1125, 1.1275, 1.1376, 1.1464, 1.1477, 1.1312, 1.1067, 1.0751, 1.039, 1.0},
228  {0.3888, 0.39527, 0.43921, 0.62834, 0.8164, 0.79866, 0.82272, 0.90163, 1.0045, 1.055, 1.0849,
229  1.1005, 1.1153, 1.1253, 1.134, 1.1365, 1.1255, 1.0895, 1.0652, 1.0348, 1.0},
230  {0.32004, 0.31119, 0.30453, 0.30004, 0.31954, 0.40148, 0.5481, 0.74485, 0.99317, 1.1642, 1.2117,
231  1.2351, 1.2649, 1.3054, 1.375, 1.4992, 1.4098, 1.3191, 1.2232, 1.118, 1.0},
232  {0.10553, 0.14623, 0.20655, 0.26279, 0.19996, 0.40125, 0.5139, 0.71271, 0.89269, 1.0108, 1.1673,
233  1.3052, 1.4149, 1.429, 1.4521, 1.4886, 1.4006, 1.3116, 1.2177, 1.1151, 1.0},
234  {0.106, 0.14692, 0.20755, 0.26257, 0.20089, 0.40236, 0.51452, 0.71316, 0.89295, 1.0109, 1.1673,
235  1.3053, 1.4149, 1.429, 1.4521, 1.4886, 1.4006, 1.3116, 1.2177, 1.1151, 1.0},
236  {0.31991, 0.31111, 0.30445, 0.30004, 0.31995, 0.40221, 0.54884, 0.74534, 0.99364, 1.1644, 1.2117,
237  1.2351, 1.265, 1.3054, 1.375, 1.4992, 1.4098, 1.3191, 1.2232, 1.118, 1.0},
238  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
239  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
240  {0.37579, 0.39922, 0.37445, 0.32631, 0.39002, 0.42161, 0.54251, 0.69127, 0.90332, 1.0664, 1.1346,
241  1.1481, 1.1692, 1.2036, 1.2625, 1.3633, 1.2913, 1.2215, 1.1516, 1.0788, 1.0},
242  {0.31756, 0.33409, 0.25339, 0.35525, 0.52989, 0.63382, 0.7453, 0.93505, 1.1464, 1.2942, 1.3161,
243  1.328, 1.3393, 1.3525, 1.374, 1.4051, 1.3282, 1.2523, 1.1745, 1.0916, 1.0},
244  {0.38204, 0.39694, 0.36502, 0.33367, 0.39229, 0.43119, 0.54898, 0.70169, 0.91004, 1.0696, 1.1348,
245  1.1483, 1.1694, 1.2038, 1.2627, 1.3632, 1.2913, 1.2215, 1.1516, 1.0788, 1.0},
246  {0.38143, 0.39716, 0.36609, 0.33294, 0.39207, 0.43021, 0.54834, 0.70066, 0.90945, 1.0693, 1.1348,
247  1.1482, 1.1694, 1.2038, 1.2627, 1.3632, 1.2913, 1.2215, 1.1516, 1.0788, 1.0},
248  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
249  {0.29564, 0.32645, 0.29986, 0.30611, 0.48808, 0.59902, 0.71207, 0.8832, 1.1164, 1.2817, 1.3154,
250  1.3273, 1.3389, 1.3521, 1.3736, 1.4056, 1.3285, 1.2524, 1.1746, 1.0916, 1.0},
251  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
252  {0.3265, 0.3591, 0.39232, 0.42635, 0.46259, 0.50365, 0.55244, 0.61014, 0.67446, 0.74026, 0.80252,
253  0.85858, 0.90765, 0.94928, 0.9827, 1.0071, 1.0221, 1.0279, 1.0253, 1.0155, 1.0},
254  {0.13808, 0.15585, 0.17798, 0.2045, 0.22596, 0.25427, 0.33214, 0.44821, 0.5856, 0.74959, 0.89334,
255  1.0081, 1.0964, 1.1248, 1.173, 1.2548, 1.1952, 1.1406, 1.0903, 1.0437, 1.0},
256  {0.20585, 0.23253, 0.26371, 0.28117, 0.30433, 0.35417, 0.44902, 0.58211, 0.73486, 0.90579, 1.0395,
257  1.1488, 1.2211, 1.2341, 1.2553, 1.2877, 1.2245, 1.1654, 1.1093, 1.0547, 1.0},
258  {0.2852, 0.32363, 0.31419, 0.35164, 0.45463, 0.54331, 0.66908, 0.81735, 0.98253, 1.1557, 1.2557,
259  1.3702, 1.4186, 1.401, 1.374, 1.3325, 1.2644, 1.1991, 1.1348, 1.0694, 1.0},
260  {0.20928, 0.23671, 0.2664, 0.28392, 0.30584, 0.35929, 0.45725, 0.5893, 0.74047, 0.9101, 1.0407,
261  1.1503, 1.2212, 1.2342, 1.2554, 1.2876, 1.2245, 1.1654, 1.1093, 1.0547, 1.0},
262  {0.11897, 0.13611, 0.15796, 0.1797, 0.21335, 0.26367, 0.34705, 0.46115, 0.6016, 0.7759, 0.91619,
263  1.0523, 1.1484, 1.1714, 1.2098, 1.2721, 1.2106, 1.1537, 1.1004, 1.0496, 1.0},
264  {0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 1.0},
265  {0.26663, 0.30469, 0.32886, 0.33487, 0.41692, 0.51616, 0.63323, 0.78162, 0.95551, 1.1372, 1.2502,
266  1.3634, 1.4189, 1.4013, 1.3743, 1.3329, 1.2646, 1.1992, 1.1349, 1.0694, 1.0},
267  {0.16553, 0.19066, 0.21468, 0.23609, 0.30416, 0.38821, 0.49644, 0.63386, 0.80299, 0.99907, 1.1304,
268  1.2724, 1.3535, 1.3475, 1.3381, 1.3219, 1.2549, 1.191, 1.1287, 1.0659, 1.0},
269  {0.37736, 0.41414, 0.45135, 0.48843, 0.52473, 0.55973, 0.59348, 0.62696, 0.66202, 0.70042, 0.74241,
270  0.786, 0.82819, 0.86688, 0.90128, 0.93107, 0.95589, 0.97532, 0.98908, 0.99719, 1.0},
271  {0.34354, 0.37692, 0.4109, 0.44492, 0.47873, 0.51296, 0.54937, 0.59047, 0.63799, 0.69117, 0.74652,
272  0.7998, 0.84832, 0.89111, 0.92783, 0.95798, 0.98095, 0.99635, 1.0043, 1.0052, 1.0},
273  {0.36364, 0.39792, 0.43277, 0.4676, 0.50186, 0.53538, 0.56884, 0.604, 0.64308, 0.68729, 0.73544,
274  0.7842, 0.83019, 0.87156, 0.90777, 0.93854, 0.96346, 0.98209, 0.99421, 1, 1.0},
275  {0.36362, 0.39791, 0.43276, 0.46759, 0.50185, 0.53537, 0.56883, 0.604, 0.64307, 0.68728, 0.73544,
276  0.7842, 0.83019, 0.87156, 0.90777, 0.93854, 0.96346, 0.98209, 0.99421, 1, 1.0},
277  };
278 
280  const double nuclInelLength[numHadrons] = {4.5606, 4.4916, 5.7511, 5.7856, 6.797, 6.8373, 6.8171, 6.8171,
281  0, 0, 4.6926, 4.6926, 4.6926, 4.6926, 0, 4.6926,
282  4.6926, 4.3171, 4.3171, 4.6926, 4.6926, 4.6926, 4.6926, 0,
283  4.6926, 4.6926, 2.509, 2.9048, 2.5479, 2.5479};
284 
286  const double nuclElLength[numHadrons] = {9.248, 9.451, 11.545, 11.671, 32.081, 34.373, 34.373, 32.081,
287  0, 0, 15.739, 20.348, 15.739, 15.739, 0, 20.349,
288  0, 9.7514, 12.864, 15.836, 20.516, 15.836, 15.744, 0,
289  20.517, 20.44, 4.129, 6.0904, 4.5204, 4.5204};
290  };
291 
292  // Is this correct?
293  // Thread safety
294  static std::once_flag initializeOnce;
295  CMS_THREAD_GUARD(initializeOnce) const G4ParticleDefinition* NuclearInteractionFTF::theG4Hadron[] = {nullptr};
297 } // namespace fastsim
298 
300  : fastsim::InteractionModel(name), curr4Mom(0., 0., 0., 0.), vectProj(0., 0., 1.), theBoost(0., 0., 0.) {
301  // Angular distance of particle before/after interaction. If it too large, a daughter is created instead
302  theDistCut = cfg.getParameter<double>("distCut");
303  // Set energy limits for processes
304  theBertiniLimit = cfg.getParameter<double>("bertiniLimit") * CLHEP::GeV;
305  theEnergyLimit = cfg.getParameter<double>("energyLimit") * CLHEP::GeV;
306 
307  // FTF model
308  theHadronicModel = new G4TheoFSGenerator("FTF");
309  theStringModel = new G4FTFModel();
310  G4GeneratorPrecompoundInterface* cascade = new G4GeneratorPrecompoundInterface(new CMSDummyDeexcitation());
311  theLund = new G4LundStringFragmentation();
312  theStringDecay = new G4ExcitedStringDecay(theLund);
313  theStringModel->SetFragmentationModel(theStringDecay);
314 
315  theHadronicModel->SetTransport(cascade);
316  theHadronicModel->SetHighEnergyGenerator(theStringModel);
317  theHadronicModel->SetMinEnergy(theEnergyLimit);
318 
319  // Bertini Cascade
320  theBertiniCascade = new G4CascadeInterface();
321 
322  theDiffuseElastic = new G4DiffuseElastic();
323 
324  // Geant4 particles and cross sections
325  std::call_once(initializeOnce, []() {
326  theG4Hadron[0] = G4Proton::Proton();
327  theG4Hadron[1] = G4Neutron::Neutron();
328  theG4Hadron[2] = G4PionPlus::PionPlus();
329  theG4Hadron[3] = G4PionMinus::PionMinus();
330  theG4Hadron[4] = G4KaonPlus::KaonPlus();
331  theG4Hadron[5] = G4KaonMinus::KaonMinus();
332  theG4Hadron[6] = G4KaonZeroLong::KaonZeroLong();
333  theG4Hadron[7] = G4KaonZeroShort::KaonZeroShort();
334  theG4Hadron[8] = G4KaonZero::KaonZero();
335  theG4Hadron[9] = G4AntiKaonZero::AntiKaonZero();
337  theG4Hadron[11] = G4OmegaMinus::OmegaMinus();
338  theG4Hadron[12] = G4SigmaMinus::SigmaMinus();
339  theG4Hadron[13] = G4SigmaPlus::SigmaPlus();
341  theG4Hadron[15] = G4XiMinus::XiMinus();
342  theG4Hadron[16] = G4XiZero::XiZero();
343  theG4Hadron[17] = G4AntiProton::AntiProton();
344  theG4Hadron[18] = G4AntiNeutron::AntiNeutron();
345  theG4Hadron[19] = G4AntiLambda::AntiLambda();
346  theG4Hadron[20] = G4AntiOmegaMinus::AntiOmegaMinus();
347  theG4Hadron[21] = G4AntiSigmaMinus::AntiSigmaMinus();
348  theG4Hadron[22] = G4AntiSigmaPlus::AntiSigmaPlus();
349  theG4Hadron[23] = G4AntiSigmaZero::AntiSigmaZero();
350  theG4Hadron[24] = G4AntiXiMinus::AntiXiMinus();
351  theG4Hadron[25] = G4AntiXiZero::AntiXiZero();
352  theG4Hadron[26] = G4AntiAlpha::AntiAlpha();
353  theG4Hadron[27] = G4AntiDeuteron::AntiDeuteron();
354  theG4Hadron[28] = G4AntiTriton::AntiTriton();
355  theG4Hadron[29] = G4AntiHe3::AntiHe3();
356 
357  // other Geant4 particles
358  G4ParticleDefinition* ion = G4GenericIon::GenericIon();
359  ion->SetProcessManager(new G4ProcessManager(ion));
360  G4DecayPhysics decays;
361  decays.ConstructParticle();
362  G4ParticleTable* partTable = G4ParticleTable::GetParticleTable();
363  partTable->SetVerboseLevel(0);
364  partTable->SetReadiness();
365 
366  for (int i = 0; i < numHadrons; ++i) {
367  theId[i] = theG4Hadron[i]->GetPDGEncoding();
368  }
369  });
370 
371  // local objects
372  vect = new G4PhysicsLogVector(npoints - 1, 100 * CLHEP::MeV, CLHEP::TeV);
374  currIdx = 0;
375  index = 0;
376  currTrack = nullptr;
378 
379  // fill projectile particle definitions
380  dummyStep = new G4Step();
381  dummyStep->SetPreStepPoint(new G4StepPoint());
382 
383  // target is always Silicon
384  targetNucleus.SetParameters(28, 14);
385 }
386 
388  delete theStringDecay;
389  delete theStringModel;
390  delete theLund;
391  delete vect;
392 }
393 
395  const SimplifiedGeometry& layer,
396  std::vector<std::unique_ptr<fastsim::Particle> >& secondaries,
397  const RandomEngineAndDistribution& random) {
398  int thePid = particle.pdgId();
399  //
400  // no valid PDGid
401  //
402  if (abs(thePid) <= 100 || abs(thePid) >= 1000000) {
403  return;
404  }
405 
406  // particle lost all its enrgy in previous interaction
407  if (particle.momentum().E() < 1E-10) {
408  return;
409  }
410 
411  double radLengths = layer.getThickness(particle.position(), particle.momentum());
412  // TEC layers have some fudge factor for nuclear interactions
413  radLengths *= layer.getNuclearInteractionThicknessFactor();
414  //
415  // no material
416  //
417  if (radLengths < 1E-10) {
418  return;
419  }
420 
421  // get the G4 hadron
422  if (thePid != theId[currIdx]) {
423  currParticle = nullptr;
424  currIdx = 0;
425  for (; currIdx < numHadrons; ++currIdx) {
426  if (theId[currIdx] == thePid) {
427  currParticle = theG4Hadron[currIdx];
428  // neutral kaons
429  if (7 == currIdx || 8 == currIdx) {
430  currParticle = theG4Hadron[9];
431  if (random.flatShoot() > 0.5) {
432  currParticle = theG4Hadron[10];
433  }
434  }
435  break;
436  }
437  }
438  }
439 
440  // no valid G4 hadron found
441  if (!currParticle) {
442  return;
443  }
444 
445  // fill projectile for Geant4
446  double mass = currParticle->GetPDGMass();
447  double ekin = CLHEP::GeV * particle.momentum().e() - mass;
448 
449  // check interaction length
450  intLengthElastic = nuclElLength[currIdx];
451  intLengthInelastic = nuclInelLength[currIdx];
452  if (0.0 == intLengthInelastic) {
453  return;
454  }
455 
456  // apply corrections
457  if (ekin <= vect->Energy(0)) {
458  intLengthElastic *= corrfactors_el[currIdx][0];
459  intLengthInelastic *= corrfactors_inel[currIdx][0];
460  } else if (ekin < vect->Energy(npoints - 1)) {
461  index = vect->FindBin(ekin, index);
462  double e1 = vect->Energy(index);
463  double e2 = vect->Energy(index + 1);
464  intLengthElastic *=
465  ((corrfactors_el[currIdx][index] * (e2 - ekin) + corrfactors_el[currIdx][index + 1] * (ekin - e1)) / (e2 - e1));
466  intLengthInelastic *=
467  ((corrfactors_inel[currIdx][index] * (e2 - ekin) + corrfactors_inel[currIdx][index + 1] * (ekin - e1)) /
468  (e2 - e1));
469  }
470 
471  double currInteractionLength =
472  -G4Log(random.flatShoot()) * intLengthElastic * intLengthInelastic / (intLengthElastic + intLengthInelastic);
473 
474  // Check position of nuclear interaction
475  if (currInteractionLength > radLengths) {
476  return;
477  }
478 
479  // fill projectile for Geant4
480  double px = particle.momentum().px();
481  double py = particle.momentum().py();
482  double pz = particle.momentum().pz();
483  double ptot = sqrt(px * px + py * py + pz * pz);
484  double norm = 1. / ptot;
485  G4ThreeVector dir(px * norm, py * norm, pz * norm);
486 
487  G4DynamicParticle* dynParticle = new G4DynamicParticle(theG4Hadron[currIdx], dir, ekin);
488  currTrack = new G4Track(dynParticle, 0.0, vectProj);
489  currTrack->SetStep(dummyStep);
490 
491  theProjectile.Initialise(*currTrack);
492  delete currTrack;
493 
494  G4HadFinalState* result;
495 
496  // elastic interaction
497  if (random.flatShoot() > intLengthElastic / (intLengthElastic + intLengthInelastic)) {
498  result = theDiffuseElastic->ApplyYourself(theProjectile, targetNucleus);
499  G4ThreeVector dirnew = result->GetMomentumChange().unit();
500  double cost = (dir * dirnew);
501  double sint = std::sqrt((1. - cost) * (1. + cost));
502 
503  // This vector is already in units of GeV (FastSim standard even if it is a G4Vector)
504  curr4Mom.set(ptot * dirnew.x(), ptot * dirnew.y(), ptot * dirnew.z(), particle.momentum().e());
505 
506  // Always create a daughter if the kink is large enough
507  if (sint > theDistCut) {
508  // Create secondary
509  secondaries.emplace_back(new fastsim::Particle(
510  thePid, particle.position(), XYZTLorentzVector(curr4Mom.px(), curr4Mom.py(), curr4Mom.pz(), curr4Mom.e())));
511 
512  // ClosestChargedDaughter thing for FastSim tracking
513  if (particle.charge() != 0) {
514  secondaries.back()->setMotherDeltaR(particle.momentum());
515  secondaries.back()->setMotherPdgId(thePid);
516  secondaries.back()->setMotherSimTrackIndex(particle.simTrackIndex());
517  }
518 
519  // The particle is destroyed
520  particle.momentum().SetXYZT(0., 0., 0., 0.);
521  } else {
522  // ... or just rotate particle
523  particle.momentum().SetXYZT(curr4Mom.px(), curr4Mom.py(), curr4Mom.pz(), curr4Mom.e());
524  }
525 
526  // inelastic interaction
527  } else {
528  // Bertini cascade for low-energy hadrons (except light anti-nuclei)
529  // FTFP is applied above energy limit and for all anti-hyperons and anti-ions
530  if (ekin <= theBertiniLimit && currIdx < 17) {
531  result = theBertiniCascade->ApplyYourself(theProjectile, targetNucleus);
532  } else {
533  result = theHadronicModel->ApplyYourself(theProjectile, targetNucleus);
534  }
535 
536  if (result) {
537  int nsec = result->GetNumberOfSecondaries();
538  if (nsec > 0) {
539  result->SetTrafoToLab(theProjectile.GetTrafoToLab());
540 
541  // Generate angle
542  double phi = random.flatShoot() * CLHEP::twopi;
543 
544  // rotate and store secondaries
545  for (int j = 0; j < nsec; ++j) {
546  const G4DynamicParticle* dp = result->GetSecondary(j)->GetParticle();
547  int daughterID = dp->GetParticleDefinition()->GetPDGEncoding();
548 
549  // rotate around primary direction
550  curr4Mom = dp->Get4Momentum();
551  curr4Mom.rotate(phi, vectProj);
552  curr4Mom *= result->GetTrafoToLab();
553 
554  // prompt 2-gamma decay for pi0, eta, eta'p
555  // don't have a charge so the closest daughter thing does not have to be done
556  if (111 == daughterID || 221 == daughterID || 331 == daughterID) {
557  theBoost = curr4Mom.boostVector();
558  double e = 0.5 * dp->GetParticleDefinition()->GetPDGMass();
559  double fi = random.flatShoot() * CLHEP::twopi;
560  double cth = 2. * random.flatShoot() - 1.0;
561  double sth = sqrt((1.0 - cth) * (1.0 + cth));
562  G4LorentzVector lv(e * sth * cos(fi), e * sth * sin(fi), e * cth, e);
563  lv.boost(theBoost);
564 
565  // create secondaries
566  secondaries.emplace_back(new fastsim::Particle(
567  22,
568  particle.position(),
570  lv.px() / CLHEP::GeV, lv.py() / CLHEP::GeV, lv.pz() / CLHEP::GeV, lv.e() / CLHEP::GeV)));
571 
572  curr4Mom -= lv;
573  if (curr4Mom.e() > theEnergyLimit) {
574  secondaries.emplace_back(new fastsim::Particle(22,
575  particle.position(),
576  XYZTLorentzVector(curr4Mom.px() / CLHEP::GeV,
577  curr4Mom.py() / CLHEP::GeV,
578  curr4Mom.pz() / CLHEP::GeV,
579  curr4Mom.e() / CLHEP::GeV)));
580  }
581 
582  // The mother particle is destroyed
583  particle.momentum().SetXYZT(0., 0., 0., 0.);
584  } else {
585  // Copied from the original code, however I am not sure if all that is correct!
586  // Energy of particles increases during the interaction!
587  // std::cout << particle.momentum().e() << "(" << dynParticle->GetParticleDefinition()->GetPDGMass()/CLHEP::GeV << ") -> " << curr4Mom.e()/CLHEP::GeV << "(" << dp->GetParticleDefinition()->GetPDGMass()/CLHEP::GeV << ")" << std::endl;
588 
589  if (curr4Mom.e() > theEnergyLimit + dp->GetParticleDefinition()->GetPDGMass()) {
590  // Create secondary
591  secondaries.emplace_back(new fastsim::Particle(daughterID,
592  particle.position(),
593  XYZTLorentzVector(curr4Mom.px() / CLHEP::GeV,
594  curr4Mom.py() / CLHEP::GeV,
595  curr4Mom.pz() / CLHEP::GeV,
596  curr4Mom.e() / CLHEP::GeV)));
597 
598  // ClosestChargedDaughter thing for FastSim tracking
599  if (particle.charge() != 0 &&
600  std::abs(particle.charge() - dp->GetParticleDefinition()->GetPDGCharge()) < 1E-10) {
601  secondaries.back()->setMotherDeltaR(particle.momentum());
602  secondaries.back()->setMotherPdgId(particle.getMotherDeltaR() == -1 ? particle.pdgId()
603  : particle.getMotherPdgId());
604  secondaries.back()->setMotherSimTrackIndex(particle.simTrackIndex());
605  }
606 
607  // The mother particle is destroyed
608  particle.momentum().SetXYZT(0., 0., 0., 0.);
609  }
610  }
611  }
612  }
613 
614  // Clear the final state
615  result->Clear();
616  }
617  }
618 }
619 
const double corrfactors_el[numHadrons][npoints]
elastic interaction length corrections per particle and energy
const double nuclInelLength[numHadrons]
G4LundStringFragmentation * theLund
const G4ParticleDefinition * currParticle
int getMotherPdgId() const
Get pdgIdto mother particle (only makes sense if mother and daughter charged).
Definition: Particle.h:209
Implementation of a generic detector layer (base class for forward/barrel layers).
G4GeneratorPrecompoundInterface * theCascade
double theDistCut
Cut on deltaR for ClosestChargedDaughter algorithm (FastSim tracking)
size_t index
Index for energy of particle (vectors parametrized as a function of energy)
Sin< T >::type sin(const T &t)
Definition: Sin.h:22
Needed as a dummy interface to Geant4 nuclear de-excitation module.
double intLengthElastic
Elastic interaction length.
const math::XYZTLorentzVector & position() const
Return position of the particle.
Definition: Particle.h:140
const double corrfactors_inel[numHadrons][npoints]
XYZTLorentzVectorD XYZTLorentzVector
Lorentz vector with cylindrical internal representation using pseudorapidity.
Definition: LorentzVector.h:29
Base class for any interaction model between a particle and a tracker layer.
double theEnergyLimit
Minimum energy of interacting particle.
NuclearInteractionFTF(const std::string &name, const edm::ParameterSet &cfg)
Constructor.
T sqrt(T t)
Definition: SSEVec.h:23
double theBertiniLimit
Bertini cascade for low-energy hadrons.
Cos< T >::type cos(const T &t)
Definition: Cos.h:22
static const G4ParticleDefinition * theG4Hadron[numHadrons]
The Geant4 particles.
#define CMS_THREAD_GUARD(_var_)
static const int npoints
Number of steps to cover range of particle energies.
Abs< T >::type abs(const T &t)
Definition: Abs.h:22
int currIdx
Index of particle in vector of Geant4 particles.
const double nuclElLength[numHadrons]
static const int npoints
double intLengthInelastic
Inelastic interaction length.
static const int numHadrons
const double corrfactors_el[numHadrons][npoints]
int simTrackIndex() const
Return index of the SimTrack.
Definition: Particle.h:153
int pdgId() const
Return pdgId of the particle.
Definition: Particle.h:134
const double corrfactors_inel[numHadrons][npoints]
inelastic interaction length corrections per particle and energy
const double nuclInelLength[numHadrons]
inelastic interaction length in Silicon at 1 TeV per particle
void interact(fastsim::Particle &particle, const SimplifiedGeometry &layer, std::vector< std::unique_ptr< fastsim::Particle > > &secondaries, const RandomEngineAndDistribution &random) override
Perform the interaction.
const math::XYZTLorentzVector & momentum() const
Return momentum of the particle.
Definition: Particle.h:143
math::XYZTLorentzVector XYZTLorentzVector
double charge() const
Return charge of the particle.
Definition: Particle.h:137
double getMotherDeltaR() const
Get delta R to mother particle (only makes sense if mother and daughter charged). ...
Definition: Particle.h:202
const double nuclElLength[numHadrons]
elastic interaction length in Silicon at 1 TeV per particle
static std::once_flag initializeOnce
static int theId[numHadrons]
The pdgIDs of the Geant4 particles.
Implementation of nuclear interactions of hadrons in the tracker layers (based on FTF model of Geant4...
#define DEFINE_EDM_PLUGIN(factory, type, name)
double flatShoot(double xmin=0.0, double xmax=1.0) const
Definition of a generic FastSim Particle which can be propagated through the detector (formerly Parti...
Definition: Particle.h:16
~NuclearInteractionFTF() override
Default destructor.
static const int numHadrons
Number of G4 hadrons.