source: trunk/geant4/N03/exampleN03.out @ 486

Last change on this file since 486 was 483, checked in by garnier, 17 years ago

r569@mac-90108: laurentgarnier | 2007-06-05 15:53:34 +0200
version contre geant4.8.2.p01

File size: 27.1 KB
Line 
1
2*************************************************************
3 Geant4 version Name: geant4-08-02-patch-01-ref    (23-February-2007)
4                      Copyright : Geant4 Collaboration
5                      Reference : NIM A 506 (2003), 250-303
6                            WWW : http://cern.ch/geant4
7*************************************************************
8
9
10***** Table : Nb of materials = 13 *****
11
12 Material: Aluminium     density:  2.700 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:   8.893 cm
13   --->  Element: Aluminium ( )   Z = 13.0   N =  27.0   A =  26.98 g/mole  ElmMassFraction: 100.00 %  ElmAbundance 100.00 %
14
15 Material: liquidArgon     density:  1.390 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:  14.065 cm
16   --->  Element: liquidArgon ( )   Z = 18.0   N =  40.0   A =  39.95 g/mole  ElmMassFraction: 100.00 %  ElmAbundance 100.00 %
17
18 Material:     Lead     density: 11.350 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:   5.612 mm
19   --->  Element: Lead ( )   Z = 82.0   N = 207.2   A = 207.19 g/mole  ElmMassFraction: 100.00 %  ElmAbundance 100.00 %
20
21 Material:    Water     density:  1.000 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:  36.092 cm
22   --->  Element: Hydrogen (H)   Z =  1.0   N =   1.0   A =   1.01 g/mole  ElmMassFraction:  11.21 %  ElmAbundance  66.67 %
23   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  88.79 %  ElmAbundance  33.33 %
24
25 Material: Scintillator     density:  1.032 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:  42.549 cm
26   --->  Element: Carbon (C)   Z =  6.0   N =  12.0   A =  12.01 g/mole  ElmMassFraction:  91.45 %  ElmAbundance  47.37 %
27   --->  Element: Hydrogen (H)   Z =  1.0   N =   1.0   A =   1.01 g/mole  ElmMassFraction:   8.55 %  ElmAbundance  52.63 %
28
29 Material:    Mylar     density:  1.397 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:  28.599 cm
30   --->  Element: Carbon (C)   Z =  6.0   N =  12.0   A =  12.01 g/mole  ElmMassFraction:  62.49 %  ElmAbundance  45.45 %
31   --->  Element: Hydrogen (H)   Z =  1.0   N =   1.0   A =   1.01 g/mole  ElmMassFraction:   4.20 %  ElmAbundance  36.36 %
32   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  33.30 %  ElmAbundance  18.18 %
33
34 Material:   quartz     density:  2.200 g/cm3   temperature: 273.15 K  pressure:   1.00 atm  RadLength:  12.295 cm
35   --->  Element: Silicon (Si)   Z = 14.0   N =  28.1   A =  28.09 g/mole  ElmMassFraction:  46.75 %  ElmAbundance  33.33 %
36   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  53.25 %  ElmAbundance  66.67 %
37
38 Material:      Air     density:  1.290 mg/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength: 285.161 m 
39   --->  Element: Nitrogen (N)   Z =  7.0   N =  14.0   A =  14.01 g/mole  ElmMassFraction:  70.00 %  ElmAbundance  72.71 %
40   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  30.00 %  ElmAbundance  27.29 %
41
42 Material:  Aerogel     density: 200.000 mg/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   1.493 m 
43   --->  Element: Silicon (Si)   Z = 14.0   N =  28.1   A =  28.09 g/mole  ElmMassFraction:  29.22 %  ElmAbundance  11.12 %
44   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  66.49 %  ElmAbundance  44.42 %
45   --->  Element: Hydrogen (H)   Z =  1.0   N =   1.0   A =   1.01 g/mole  ElmMassFraction:   4.19 %  ElmAbundance  44.37 %
46   --->  Element: Carbon (C)   Z =  6.0   N =  12.0   A =  12.01 g/mole  ElmMassFraction:   0.10 %  ElmAbundance   0.09 %
47
48 Material: CarbonicGas     density: 27.000 mg/cm3  temperature: 325.00 K  pressure:  50.00 atm  RadLength:  13.406 m 
49   --->  Element: Carbon (C)   Z =  6.0   N =  12.0   A =  12.01 g/mole  ElmMassFraction:  27.29 %  ElmAbundance  33.33 %
50   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  72.71 %  ElmAbundance  66.67 %
51
52 Material: WaterSteam     density:  0.300 mg/cm3  temperature: 500.00 K  pressure:   2.00 atm  RadLength:   1.203 km
53   --->  Element: Hydrogen (H)   Z =  1.0   N =   1.0   A =   1.01 g/mole  ElmMassFraction:  11.21 %  ElmAbundance  66.67 %
54   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  88.79 %  ElmAbundance  33.33 %
55
56 Material: Galactic     density:  0.000 mg/cm3  temperature:   2.73 K  pressure:   0.00 atm  RadLength: 204727576.737 pc
57   --->  Element: Galactic ( )   Z =  1.0   N =   1.0   A =   1.01 g/mole  ElmMassFraction: 100.00 %  ElmAbundance 100.00 %
58
59 Material:     Beam     density:  0.010 mg/cm3  temperature: 273.15 K  pressure:   0.02 atm  RadLength:  36.786 km
60   --->  Element: Nitrogen (N)   Z =  7.0   N =  14.0   A =  14.01 g/mole  ElmMassFraction:  70.00 %  ElmAbundance  72.71 %
61   --->  Element: Oxygen (O)   Z =  8.0   N =  16.0   A =  16.00 g/mole  ElmMassFraction:  30.00 %  ElmAbundance  27.29 %
62
63
64Visualization Manager instantiating...
65Visualization Manager initialising...
66Registering graphics systems...
67
68You have successfully registered the following graphics systems.
69Current available graphics systems are:
70  ASCIITree (ATree)
71  DAWNFILE (DAWNFILE)
72  GAGTree (GAGTree)
73  G4HepRep (HepRepXML)
74  G4HepRepFile (HepRepFile)
75  RayTracer (RayTracer)
76  VRML1FILE (VRML1FILE)
77  VRML2FILE (VRML2FILE)
78
79Registering model factories...
80
81You have successfully registered the following model factories.
82Registered model factories:
83  generic
84  drawByCharge
85  drawByParticleID
86  drawByOriginVolume
87  drawByAttribute
88
89Registered filter factories:
90  chargeFilter
91  particleFilter
92  originVolumeFilter
93  attributeFilter
94
95
96------------------------------------------------------------
97---> The calorimeter is 10 layers of: [ 10mm of Lead + 5mm of liquidArgon ]
98------------------------------------------------------------
99ExN03PhysicsList::SetCuts:CutLength : 1 mm
100
101phot:  Total cross sections from Sandia parametrisation.
102      Sampling according PhotoElectric model
103
104compt:  Total cross sections has a good parametrisation from 10 KeV to (100/Z) GeV
105      Sampling according Klein-Nishina model
106      tables are built for  gamma
107      Lambda tables from 100 eV  to 100 GeV in 90 bins.
108
109conv:  Total cross sections has a good parametrisation from 1.5 MeV to 100 GeV for all Z;
110      sampling secondary e+e- according Bethe-Heitler model
111      tables are built for  gamma
112      Lambda tables from 1.022 MeV to 100 GeV in 100 bins.
113
114msc:  Model variant of multiple scattering for e-
115      Lambda tables from 100 eV  to 100 TeV in 120 bins.
116      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
117
118eIoni:   tables are built for  e-
119      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
120      Lambda tables from threshold to 100 TeV in 120 bins.
121      Delta cross sections and sampling from MollerBhabha model
122      Good description from 1 KeV to 100 GeV.
123      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
124
125eBrem:   tables are built for  e-
126      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
127      Lambda tables from threshold to 100 TeV in 120 bins.
128      Total cross sections and sampling from StandBrem model (based on the EEDL data library)
129      Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV.
130
131eIoni:   tables are built for  e+
132      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
133      Lambda tables from threshold to 100 TeV in 120 bins.
134      Delta cross sections and sampling from MollerBhabha model
135      Good description from 1 KeV to 100 GeV.
136      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
137
138eBrem:   tables are built for  e+
139      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
140      Lambda tables from threshold to 100 TeV in 120 bins.
141      Total cross sections and sampling from StandBrem model (based on the EEDL data library)
142      Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV.
143
144annihil:       Sampling according eplus2gg model
145      tables are built for  e+
146      Lambda tables from 100 eV  to 100 TeV in 120 bins.
147
148msc:  Model variant of multiple scattering for proton
149      Lambda tables from 100 eV  to 100 TeV in 120 bins.
150      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
151
152hIoni:   tables are built for  proton
153      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
154      Lambda tables from threshold to 100 TeV in 120 bins.
155      Scaling relation is used from proton dE/dx and range.
156      Delta cross sections and sampling from BetheBloch model for scaled energy > 2 MeV
157      Parametrisation from Bragg for protons below.
158      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
159
160hIoni:   tables are built for  anti_proton
161      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
162      Lambda tables from threshold to 100 TeV in 120 bins.
163      Scaling relation is used from proton dE/dx and range.
164      Delta cross sections and sampling from BetheBloch model for scaled energy > 2 MeV
165      Parametrisation from Bragg for protons below.
166      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
167
168msc:  Model variant of multiple scattering for mu+
169      Lambda tables from 100 eV  to 100 TeV in 120 bins.
170      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
171
172muIoni:   tables are built for  mu+
173      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
174      Lambda tables from threshold to 100 TeV in 120 bins.
175      Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below,
176      radiative corrections for E > 1 GeV
177      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
178
179muBrems:   tables are built for  mu+
180      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
181      Lambda tables from threshold to 100 TeV in 120 bins.
182      Parametrised model
183
184muPairProd:   tables are built for  mu+
185      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
186      Lambda tables from threshold to 100 TeV in 120 bins.
187      Parametrised model
188
189muIoni:   tables are built for  mu-
190      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
191      Lambda tables from threshold to 100 TeV in 120 bins.
192      Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below,
193      radiative corrections for E > 1 GeV
194      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
195
196muBrems:   tables are built for  mu-
197      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
198      Lambda tables from threshold to 100 TeV in 120 bins.
199      Parametrised model
200
201muPairProd:   tables are built for  mu-
202      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
203      Lambda tables from threshold to 100 TeV in 120 bins.
204      Parametrised model
205
206hIoni:   tables are built for  pi+
207      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
208      Lambda tables from threshold to 100 TeV in 120 bins.
209      Scaling relation is used from proton dE/dx and range.
210      Delta cross sections and sampling from BetheBloch model for scaled energy > 0.297504 MeV
211      Parametrisation from Bragg for protons below.
212      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
213
214msc:  Model variant of multiple scattering for pi-
215      Lambda tables from 100 eV  to 100 TeV in 120 bins.
216      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
217
218hIoni:   tables are built for  pi-
219      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
220      Lambda tables from threshold to 100 TeV in 120 bins.
221      Scaling relation is used from proton dE/dx and range.
222      Delta cross sections and sampling from BetheBloch model for scaled energy > 0.297504 MeV
223      Parametrisation from Bragg for protons below.
224      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
225
226========= Table of registered couples ==============================
227
228Index : 0     used in the geometry : Yes     recalculation needed : No
229 Material : Galactic
230 Range cuts        :  gamma 1 mm     e- 1 mm     e+ 1 mm
231 Energy thresholds :  gamma 990 eV     e- 990 eV     e+ 990 eV
232 Region(s) which use this couple :
233    DefaultRegionForTheWorld
234
235Index : 1     used in the geometry : Yes     recalculation needed : No
236 Material : Lead
237 Range cuts        :  gamma 1 mm     e- 1 mm     e+ 1 mm
238 Energy thresholds :  gamma 100.511 keV    e- 1.37814 MeV    e+ 1.28002 MeV
239 Region(s) which use this couple :
240    DefaultRegionForTheWorld
241
242Index : 2     used in the geometry : Yes     recalculation needed : No
243 Material : liquidArgon
244 Range cuts        :  gamma 1 mm     e- 1 mm     e+ 1 mm
245 Energy thresholds :  gamma 6.17835 keV    e- 342.891 keV    e+ 334.551 keV
246 Region(s) which use this couple :
247    DefaultRegionForTheWorld
248
249====================================================================
250
251### Run 0 start.
252
253---> Begin of event: 0
254
255--------- Ranecu engine status ---------
256 Initial seed (index) = 0
257 Current couple of seeds = 9876, 54321
258----------------------------------------
259---> End of event: 0
260   Absorber: total energy: 255.24989 MeV       total track length: 17.775532 cm
261        Gap: total energy: 12.751693 MeV       total track length: 6.4347173 cm
262
263--------------------End of Run------------------------------
264
265 mean Energy in Absorber : 255.24989 MeV +- 0 eV
266 mean Energy in Gap      : 12.751693 MeV +- 0 eV
267
268 mean trackLength in Absorber : 17.775532 cm  +- 0 fm
269 mean trackLength in Gap      : 6.4347173 cm  +- 0 fm
270------------------------------------------------------------
271
272     Transportation,                msc,              hIoni,              eIoni
273              eBrem,            annihil,               phot,              compt
274               conv,             muIoni,            muBrems,         muPairProd
275              Decay
276
277phot:  Total cross sections from Sandia parametrisation.
278      Sampling according PhotoElectric model
279
280compt:  Total cross sections has a good parametrisation from 10 KeV to (100/Z) GeV
281      Sampling according Klein-Nishina model
282      tables are built for  gamma
283      Lambda tables from 100 eV  to 100 GeV in 90 bins.
284
285conv:  Total cross sections has a good parametrisation from 1.5 MeV to 100 GeV for all Z;
286      sampling secondary e+e- according Bethe-Heitler model
287      tables are built for  gamma
288      Lambda tables from 1.0219981 MeV to 100 GeV in 100 bins.
289
290msc:  Model variant of multiple scattering for e-
291      Lambda tables from 100 eV  to 100 TeV in 120 bins.
292      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
293
294eIoni:   tables are built for  e-
295      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
296      Lambda tables from threshold to 100 TeV in 120 bins.
297      Delta cross sections and sampling from MollerBhabha model
298      Good description from 1 KeV to 100 GeV.
299      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
300
301eBrem:   tables are built for  e-
302      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
303      Lambda tables from threshold to 100 TeV in 120 bins.
304      Total cross sections and sampling from StandBrem model (based on the EEDL data library)
305      Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV.
306
307eIoni:   tables are built for  e+
308      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
309      Lambda tables from threshold to 100 TeV in 120 bins.
310      Delta cross sections and sampling from MollerBhabha model
311      Good description from 1 KeV to 100 GeV.
312      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
313
314eBrem:   tables are built for  e+
315      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
316      Lambda tables from threshold to 100 TeV in 120 bins.
317      Total cross sections and sampling from StandBrem model (based on the EEDL data library)
318      Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV.
319
320annihil:       Sampling according eplus2gg model
321      tables are built for  e+
322      Lambda tables from 100 eV  to 100 TeV in 120 bins.
323
324msc:  Model variant of multiple scattering for proton
325      Lambda tables from 100 eV  to 100 TeV in 120 bins.
326      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
327
328hIoni:   tables are built for  proton
329      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
330      Lambda tables from threshold to 100 TeV in 120 bins.
331      Scaling relation is used from proton dE/dx and range.
332      Delta cross sections and sampling from BetheBloch model for scaled energy > 2 MeV
333      Parametrisation from Bragg for protons below.
334      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
335
336hIoni:   tables are built for  anti_proton
337      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
338      Lambda tables from threshold to 100 TeV in 120 bins.
339      Scaling relation is used from proton dE/dx and range.
340      Delta cross sections and sampling from BetheBloch model for scaled energy > 2 MeV
341      Parametrisation from Bragg for protons below.
342      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
343
344msc:  Model variant of multiple scattering for mu+
345      Lambda tables from 100 eV  to 100 TeV in 120 bins.
346      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
347
348muIoni:   tables are built for  mu+
349      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
350      Lambda tables from threshold to 100 TeV in 120 bins.
351      Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below,
352      radiative corrections for E > 1 GeV
353      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
354
355muBrems:   tables are built for  mu+
356      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
357      Lambda tables from threshold to 100 TeV in 120 bins.
358      Parametrised model
359
360muPairProd:   tables are built for  mu+
361      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
362      Lambda tables from threshold to 100 TeV in 120 bins.
363      Parametrised model
364
365muIoni:   tables are built for  mu-
366      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
367      Lambda tables from threshold to 100 TeV in 120 bins.
368      Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below,
369      radiative corrections for E > 1 GeV
370      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
371
372muBrems:   tables are built for  mu-
373      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
374      Lambda tables from threshold to 100 TeV in 120 bins.
375      Parametrised model
376
377muPairProd:   tables are built for  mu-
378      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
379      Lambda tables from threshold to 100 TeV in 120 bins.
380      Parametrised model
381
382hIoni:   tables are built for  pi+
383      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
384      Lambda tables from threshold to 100 TeV in 120 bins.
385      Scaling relation is used from proton dE/dx and range.
386      Delta cross sections and sampling from BetheBloch model for scaled energy > 0.29750425 MeV
387      Parametrisation from Bragg for protons below.
388      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
389
390msc:  Model variant of multiple scattering for pi-
391      Lambda tables from 100 eV  to 100 TeV in 120 bins.
392      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
393
394hIoni:   tables are built for  pi-
395      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
396      Lambda tables from threshold to 100 TeV in 120 bins.
397      Scaling relation is used from proton dE/dx and range.
398      Delta cross sections and sampling from BetheBloch model for scaled energy > 0.29750425 MeV
399      Parametrisation from Bragg for protons below.
400      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
401### Run 1 start.
402
403---> Begin of event: 0
404
405--------- Ranecu engine status ---------
406 Initial seed (index) = 0
407 Current couple of seeds = 1363400685, 1475368346
408----------------------------------------
409---> End of event: 0
410   Absorber: total energy: 273.78056 MeV       total track length: 18.732667 cm
411        Gap: total energy: 22.74196 MeV       total track length: 11.196324 cm
412
413--------------------End of Run------------------------------
414
415 mean Energy in Absorber : 273.78056 MeV +- 0 eV
416 mean Energy in Gap      : 22.74196 MeV +- 0 eV
417
418 mean trackLength in Absorber : 18.732667 cm  +- 0 fm
419 mean trackLength in Gap      : 11.196324 cm  +- 0 fm
420------------------------------------------------------------
421
422
423------------------------------------------------------------
424---> The calorimeter is 30 layers of: [ 20mm of Aluminium + 50mm of Aerogel ]
425------------------------------------------------------------
426
427phot:  Total cross sections from Sandia parametrisation.
428      Sampling according PhotoElectric model
429
430compt:  Total cross sections has a good parametrisation from 10 KeV to (100/Z) GeV
431      Sampling according Klein-Nishina model
432      tables are built for  gamma
433      Lambda tables from 100 eV  to 100 GeV in 90 bins.
434
435conv:  Total cross sections has a good parametrisation from 1.5 MeV to 100 GeV for all Z;
436      sampling secondary e+e- according Bethe-Heitler model
437      tables are built for  gamma
438      Lambda tables from 1.0219981 MeV to 100 GeV in 100 bins.
439
440msc:  Model variant of multiple scattering for e-
441      Lambda tables from 100 eV  to 100 TeV in 120 bins.
442      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
443
444eIoni:   tables are built for  e-
445      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
446      Lambda tables from threshold to 100 TeV in 120 bins.
447      Delta cross sections and sampling from MollerBhabha model
448      Good description from 1 KeV to 100 GeV.
449      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
450
451eBrem:   tables are built for  e-
452      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
453      Lambda tables from threshold to 100 TeV in 120 bins.
454      Total cross sections and sampling from StandBrem model (based on the EEDL data library)
455      Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV.
456
457eIoni:   tables are built for  e+
458      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
459      Lambda tables from threshold to 100 TeV in 120 bins.
460      Delta cross sections and sampling from MollerBhabha model
461      Good description from 1 KeV to 100 GeV.
462      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
463
464eBrem:   tables are built for  e+
465      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
466      Lambda tables from threshold to 100 TeV in 120 bins.
467      Total cross sections and sampling from StandBrem model (based on the EEDL data library)
468      Good description from 1 KeV to 100 GeV, log scale extrapolation above 100 GeV.
469
470annihil:       Sampling according eplus2gg model
471      tables are built for  e+
472      Lambda tables from 100 eV  to 100 TeV in 120 bins.
473
474msc:  Model variant of multiple scattering for proton
475      Lambda tables from 100 eV  to 100 TeV in 120 bins.
476      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
477
478hIoni:   tables are built for  proton
479      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
480      Lambda tables from threshold to 100 TeV in 120 bins.
481      Scaling relation is used from proton dE/dx and range.
482      Delta cross sections and sampling from BetheBloch model for scaled energy > 2 MeV
483      Parametrisation from Bragg for protons below.
484      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
485
486hIoni:   tables are built for  anti_proton
487      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
488      Lambda tables from threshold to 100 TeV in 120 bins.
489      Scaling relation is used from proton dE/dx and range.
490      Delta cross sections and sampling from BetheBloch model for scaled energy > 2 MeV
491      Parametrisation from Bragg for protons below.
492      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
493
494msc:  Model variant of multiple scattering for mu+
495      Lambda tables from 100 eV  to 100 TeV in 120 bins.
496      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
497
498muIoni:   tables are built for  mu+
499      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
500      Lambda tables from threshold to 100 TeV in 120 bins.
501      Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below,
502      radiative corrections for E > 1 GeV
503      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
504
505muBrems:   tables are built for  mu+
506      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
507      Lambda tables from threshold to 100 TeV in 120 bins.
508      Parametrised model
509
510muPairProd:   tables are built for  mu+
511      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
512      Lambda tables from threshold to 100 TeV in 120 bins.
513      Parametrised model
514
515muIoni:   tables are built for  mu-
516      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
517      Lambda tables from threshold to 100 TeV in 120 bins.
518      Bether-Bloch model for E > 0.2 MeV, parametrisation of Bragg peak below,
519      radiative corrections for E > 1 GeV
520      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
521
522muBrems:   tables are built for  mu-
523      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
524      Lambda tables from threshold to 100 TeV in 120 bins.
525      Parametrised model
526
527muPairProd:   tables are built for  mu-
528      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
529      Lambda tables from threshold to 100 TeV in 120 bins.
530      Parametrised model
531
532hIoni:   tables are built for  pi+
533      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
534      Lambda tables from threshold to 100 TeV in 120 bins.
535      Scaling relation is used from proton dE/dx and range.
536      Delta cross sections and sampling from BetheBloch model for scaled energy > 0.29750425 MeV
537      Parametrisation from Bragg for protons below.
538      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
539
540msc:  Model variant of multiple scattering for pi-
541      Lambda tables from 100 eV  to 100 TeV in 120 bins.
542      Boundary/stepping algorithm is active with facrange= 0.02  Step limitation 1
543
544hIoni:   tables are built for  pi-
545      dE/dx and range tables from 100 eV  to 100 TeV in 120 bins.
546      Lambda tables from threshold to 100 TeV in 120 bins.
547      Scaling relation is used from proton dE/dx and range.
548      Delta cross sections and sampling from BetheBloch model for scaled energy > 0.29750425 MeV
549      Parametrisation from Bragg for protons below.
550      Step function: finalRange(mm)= 1, dRoverRange= 0.2, integral: 1
551### Run 2 start.
552
553---> Begin of event: 0
554
555--------- Ranecu engine status ---------
556 Initial seed (index) = 0
557 Current couple of seeds = 606835024, 988202660
558----------------------------------------
559---> End of event: 0
560   Absorber: total energy: 408.66702 MeV       total track length: 97.709788 cm
561        Gap: total energy: 83.799117 MeV       total track length: 2.3229686 m 
562
563--------------------End of Run------------------------------
564
565 mean Energy in Absorber : 408.66702 MeV +- 0 eV
566 mean Energy in Gap      : 83.799117 MeV +- 0 eV
567
568 mean trackLength in Absorber : 97.709788 cm  +- 0 fm
569 mean trackLength in Gap      : 2.3229686 m   +- 0 fm
570------------------------------------------------------------
571
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