source: trunk/source/processes/electromagnetic/lowenergy/test/hTest/mylar.out @ 1199

Last change on this file since 1199 was 1199, checked in by garnier, 15 years ago

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1**********************************************
2 Geant4 version $Name: emlowen-V09-02-64 $
3                                (06-Apr-2001)
4             Copyright : Geant4 Collaboration
5**********************************************
6Detector Construction is defined
7HsPhysicsList: <LowEnergy> EMPhysicsList is set
8HsPhysicsList: <none> HadronicPhysicsList is set
9Physics List is defined
10User actions will be initialized
11hTestPrimaryGeneratorMessenger: Construct
12hTestPrimaryGeneratorAction is defined
13EventAction is defined
14TrackingAction is defined
15UI interface is started
16#=======================================================
17# Macro file "mylar.mac" for the Mylar test by hTest.cc
18# 10.04.01 V.Ivanchenko
19#=======================================================
20/run/verbose               2
21/step/verbose              0
22/tracking/verbose          0
23/stepping/verbose          0
24/event/verbose             0
25/hTest/verbose             0
26#
27/hTest/physics/cutGamma    0.01  mm
28/hTest/physics/cutElectron 0.001 mm
29/hTest/physics/MaxStep     1.0 mm
30hTestPhysicsList: MaxChargedStep = 1 mm
31/hTest/physics/EMList      LowEnergy
32/hTest/physics/HadronList  LowEnergy
33HsPhysicsList: <LowEnergy> HadronicPhysicsList is set
34/hTest/AbsorberMaterial    Mylar
35/hTest/AbsorberThick       0.001 mm
36/hTest/NumberOfAbsorbers   60
37/hTest/WorldMaterial       Vacuum
38/hTest/numberAbsToSave     60
39/hTest/HistoName           mylar.paw
40/hTest/NumberOfEvents      1000
41#
42/gun/particle              proton
43/gun/energy                2 MeV
44
45Start initialisation
46userDetector->Construct() start.
47
48***** Table : Nb of materials = 18 *****
49
50 Material: Beryllium            density:  1.848 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:  35.267 cm
51   --->  Element: Beryllium    Z =  4.0   N =   9.0   A =   9.01 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
52
53 Material: Aluminum            density:  2.700 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   8.893 cm
54   --->  Element: Aluminum    Z = 13.0   N =  27.0   A =  26.98 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
55
56 Material: Carbon            density:  2.000 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:  21.348 cm
57   --->  Element: Carbon    Z =  6.0   N =  12.0   A =  12.01 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
58
59 Material: Silicon            density:  2.330 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   9.368 cm
60   --->  Element: Silicon    Z = 14.0   N =  28.1   A =  28.09 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
61
62 Material: liquidArgon            density:  1.390 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:  14.065 cm
63   --->  Element: liquidArgon    Z = 18.0   N =  40.0   A =  39.95 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
64
65 Material: Iron            density:  7.870 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   1.759 cm
66   --->  Element: Iron    Z = 26.0   N =  55.9   A =  55.85 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
67
68 Material: Copper            density:  8.960 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   1.436 cm
69   --->  Element: Copper    Z = 29.0   N =  63.5   A =  63.55 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
70
71 Material: Gold            density: 19.320 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   3.344 mm
72   --->  Element: Gold    Z = 79.0   N = 197.0   A = 196.97 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
73
74 Material: Lead            density: 11.350 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   5.612 mm
75   --->  Element: Lead    Z = 82.0   N = 207.2   A = 207.19 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
76
77 Material: Water        H_2O   density:  1.000 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:  36.092 cm
78   --->  Element: HydrogenH   Z =  1.0   N =   1.0   A =   1.01 g/mole  fractionMass:  11.21 %  Abundance  66.67 %
79   --->  Element: OxygenO   Z =  8.0   N =  16.0   A =  16.00 g/mole  fractionMass:  88.79 %  Abundance  33.33 %
80
81 Material: Methane        CH_4   density:  0.667 mg/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength: 696.375 m
82   --->  Element: HydrogenH   Z =  1.0   N =   1.0   A =   1.01 g/mole  fractionMass:  25.19 %  Abundance  80.00 %
83   --->  Element: CarbonC   Z =  6.0   N =  12.0   A =  12.00 g/mole  fractionMass:  74.81 %  Abundance  20.00 %
84
85 Material: Graphite        Graphite   density:  2.265 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:  18.834 cm
86   --->  Element: CarbonC   Z =  6.0   N =  12.0   A =  12.00 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
87
88 Material: GaAs        GaAs   density:  5.318 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   2.293 cm
89   --->  Element: GalliumGa   Z = 31.0   N =  69.7   A =  69.72 g/mole  fractionMass:  48.20 %  Abundance  50.00 %
90   --->  Element: ArsenicumAs   Z = 33.0   N =  74.9   A =  74.92 g/mole  fractionMass:  51.80 %  Abundance  50.00 %
91
92 Material: Ethane        C_2H_6   density: 424.100 mg/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   1.076 m
93   --->  Element: HydrogenH   Z =  1.0   N =   1.0   A =   1.01 g/mole  fractionMass:  20.16 %  Abundance  75.00 %
94   --->  Element: CarbonC   Z =  6.0   N =  12.0   A =  12.00 g/mole  fractionMass:  79.84 %  Abundance  25.00 %
95
96 Material: CsI        CsI   density:  4.530 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:   1.852 cm
97   --->  Element: CesiumCs   Z = 55.0   N = 132.9   A = 132.91 g/mole  fractionMass:  51.15 %  Abundance  50.00 %
98   --->  Element: IodideI   Z = 53.0   N = 126.9   A = 126.90 g/mole  fractionMass:  48.85 %  Abundance  50.00 %
99
100 Material: Air            density:  1.290 mg/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength: 285.161 m
101   --->  Element: NitrogenN   Z =  7.0   N =  14.0   A =  14.01 g/mole  fractionMass:  70.00 %  Abundance  72.71 %
102   --->  Element: OxygenO   Z =  8.0   N =  16.0   A =  16.00 g/mole  fractionMass:  30.00 %  Abundance  27.29 %
103
104 Material: Mylar            density:  1.390 g/cm3  temperature: 273.15 K  pressure:   1.00 atm  RadLength:  28.868 cm
105   --->  Element: CarbonC   Z =  6.0   N =  12.0   A =  12.00 g/mole  fractionMass:  55.00 %  Abundance  30.30 %
106   --->  Element: HydrogenH   Z =  1.0   N =   1.0   A =   1.01 g/mole  fractionMass:   8.33 %  Abundance  54.55 %
107   --->  Element: OxygenO   Z =  8.0   N =  16.0   A =  16.00 g/mole  fractionMass:  36.67 %  Abundance  15.15 %
108
109 Material: Vacuum            density:  0.000 mg/cm3  temperature:   2.73 K  pressure:   0.00 atm  RadLength: 204727576.737 pc
110   --->  Element: Vacuum    Z =  1.0   N =   1.0   A =   1.01 g/mole  fractionMass: 100.00 %  Abundance 100.00 %
111
112
113The  WORLD   is made of  of Vacuum. The transverse size (XY) of the world is 1e+02 mm
114The ABSORBER is made of 60 items of 0.001 mm of Mylar. The transverse size (XY) is 1e+02 mm
115physicsList->Construct() start.
116LowEnergy Electromagnetic PhysicsList is initilized
117LowE EM processes for GenericIon
118LowE GenericIon
119LowE EM processes for He3
120LowE He3
121LowE EM processes for IonAr40
122LowE IonAr40
123LowE EM processes for IonC12
124LowE IonC12
125LowE EM processes for IonFe56
126LowE IonFe56
127LowE EM processes for alpha
128LowE alpha
129LowE EM processes for anti_kaon0
130LowE EM processes for anti_lambda
131LowE EM processes for anti_neutron
132LowE EM processes for anti_nu_e
133LowE EM processes for anti_nu_mu
134LowE EM processes for anti_omega-
135LowE EM processes for anti_proton
136LowE anti_proton
137LowE EM processes for anti_sigma+
138LowE EM processes for anti_sigma-
139LowE EM processes for anti_sigma0
140LowE EM processes for anti_xi-
141LowE EM processes for anti_xi0
142LowE EM processes for chargedgeantino
143LowE EM processes for deuteron
144LowE deuteron
145LowE EM processes for e+
146LowE e+
147LowE EM processes for e-
148LowE e-
149>>>>>>>>> New G4LowEnergyIonisation 0x892c358
150LowE EM processes for eta
151LowE EM processes for eta_prime
152LowE EM processes for gamma
153LowE gamma
154LowE EM processes for geantino
155LowE EM processes for kaon+
156LowE kaon+
157LowE EM processes for kaon-
158LowE kaon-
159LowE EM processes for kaon0
160LowE EM processes for kaon0L
161LowE EM processes for kaon0S
162LowE EM processes for lambda
163LowE EM processes for mu+
164LowE mu+
165MuonMinusCaptureAtRest is created
166LowE EM processes for mu-
167LowE mu-
168MuonMinusCaptureAtRest is created
169LowE EM processes for neutron
170LowE EM processes for nu_e
171LowE EM processes for nu_mu
172LowE EM processes for omega-
173LowE EM processes for pi+
174LowE pi+
175LowE EM processes for pi-
176LowE pi-
177LowE EM processes for pi0
178LowE EM processes for proton
179LowE proton
180LowE EM processes for sigma+
181LowE sigma+
182LowE EM processes for sigma-
183LowE sigma-
184LowE EM processes for sigma0
185LowE EM processes for triton
186LowE triton
187LowE EM processes for xi-
188LowE EM processes for xi0
189LowEnergy Hadronic PhysicsList is initilized
190physicsList->setCut() start.
191hTestPhysicsList: Set cuts for all particles
192
193msc:   Tables of transport mean free paths.
194          New model of MSC , computes the lateral
195          displacement of the particle , too.
196        PhysicsTables from 1e+02 eV to 1e+02 TeV in 100 bins.
197*** LEion using Tcut =0.00048
198*** LEion using Tcut =0.00082
199*** LEion using Tcut =0.00057
200*** LEion using Tcut =0.00066
201*** LEion using Tcut =0.00026
202*** LEion using Tcut =0.0036
203*** LEion using Tcut =0.0042
204*** LEion using Tcut =0.0088
205*** LEion using Tcut =0.0044
206*** LEion using Tcut =0.0002
207*** LEion using Tcut =1e-05
208*** LEion using Tcut =0.00069
209*** LEion using Tcut =0.0019
210*** LEion using Tcut =5.5e-05
211*** LEion using Tcut =0.0013
212*** LEion using Tcut =1e-05
213*** LEion using Tcut =0.00034
214*** LEion using Tcut =1e-05
215
216LowEnergyIoni:  Low energy ionisation code with implementation of the continuous dE/dx part.
217 At present it can be used for electrons  in the energy range [250eV,100GeV]
218 the process must work with G4LowEnergyBremsstrahlung
219*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Beryllium
220*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Aluminum
221*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Carbon
222*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Silicon
223*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material liquidArgon
224*** LE Bremsstrahlung using Gamma Tcut = 0.0019 for material Iron
225*** LE Bremsstrahlung using Gamma Tcut = 0.0022 for material Copper
226*** LE Bremsstrahlung using Gamma Tcut = 0.0084 for material Gold
227*** LE Bremsstrahlung using Gamma Tcut = 0.006 for material Lead
228*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Water
229*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Methane
230*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Graphite
231*** LE Bremsstrahlung using Gamma Tcut = 0.0017 for material GaAs
232*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Ethane
233*** LE Bremsstrahlung using Gamma Tcut = 0.0022 for material CsI
234*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Air
235*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Mylar
236*** LE Bremsstrahlung using Gamma Tcut = 1e-05 for material Vacuum
237
238LowEnBrem:  Total cross sections from EEDL database,Gamma energy sampled from a parametrised formula.Implementation of the continuous dE/dx part.
239 At present it can be used for electrons  in the energy range [250eV,100GeV]
240 the process must work with G4LowEnergyIonisation
241
242annihil:  Total cross section from Heilter formula (annihilation into 2 photons).
243        gamma energies sampled according Heitler
244        PhysicsTables from 10 keV to 10 TeV in 100 bins.
245
246msc:   Tables of transport mean free paths.
247          New model of MSC , computes the lateral
248          displacement of the particle , too.
249        PhysicsTables from 1e+02 eV to 1e+02 TeV in 100 bins.
250
251MuIoni:  knock-on electron cross sections .
252          Good description above the mean excitation energy.
253         delta ray energy sampled from  differential Xsection.
254      PhysicsTables from 1 keV to 1e+03 PeV in 150 bins.
255
256MuBrems:  theoretical cross section
257          Good description up to 1000 PeV.
258    PhysicsTables from 1 keV to 1e+03 PeV in 150 bins.
259
260MuPairProd:  theoretical cross sections
261          Good description up to 1000 PeV.
262    PhysicsTables from 1 keV to 1e+03 PeV in 150 bins.
263
264msc:   Tables of transport mean free paths.
265          New model of MSC , computes the lateral
266          displacement of the particle , too.
267        PhysicsTables from 1e+02 eV to 1e+02 TeV in 100 bins.
268
269hLowEIoni:    Knock-on electron cross sections .
270        Good description above the mean excitation energy.
271        Delta ray energy sampled from  differential Xsection.
272        PhysicsTables from 10 eV  to 1e+02 TeV  in 200 bins.
273        Electronic stopping power model is  ICRU_R49p
274        from 1 keV  to 2 MeV .
275
276        Parametrisation model for antiprotons is  ICRU_R49p
277        from 50 keV  to 2 MeV .
278        Parametrization of the Barkas effect is switched on.
279        Nuclear stopping power model is ICRU_R49
280           material       min.delta energy(keV)
281
282Methane          0.043
283Air          0.086
284Vacuum          0.021
285============= The cut Energy ==============================
286                      gamma            e-           
287Cut in range                 10 mum             1 mum
288Cut in energy
289 Beryllium                           10 eV           484 eV
290   Aluminum                           10 eV           820 eV
291   Carbon                           10 eV           570 eV
292   Silicon                           10 eV           656 eV
293   liquidArgon                           10 eV           259 eV
294   Iron                          1.9 keV          3.56 keV
295   Copper                         2.16 keV          4.15 keV
296   Gold                         8.35 keV          8.77 keV
297   Lead                         5.98 keV          4.44 keV
298   Water                           10 eV           202 eV
299   Methane                           10 eV            10 eV
300   Graphite                           10 eV           691 eV
301   GaAs                         1.72 keV          1.93 keV
302   Ethane                           10 eV          54.8 eV
303   CsI                         2.22 keV          1.33 keV
304   Air                           10 eV            10 eV
305   Mylar                           10 eV           339 eV
306   Vacuum                           10 eV            10 eV
307===================================================
308Start event loop for 1000 events
309hTestHisto: Histograms will be saved to the file <mylar.paw>
310Start closing geometry.
311Start Run processing.
312Run terminated.
313Run Summary
314  Number of events processed : 1000
315  User=1.4e+02s Real=1.4e+02s Sys=0.99s
316hTestHisto: End of run actions are started
317========================================================
318Range(mm)= 0.05319; Stragling(mm)= 0.0008314 +- 2.6e-05
319========================================================
320Histograms and Ntuples are saved
321runManager will be deleted
322G4 kernel has come to Quit state.
323Deletion of G4 kernel class start.
324UserDetectorConstruction deleted.
325UserPhysicsList deleted.
326UserPrimaryGenerator deleted.
327G4SDManager deleted.
328EventManager deleted.
329UImanager deleted.
330StateManager deleted.
331RunManager is deleting.
332runManager is deleted
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