source: trunk/examples/advanced/lAr_calorimeter/src/FCALMaterialConsultant.cc @ 1314

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25//
26//   Author:           Mathieu Fontaine, Rachid Mazini
27//                     fontaine@lps.umontreal.ca  Rachid.Mazini@cern.ch
28//
29//   Language:         C++
30//   Tested on:        g++
31//   Prerequisites:    None
32//   Purpose:          This is the place, where all the materials get defined.
33//                     Instead of coding those materials locally, where they
34//                     are needed, it is much easier to maintain, if we keep
35//                     all materials for a detector component in one place.
36//                     Everybody who needs some of these parameters, can
37//                     query the FCALMaterialConsultant.
38//                 --> This class is made a singleton by making the
39//                     constructor private and hiding it behind the
40//                     construct() method, which creates a first instance
41//                     if it does not exist. This is to prevent multiple
42//                     copies of this consultant with potentially different
43//                     contents (once the data is loaded from files and/or
44//                     can be changed by user interaction).
45//                 --> The method Material is provided to access to the data
46//                     stored, a routine ShowMeAllYouKnow can be queried to
47//                     dump the entire knowledge of this consultant.
48//
49//                   * Ideas on how the theFCALMaterialConsultant pointer
50//                     is made static are borrowed from G4VisManager.
51//
52//----------------------------------------------------------------------------------
53
54#include "FCALMaterialConsultant.hh"
55
56#include "globals.hh"
57
58FCALMaterialConsultant *FCALMaterialConsultant::theFCALMaterialConsultant = NULL;
59
60FCALMaterialConsultant::FCALMaterialConsultant()
61{
62  G4double a,z,density,fractionmass;
63  G4String name,symbol;
64  G4int nel,natoms;
65
66  //------------
67  // elements
68  //------------
69
70  a=1.01*g/mole;
71  elH=new G4Element(name="Hydrogen",symbol="H2",z=1.,a);
72
73  a=2.01*g/mole;
74  elD=new G4Element(name="Deuterium",symbol="D",z=1.,a);
75
76  a=4.*g/mole;
77  elHe=new G4Element(name="Helium",symbol="He",z=2.,a);
78
79  a=6.94*g/mole;
80  elLi=new G4Element(name="Lithium",symbol="Li",z=3.,a);
81
82  a=9.01*g/mole;
83  elBe=new G4Element(name="Berillium",symbol="Be",z=4.,a);
84
85  a=12.01*g/mole;
86  elC=new G4Element(name="Carbon",symbol="C",z=6.,a);
87
88  a=14.01*g/mole;
89  elN=new G4Element(name="Nitrogen",symbol="N2",z=7.,a);
90
91  a=16.*g/mole;
92  elO=new G4Element(name="Oxygen",symbol="O2",z=8.,a);
93
94  a=20.18*g/mole;
95  elNe=new G4Element(name="Neon",symbol="Ne",z=10.,a);
96
97  a=22.99*g/mole;
98  elNa=new G4Element(name="Sodium",symbol="Na",z=11.,a);
99
100  a=26.98*g/mole;
101  elAl=new G4Element(name="Aluminium",symbol="Al",z=13.,a);
102
103  a=28.085*g/mole;
104  elSi=new G4Element(name="Silicon",symbol="Si",z=14.,a);
105
106  a=40.08*g/mole;
107  elCa=new G4Element(name="Calcium",symbol="Ca",z=20.,a);
108
109  a=55.850*g/mole;
110  elFe=new G4Element(name="Iron",symbol="Fe",z=26.,a);
111
112  a=63.54*g/mole;
113  elCu=new G4Element(name="Copper",symbol="Cu",z=29.,a);
114
115  a=183.85*g/mole;
116  elW=new G4Element(name="Tungstenm",symbol="W",z=74.,a);
117
118  a=207.19*g/mole;
119  elPb=new G4Element(name="Lead",symbol="Pb",z=82.,a);
120
121  a=238.03*g/mole;
122  elU=new G4Element(name="Uranium",symbol="U",z=92.,a);
123
124
125  //-------------------
126  // simple materials
127  //-------------------
128
129  density = 2.7*g/cm3;
130  a = 26.98*g/mole;
131  Aluminium = new G4Material(name="Aluminium",z=13.,a,density);
132 
133  density = 7.87*g/cm3;
134  a = 55.85*g/mole;
135  Iron = new G4Material(name="Iron",z=26.,a,density);
136
137  density = 8.96*g/cm3;
138  a = 63.54*g/mole;
139  Copper = new G4Material(name="Copper",z=29.,a,density);
140
141  density = 19.3*g/cm3;
142  a = 183.85*g/mole;
143  Tungsten = new G4Material(name="Tungsten",z=74.,a,density);
144
145  density = 11.35*g/cm3;
146  a = 207.19*g/mole;
147  Lead = new G4Material(name="Lead",z=82.,a,density);
148
149  density = 1.4*g/cm3;
150  a = 39.95*g/mole;
151  LiquidArgon = new G4Material(name="LiquidArgon",z=18.,a,density);
152
153  density = 0.002*g/cm3;
154  a = 39.95*g/mole;
155  ArgonGas = new G4Material(name="ArgonGas",z=18.,a,density);
156
157  density = 8.96*g/cm3;
158  a = 58.69*g/mole;
159  Nickel = new G4Material(name="Nickel",z=28.,a,density);
160
161 
162  //------------------
163  // mixtures
164  //------------------
165
166  density = 1.290*mg/cm3;
167  Air = new G4Material(name="Air",density, nel=2);
168  Air->AddElement(elN, 0.7);
169  Air->AddElement(elO, 0.3);
170
171  RhoaCell = Air;
172
173
174  density              = 1.e-5*g/cm3;
175  G4double pressure    = 2.e-2*bar;
176  G4double temperature = STP_Temperature;         //from PhysicalConstants.h
177  G4Material* Vacuum = new G4Material(name="Vacuum", density, nel=1,
178                                    kStateGas,temperature,pressure);
179  Vacuum->AddMaterial(Air, fractionmass=1.);
180
181
182  density = 0.002*g/cm3;
183  CO2 = new G4Material(name="CO2",density,nel=2);
184  CO2->AddElement(elC, natoms=1);
185  CO2->AddElement(elO, natoms=2);
186
187  density = 1.42*g/cm3;
188  Kapton = new G4Material(name="Kapton",density, nel=4);
189  Kapton->AddElement(elH, fractionmass = 0.0273);
190  Kapton->AddElement(elC, fractionmass = 0.7213);
191  Kapton->AddElement(elN, fractionmass = 0.0765);
192  Kapton->AddElement(elO, fractionmass = 0.1749);
193
194  density = 1.032*g/cm3;
195  Polystyrene = new G4Material(name="Polystyrene",density,nel=2);
196  Polystyrene->AddElement(elC, natoms=8);
197  Polystyrene->AddElement(elH, natoms=8);
198
199  density = 5.185*g/cm3;
200  FCAL1CuArKap = new G4Material(name="FCAL1CuArKap",density,nel=3);
201  FCAL1CuArKap->AddMaterial(Copper, fractionmass = 0.864);
202  FCAL1CuArKap->AddMaterial(Kapton, fractionmass = 0.068);
203  FCAL1CuArKap->AddMaterial(LiquidArgon, fractionmass = 0.068);
204
205  density = 8.701*g/cm3;
206  FCAL1CuAr = new G4Material(name="FCAL1CuAr",density,nel=2);
207  FCAL1CuAr->AddMaterial(Copper, fractionmass = 0.994); 
208  FCAL1CuAr->AddMaterial(LiquidArgon, fractionmass = 0.006);
209
210  density = 5.185*g/cm3;
211  FCAL2CuArKap = new G4Material(name="FCAL2CuArKap",density,nel=3);
212  FCAL2CuArKap->AddMaterial(Copper, fractionmass = 0.864);
213  FCAL2CuArKap->AddMaterial(Kapton, fractionmass = 0.068);
214  FCAL2CuArKap->AddMaterial(LiquidArgon, fractionmass = 0.068);
215
216  density = 18.6*g/cm3;
217  FCAL2WFeNi = new G4Material(name="FCAL2WFeNi",density,nel=3);
218  FCAL2WFeNi->AddMaterial(Tungsten, fractionmass = 0.97);
219  FCAL2WFeNi->AddMaterial(Iron, fractionmass = 0.01);
220  FCAL2WFeNi->AddMaterial(Nickel, fractionmass = 0.02);
221 
222  density = 15.366*g/cm3;
223  FCAL2WFeNiCuAr = new G4Material(name="FCAL2WFeNiCuAr",density,nel=3);
224  FCAL2WFeNiCuAr->AddMaterial(FCAL2WFeNi, fractionmass = 0.913);
225  FCAL2WFeNiCuAr->AddMaterial(Copper, fractionmass = 0.077);
226  FCAL2WFeNiCuAr->AddMaterial(LiquidArgon, fractionmass = 0.01);
227
228  density = 0.002*g/cm3;
229  MWPCArCO2 = new G4Material(name="MWPCArCO2",density,nel=2);
230  MWPCArCO2->AddMaterial(CO2, fractionmass = 0.2);
231  MWPCArCO2->AddMaterial(ArgonGas, fractionmass = 0.8);
232
233
234  // must  check recipe for concrete
235
236  density = 2.5*g/cm3;
237  ShieldingConcrete = new G4Material(name="ShieldingConcrete",density,nel=6);
238  ShieldingConcrete->AddElement(elO, fractionmass = 0.52);
239  ShieldingConcrete->AddElement(elSi, fractionmass = 0.325);
240  ShieldingConcrete->AddElement(elCa, fractionmass = 0.06);
241  ShieldingConcrete->AddElement(elNa, fractionmass = 0.015);
242  ShieldingConcrete->AddElement(elFe, fractionmass = 0.04);
243  ShieldingConcrete->AddElement(elAl, fractionmass = 0.04);
244
245  // must have the right composition for stainless steel
246
247  density = 8.96*g/cm3;
248  StainlessSteel = new G4Material(name="StainlessSteel",density,nel=1);
249  StainlessSteel->AddElement(elO, fractionmass = 1.);
250
251}
252
253FCALMaterialConsultant * FCALMaterialConsultant::construct()
254{
255  if (theFCALMaterialConsultant == NULL) {
256    theFCALMaterialConsultant = new FCALMaterialConsultant();
257  }
258  return theFCALMaterialConsultant;
259}
260
261G4Material * FCALMaterialConsultant::Material(G4String what)
262{
263  G4Material* material = 0;
264  if(what == "Air")               material = Air;
265  if(what == "Vacuum")            material = Vacuum;
266  if(what == "LiquidArgon")       material = LiquidArgon;
267  if(what == "Aluminium")         material = Aluminium;
268  if(what == "Iron")              material = Iron;
269  if(what == "Copper")            material = Copper;
270  if(what == "Tungsten")          material = Tungsten;
271  if(what == "Lead")              material = Lead;
272  if(what == "CO2")               material = CO2;
273  if(what == "ArgonGas")          material = ArgonGas;
274  if(what == "ShieldingConcrete") material = ShieldingConcrete;
275  if(what == "Polystyrene")       material = Polystyrene;
276  if(what == "StainlessSteel")    material = StainlessSteel;
277  if(what == "Nickel")            material = Nickel;
278  if(what == "FCAL1CuArKap")      material = FCAL1CuArKap;
279  if(what == "FCAL1CuAr")         material = FCAL1CuAr;
280  if(what == "FCAL2CuArKap")      material = FCAL2CuArKap;
281  if(what == "FCAL2WFeNi")        material = FCAL2WFeNi;
282  if(what == "FCAL2WFeNiCuAr")    material = FCAL2WFeNiCuAr;
283  if(what == "MWPCArCO2")         material = MWPCArCO2;
284  if(what == "RhoaCell")          material = RhoaCell;
285
286  return material;
287}
288                                 
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