Static Public Member Functions | List of all members
genie::mueloss::MuELMaterial Class Reference

Enumeration of materials for which the MuELoss package knows how to calculate muon energy losses. More...

#include <MuELMaterial.h>

Static Public Member Functions

static const char * AsString (MuELMaterial_t material)
 
static double Density (MuELMaterial_t material)
 
static double Z (MuELMaterial_t material)
 
static double A (MuELMaterial_t material)
 

Detailed Description

Enumeration of materials for which the MuELoss package knows how to calculate muon energy losses.

W.Lohmann, R.Kopp and R.Voss, Energy Loss of Muons in the Energy Range 1-10000 GeV, CERN 85-03

Author
Costas Andreopoulos <constantinos.andreopoulos cern.ch> University of Liverpool & STFC Rutherford Appleton Laboratory

December 10, 2003

Copyright (c) 2003-2020, The GENIE Collaboration For the full text of the license visit http://copyright.genie-mc.org

Definition at line 95 of file MuELMaterial.h.

Member Function Documentation

static double genie::mueloss::MuELMaterial::A ( MuELMaterial_t  material)
inlinestatic

Definition at line 304 of file MuELMaterial.h.

305  {
306  switch(material) {
307 
308  //- compound materials
309  case eMuBariumFluoride: return 1.0; break; // A for compound materials is set to 1
310  case eMuBismuthGermanate: return 1.0; break; // because Z was set to Z/A.
311  case eMuPyrex: return 1.0; break; // OK for now because it is Z/A we
312  case eMuCalciumCarbonate: return 1.0; break; // use... but *change that*
313  case eMuConcrete: return 1.0; break;
314  case eMuFreon12: return 1.0; break;
315  case eMuFreon13B1: return 1.0; break;
316  case eMuLeadOxide: return 1.0; break;
317  case eMuLithiumFluoride: return 1.0; break;
318  case eMuLucite: return 1.0; break;
319  case eMuPolyethylene: return 1.0; break;
320  case eMuPolystyrene: return 1.0; break;
321  case eMuLiquidPropane: return 1.0; break;
322  case eMuSiliconDioxide: return 1.0; break;
323  case eMuSodiumIodide: return 1.0; break;
324  case eMuStandardRock: return 1.0; break;
325  case eMuUraniumOxide: return 1.0; break;
326  case eMuWater: return 1.0; break;
327 
328  //- elements
329  case eMuHydrogen: return 1.008; break;
330  case eMuDeuterium: return 2.014; break;
331  case eMuHelium: return 4.003; break;
332  case eMuLithium: return 6.940; break;
333  case eMuBeryllium: return 9.012; break;
334  case eMuBoron: return 10.810; break;
335  case eMuCarbon: return 12.011; break;
336  case eMuNitrogen: return 14.007; break;
337  case eMuOxygen: return 15.999; break;
338  case eMuFluorine: return 18.998; break;
339  case eMuNeon: return 20.170; break;
340  case eMuSodium: return 22.990; break;
341  case eMuMagnesium: return 24.305; break;
342  case eMuAluminium: return 26.982; break;
343  case eMuSilicon: return 28.086; break;
344  case eMuSulphur: return 32.060; break;
345  case eMuChlorine: return 35.453; break;
346  case eMuArgon: return 39.948; break;
347  case eMuPotassium: return 39.098; break;
348  case eMuCalcium: return 40.080; break;
349  case eMuChromium: return 51.996; break;
350  case eMuManganese: return 54.938; break;
351  case eMuIron: return 55.847; break;
352  case eMuNickel: return 58.710; break;
353  case eMuCopper: return 63.546; break;
354  case eMuZinc: return 65.380; break;
355  case eMuGermanium: return 72.590; break;
356  case eMuBromine: return 79.904; break;
357  case eMuTin: return 118.690; break;
358  case eMuIodine: return 126.905; break;
359  case eMuBarium: return 137.330; break;
360  case eMuTungsten: return 183.850; break;
361  case eMuLead: return 207.200; break;
362  case eMuBismuth: return 208.980; break;
363  case eMuUranium: return 238.029; break;
364 
365  case eMuUndefined:
366  default:
367  return 0;
368  }
369  return 0;
370  }
static const char* genie::mueloss::MuELMaterial::AsString ( MuELMaterial_t  material)
inlinestatic

Definition at line 99 of file MuELMaterial.h.

100  {
101  switch(material) {
102 
103  //- compound materials
104  case eMuBariumFluoride: return "Barium Fluoride"; break;
105  case eMuBismuthGermanate: return "Bismuth Germanate"; break;
106  case eMuPyrex: return "Pyrex"; break;
107  case eMuCalciumCarbonate: return "Calcium Carbonate"; break;
108  case eMuConcrete: return "Concrete"; break;
109  case eMuFreon12: return "Freon 12"; break;
110  case eMuFreon13B1: return "Freon 13B1"; break;
111  case eMuLeadOxide: return "Lead Oxide"; break;
112  case eMuLithiumFluoride: return "Lithium Fluoride"; break;
113  case eMuLucite: return "Lucite"; break;
114  case eMuPolyethylene: return "Polyethylene"; break;
115  case eMuPolystyrene: return "Polystyrene"; break;
116  case eMuLiquidPropane: return "Liquid Propane"; break;
117  case eMuSiliconDioxide: return "Silicon Dioxide"; break;
118  case eMuSodiumIodide: return "Sodium Iodide"; break;
119  case eMuStandardRock: return "Standard Rock"; break;
120  case eMuUraniumOxide: return "Uranium Oxide"; break;
121  case eMuWater: return "Water"; break;
122 
123  //- elements
124  case eMuHydrogen: return "Hydrogen"; break;
125  case eMuDeuterium: return "Deuterium"; break;
126  case eMuHelium: return "Helium"; break;
127  case eMuLithium: return "Lithium"; break;
128  case eMuBeryllium: return "Beryllium"; break;
129  case eMuBoron: return "Boron"; break;
130  case eMuCarbon: return "Carbon"; break;
131  case eMuNitrogen: return "Nitrogen"; break;
132  case eMuOxygen: return "Oxygen"; break;
133  case eMuFluorine: return "Fluorine"; break;
134  case eMuNeon: return "Neon"; break;
135  case eMuSodium: return "Sodium"; break;
136  case eMuMagnesium: return "Magnesium"; break;
137  case eMuAluminium: return "Aluminium"; break;
138  case eMuSilicon: return "Silicon"; break;
139  case eMuSulphur: return "Sulphur"; break;
140  case eMuChlorine: return "Chlorine"; break;
141  case eMuArgon: return "Argon"; break;
142  case eMuPotassium: return "Potassium"; break;
143  case eMuCalcium: return "Calcium"; break;
144  case eMuChromium: return "Chromium"; break;
145  case eMuManganese: return "Manganese"; break;
146  case eMuIron: return "Iron"; break;
147  case eMuNickel: return "Nickel"; break;
148  case eMuCopper: return "Copper"; break;
149  case eMuZinc: return "Zinc"; break;
150  case eMuGermanium: return "Germanium"; break;
151  case eMuBromine: return "Bromine"; break;
152  case eMuTin: return "Tin"; break;
153  case eMuIodine: return "Iodine"; break;
154  case eMuBarium: return "Barium"; break;
155  case eMuTungsten: return "Tungsten"; break;
156  case eMuLead: return "Lead"; break;
157  case eMuBismuth: return "Bismuth"; break;
158  case eMuUranium: return "Uranium"; break;
159 
160  case eMuUndefined:
161  default:
162  return "*** unknown material ***";
163  }
164  return "*** unknown material ***";
165  }
static double genie::mueloss::MuELMaterial::Density ( MuELMaterial_t  material)
inlinestatic

Definition at line 168 of file MuELMaterial.h.

169  {
170  switch(material) {
171 
172  //- compound materials
173  case eMuBariumFluoride: return 4.830; break;
174  case eMuBismuthGermanate: return 7.100; break;
175  case eMuPyrex: return 2.230; break;
176  case eMuCalciumCarbonate: return 2.800; break;
177  case eMuConcrete: return 2.500; break;
178  case eMuFreon12: return 1.120; break;
179  case eMuFreon13B1: return 1.500; break;
180  case eMuLeadOxide: return 9.530; break;
181  case eMuLithiumFluoride: return 2.635; break;
182  case eMuLucite: return 1.190; break;
183  case eMuPolyethylene: return 0.940; break;
184  case eMuPolystyrene: return 1.060; break;
185  case eMuLiquidPropane: return 0.430; break;
186  case eMuSiliconDioxide: return 2.320; break;
187  case eMuSodiumIodide: return 3.367; break;
188  case eMuStandardRock: return 2.650; break;
189  case eMuUraniumOxide: return 10.960; break;
190  case eMuWater: return 1.000; break;
191 
192  //- elements
193  case eMuHydrogen: return 0.063; break;
194  case eMuDeuterium: return 0.140; break;
195  case eMuHelium: return 0.125; break;
196  case eMuLithium: return 0.534; break;
197  case eMuBeryllium: return 1.848; break;
198  case eMuBoron: return 2.370; break;
199  case eMuCarbon: return 2.265; break;
200  case eMuNitrogen: return 0.808; break;
201  case eMuOxygen: return 1.140; break;
202  case eMuFluorine: return 1.108; break;
203  case eMuNeon: return 1.207; break;
204  case eMuSodium: return 0.971; break;
205  case eMuMagnesium: return 1.740; break;
206  case eMuAluminium: return 2.699; break;
207  case eMuSilicon: return 2.330; break;
208  case eMuSulphur: return 2.000; break;
209  case eMuChlorine: return 1.560; break;
210  case eMuArgon: return 1.393; break;
211  case eMuPotassium: return 0.862; break;
212  case eMuCalcium: return 1.550; break;
213  case eMuChromium: return 7.180; break;
214  case eMuManganese: return 7.440; break;
215  case eMuIron: return 7.874; break;
216  case eMuNickel: return 8.902; break;
217  case eMuCopper: return 8.960; break;
218  case eMuZinc: return 7.133; break;
219  case eMuGermanium: return 5.323; break;
220  case eMuBromine: return 3.120; break;
221  case eMuTin: return 7.310; break;
222  case eMuIodine: return 4.930; break;
223  case eMuBarium: return 3.500; break;
224  case eMuTungsten: return 19.300; break;
225  case eMuLead: return 11.350; break;
226  case eMuBismuth: return 9.747; break;
227  case eMuUranium: return 18.950; break;
228 
229  case eMuUndefined:
230  default:
231  return 0;
232  }
233  return 0;
234  }
static double genie::mueloss::MuELMaterial::Z ( MuELMaterial_t  material)
inlinestatic

Definition at line 236 of file MuELMaterial.h.

237  {
238  switch(material) {
239 
240  //- compound materials
241  case eMuBariumFluoride: return 0.4221; break; // For compound materials this is
242  case eMuBismuthGermanate: return 0.4207; break; // actually Z/A, and A will be set to 1
243  case eMuPyrex: return 0.4971; break; // OK for now because it is Z/A we
244  case eMuCalciumCarbonate: return 0.4996; break; // use... but *change that*
245  case eMuConcrete: return 0.5027; break;
246  case eMuFreon12: return 0.4797; break;
247  case eMuFreon13B1: return 0.4567; break;
248  case eMuLeadOxide: return 0.4032; break;
249  case eMuLithiumFluoride: return 0.4626; break;
250  case eMuLucite: return 0.5394; break;
251  case eMuPolyethylene: return 0.5703; break;
252  case eMuPolystyrene: return 0.5377; break;
253  case eMuLiquidPropane: return 0.5896; break;
254  case eMuSiliconDioxide: return 0.4993; break;
255  case eMuSodiumIodide: return 0.4270; break;
256  case eMuStandardRock: return 0.5000; break;
257  case eMuUraniumOxide: return 0.4000; break;
258  case eMuWater: return 0.5551; break;
259 
260  //- elements
261  case eMuHydrogen: return 1.; break;
262  case eMuDeuterium: return 1.; break;
263  case eMuHelium: return 2.; break;
264  case eMuLithium: return 3.; break;
265  case eMuBeryllium: return 4.; break;
266  case eMuBoron: return 5.; break;
267  case eMuCarbon: return 6.; break;
268  case eMuNitrogen: return 7.; break;
269  case eMuOxygen: return 8.; break;
270  case eMuFluorine: return 9.; break;
271  case eMuNeon: return 10.; break;
272  case eMuSodium: return 11.; break;
273  case eMuMagnesium: return 12.; break;
274  case eMuAluminium: return 13.; break;
275  case eMuSilicon: return 14.; break;
276  case eMuSulphur: return 16.; break;
277  case eMuChlorine: return 17.; break;
278  case eMuArgon: return 18.; break;
279  case eMuPotassium: return 19.; break;
280  case eMuCalcium: return 20.; break;
281  case eMuChromium: return 24.; break;
282  case eMuManganese: return 25.; break;
283  case eMuIron: return 26.; break;
284  case eMuNickel: return 28.; break;
285  case eMuCopper: return 29.; break;
286  case eMuZinc: return 30.; break;
287  case eMuGermanium: return 32.; break;
288  case eMuBromine: return 35.; break;
289  case eMuTin: return 50.; break;
290  case eMuIodine: return 53.; break;
291  case eMuBarium: return 56.; break;
292  case eMuTungsten: return 74.; break;
293  case eMuLead: return 82.; break;
294  case eMuBismuth: return 83.; break;
295  case eMuUranium: return 92.; break;
296 
297  case eMuUndefined:
298  default:
299  return 0;
300  }
301  return 0;
302  }

The documentation for this class was generated from the following file: