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fb7a1f55 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16/*
17$Log$
b9d0a01d 18Revision 1.4.2.2 2002/10/10 14:40:31 hristov
19Updating VirtualMC to v3-09-02
20
21Revision 1.5 2002/10/07 11:12:26 gamez
22Cleaned up version
23
d2293f45 24Revision 1.4 2002/07/12 12:56:18 gamez
25Material numbers, correction
26
2c3b33cd 27Revision 1.3.2.1 2002/07/12 12:31:30 gamez
28Material numbers, correction
29
30Revision 1.3 2002/07/10 15:53:10 gamez
31Molasse redefinition
32
c8a19f01 33Revision 1.2 2002/07/09 08:45:35 hristov
34Old style include files needed on HP (aCC)
35
b73f53b3 36Revision 1.1 2002/06/16 17:08:19 hristov
37First version of CRT
38
fb7a1f55 39
40*/
41
42///////////////////////////////////////////////////////////////////////////////
43// //
44// Cosmic Rays ALICE Trigger //
45// This class contains the basic functions for the Cosmic Ray ALICE //
46// detector. Functions specific to one particular geometry are //
47// contained in the derived classes //
48//
49// Begin_Html
50/*
51<img src="picts/AliCRTClass.gif">
52</pre>
53<p>The responsible person for this module is
54<a href="mailto:Enrique.Gamez.Flores@cern.ch">Enrique Gamez Flores</a>.
55</font>
56<pre>
57*/
58//End_Html
59//
60//
61// //
62///////////////////////////////////////////////////////////////////////////////
63
fb7a1f55 64#include <TTree.h>
65
fb7a1f55 66#include "AliMC.h"
67#include "AliRun.h"
68#include "AliMagF.h"
69
70#include "AliCRT.h"
71#include "AliCRTConstants.h"
fb7a1f55 72#include "AliCRThit.h"
73
74
75ClassImp(AliCRT)
76
fb7a1f55 77//_____________________________________________________________________________
78AliCRT::AliCRT()
79{
80 //
d2293f45 81 // Default constructor for the CRT
fb7a1f55 82 //
83
d2293f45 84 fIshunt = 0;
fb7a1f55 85 fHits = 0;
d2293f45 86
fb7a1f55 87}
88
89//_____________________________________________________________________________
90AliCRT::AliCRT(const char *name, const char *title)
91 : AliDetector(name,title)
92{
93 //
94 // Standard constructor for the CRT module
95 //
96
97 fIshunt = 1; // All hits are associated with primary particles
98
99 fHits = new TClonesArray("AliCRThit",400) ;
fb7a1f55 100
101 gAlice->AddHitList(fHits);
102
103 SetMarkerColor(7);
104 SetMarkerStyle(2);
105 SetMarkerSize(0.4);
106
107}
108
d2293f45 109//_____________________________________________________________________________
110AliCRT::AliCRT(const AliCRT& crt)
111{
112 //
113 // Copy ctor.
114 //
115 crt.Copy(*this);
116}
117
118//_____________________________________________________________________________
119AliCRT& AliCRT::operator= (const AliCRT& crt)
120{
121 //
122 // Asingment operator.
123 //
124 crt.Copy(*this);
125 return *this;
126}
127
fb7a1f55 128//_____________________________________________________________________________
129AliCRT::~AliCRT()
130{
131 //
132 // Standar destructor.
133 //
134 if (fHits) {
135 fHits->Delete();
136 delete fHits;
137 }
138}
139
140//_____________________________________________________________________________
141void AliCRT::AddHit(Int_t track, Int_t *vol, Float_t *hits)
142{
143 //
144 // Add a CRT hit
145 //
146 TClonesArray &lhits = *fHits;
147 new(lhits[fNhits++]) AliCRThit(fIshunt,track,vol,hits);
148}
149
150//_____________________________________________________________________________
151void AliCRT::AddDigit(Int_t *tracks,Int_t *digits)
152{
d2293f45 153 //
fb7a1f55 154 // Add a CRT digit to the list. Dummy function.
d2293f45 155 //
fb7a1f55 156}
157
158//_____________________________________________________________________________
159void AliCRT::Init() const
160{
161 //
162 // Initialise ...
163 //
164
165 Int_t i;
166 //
167 if(fDebug) {
168 printf("\n%s: ",ClassName());
169 for(i=0;i<35;i++) printf("*");
170 printf(" CRT_INIT ");
171 for(i=0;i<35;i++) printf("*");
172 printf("\n%s: ",ClassName());
173 //
174 // Here the CRT initialisation code (if any!)
175 for(i=0;i<80;i++) printf("*");
176 printf("\n");
177 }
178}
179
180//_____________________________________________________________________________
d2293f45 181void AliCRT::ResetHits()
fb7a1f55 182{
183 // Reset number of clusters and the cluster array for this detector
d2293f45 184 AliDetector::ResetHits();
fb7a1f55 185}
186
187//_____________________________________________________________________________
d2293f45 188void AliCRT::ResetDigits()
fb7a1f55 189{
190 //
191 // Reset number of digits and the digits array for this detector
d2293f45 192 AliDetector::ResetDigits();
fb7a1f55 193}
194
195//____________________________________________________________________________
196void AliCRT::FinishEvent()
197{
198// do nothing
199}
200
201//_____________________________________________________________________________
202void AliCRT::BuildGeometry()
203{
204 //
205 // Build simple ROOT TNode geometry for event display
206 //
207}
208
209//_____________________________________________________________________________
210void AliCRT::CreateGeometry()
211{
212 //
213 // Build simple ROOT TNode geometry for GEANT simulations
214 //
215}
216
217//_____________________________________________________________________________
218void AliCRT::CreateMaterials()
219{
220 // Magnatic field inside the pit
221 Int_t isxfld = gAlice->Field()->Integ();
222 Float_t sxmgmx = gAlice->Field()->Max();
223
224 //Magnetic field above the Magnet.
225 Int_t xfield = 0; // no Magnetic field.
226 Float_t xfieldm = 0;
227 Float_t xepsil = 0.1; // Tracking precission in cm. obove the pit
228
229 // --- Define the various materials for GEANT ---
fb7a1f55 230 Float_t epsil, stmin, tmaxfd, deemax, stemax;
231 //
232 // Aluminum
233 AliMaterial(9, "ALUMINIUM$", 26.98, 13., 2.7, 8.9, 37.2);
234 AliMaterial(29, "ALUMINIUM$", 26.98, 13., 2.7, 8.9, 37.2);
235 AliMaterial(49, "ALUMINIUM$", 26.98, 13., 2.7, 8.9, 37.2);
236 //
237 // Iron
238 AliMaterial(10, "IRON$ ", 55.85, 26., 7.87, 1.76, 17.1);
239 AliMaterial(30, "IRON$ ", 55.85, 26., 7.87, 1.76, 17.1);
240 AliMaterial(50, "IRON$ ", 55.85, 26., 7.87, 1.76, 17.1);
241 //
242 // Air
243 AliMaterial(15, "AIR$ ", 14.61, 7.3, .001205, 30423.24, 67500.);
244 AliMaterial(35, "AIR$ ", 14.61, 7.3, .001205, 30423.24, 67500.);
245 AliMaterial(55, "AIR$ ", 14.61, 7.3, .001205, 30423.24, 67500.);
d2293f45 246 AliMaterial(75, "AIR$ ", 14.61, 7.3, .001205, 30423.24, 67500.);
247 AliMaterial(95, "AIR$ ", 14.61, 7.3, .001205, 30423.24, 67500.);
248
fb7a1f55 249
250 // Scintillator material polystyrene
251 Float_t aP[2] = {12.011, 1.00794};
252 Float_t zP[2] = {6.0, 1.0};
253 Float_t wP[2] = {1.0, 1.0};
254 Float_t dP = 1.032;
2c3b33cd 255 AliMixture(13, "Polystyrene$", aP, zP, dP, -2, wP);
c8a19f01 256 // Subalpine Molasse over the ALICE hall.
2c3b33cd 257 Float_t aMolasse[10] = { 1., 12.01, 15.994, 22.99, 24.305, 26.98, 28.086, 39.1, 40.08, 55.85 };
c8a19f01 258 Float_t zMolasse[10] = {1., 6., 8., 11., 12., 13., 14., 19., 20., 26.};
2c3b33cd 259 Float_t wMolasse[10] = {0.008, 0.043, 0.485, 0.007, 0.042, 0.037, 0.215, 0.023, 0.1, 0.04};
c8a19f01 260 Float_t dMolasse = 2.40;
2c3b33cd 261 AliMixture(24, "Molasse$", aMolasse, zMolasse, dMolasse, 10, wMolasse);
fb7a1f55 262
263 // ****************
264 // Defines tracking media parameters.
265 // Les valeurs sont commentees pour laisser le defaut
266 // a GEANT (version 3-21, page CONS200), f.m.
267 epsil = .001; // Tracking precision, Inside the pit
268 stemax = -1.; // Maximum displacement for multiple scattering
269 tmaxfd = -20.; // Maximum angle due to field deflection
270 deemax = -.3; // Maximum fractional energy loss, DLS
271 stmin = -.8;
272 // ***************
273
d2293f45 274 Float_t atmaxfd = 10.;
275 Float_t adeemax = -0.1;
276 Float_t aepsil = 0.1;
277 Float_t astmin = -10.;
278
fb7a1f55 279 //
280 // Aluminum
281 AliMedium(9, "ALU_C0 ", 9, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
282 AliMedium(29, "ALU_C1 ", 29, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
283 AliMedium(49, "ALU_C2 ", 49, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
284 //
285 // Iron
286 AliMedium(10, "FE_C0 ", 10, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
287 AliMedium(30, "FE_C1 ", 30, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
288 AliMedium(50, "FE_C2 ", 50, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
289 //
290 // Air
d2293f45 291 AliMedium(15, "AIR_C0 ", 15, 0, isxfld, sxmgmx, atmaxfd, stemax, adeemax, aepsil, astmin);
292 AliMedium(35, "AIR_C1 ", 35, 0, isxfld, sxmgmx, atmaxfd, stemax, adeemax, aepsil, astmin);
293 AliMedium(55, "AIR_C2 ", 55, 0, isxfld, sxmgmx, atmaxfd, stemax, adeemax, aepsil, astmin);
294 AliMedium(75, "AIR_C4 ", 75, 0, isxfld, sxmgmx, atmaxfd, stemax, adeemax, aepsil, astmin);
295 AliMedium(75, "AIR_C5 ", 95, 0, isxfld, sxmgmx, atmaxfd, stemax, adeemax, aepsil, astmin);
296
fb7a1f55 297
298
299 // The scintillator of the CPV made of Polystyrene
2c3b33cd 300 // scintillator -> idtmed[1112]
301 AliMedium(13 , "CPV scint. ", 13, 1, isxfld, sxmgmx, 10., stemax, deemax, epsil, stmin);
fb7a1f55 302
2c3b33cd 303 // Molasse -> idtmed[1123]
304 AliMedium(24 , "Molasse ", 24, 0, xfield, xfieldm, tmaxfd, stemax, deemax, xepsil, stmin);
fb7a1f55 305
d2293f45 306 // Concrete, in case if we need to put hte shafts by ourselves.
fb7a1f55 307
d2293f45 308 Float_t aconc[10] = { 1.,12.01,15.994,22.99,24.305,26.98,28.086,39.1,40.08,55.85 };
309 Float_t zconc[10] = { 1.,6.,8.,11.,12.,13.,14.,19.,20.,26. };
310 Float_t wconc[10] = { .01,.001,.529107,.016,.002,.033872,.337021,.013,.044,.014 };
311
312 AliMixture(17, "CONCRETE$", aconc, zconc, 2.35, 10, wconc);
313 // Concrete
314 AliMedium(17, "CC_C0 ", 17, 0, isxfld, sxmgmx, tmaxfd, stemax, deemax, epsil, stmin);
fb7a1f55 315
d2293f45 316}
317/*
fb7a1f55 318//_____________________________________________________________________________
319void AliCRT::MakeBranch(Option_t* option, const char *file)
320{
321 //
322 // Specific CRT branches
323 //
324 // Create Tree branches for the CRT.
325 Int_t buffersize = 400;
326 char branchname[10];
327 sprintf(branchname,"%s",GetName());
328
329 AliDetector::MakeBranch(option,file);
330
331 const char *cD = strstr(option,"D");
332
333 if (cD) {
334 digits = new AliCRTdigit();
335 MakeBranchInTree(gAlice->TreeD(), branchname, "AliCRTdigit",
336 digits, buffersize, 1, file);
337 }
338
339}
d2293f45 340*/
fb7a1f55 341//_____________________________________________________________________________
d2293f45 342void AliCRT::SetTreeAddress()
343{
344
345 TBranch *branch;
346 char branchname[20];
347 sprintf(branchname,"%s",GetName());
348
349 // Branch address for hit tree
350 TTree *treeH = gAlice->TreeH();
351 if (treeH && fHits) {
352 branch = treeH->GetBranch(branchname);
353 if (branch) branch->SetAddress(&fHits);
354 }
355
356}