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Test of the access to the MEVSIM module
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b73f246d 1
4c039060 2/**************************************************************************
3 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * *
5 * Author: The ALICE Off-line Project. *
6 * Contributors are mentioned in the code where appropriate. *
7 * *
8 * Permission to use, copy, modify and distribute this software and its *
9 * documentation strictly for non-commercial purposes is hereby granted *
10 * without fee, provided that the above copyright notice appears in all *
11 * copies and that both the copyright notice and this permission notice *
12 * appear in the supporting documentation. The authors make no claims *
13 * about the suitability of this software for any purpose. It is *
14 * provided "as is" without express or implied warranty. *
15 **************************************************************************/
16
b2a60966 17/* $Id$ */
18
d15a28e7 19//_________________________________________________________________________
b2a60966 20// Base Class for PHOS description:
21// PHOS consists of a PbWO4 calorimeter (EMCA) and a gazeous charged
22// particles detector (CPV or PPSD).
23// The only provided method here is CreateMaterials,
24// which defines the materials common to all PHOS versions.
25//
26//*-- Author: Laurent Aphecetche & Yves Schutz (SUBATECH)
d15a28e7 27//////////////////////////////////////////////////////////////////////////////
e84be1eb 28
fe4da5cc 29// --- ROOT system ---
2ab0c725 30class TFile;
ed4205d8 31#include "TTree.h"
fe4da5cc 32
33// --- Standard library ---
fe4da5cc 34
037cc66d 35#include <strstream.h>
d15a28e7 36// --- AliRoot header files ---
37
fe4da5cc 38#include "AliPHOS.h"
d15a28e7 39#include "AliMC.h"
fe4da5cc 40#include "AliRun.h"
94de3818 41#include "AliMagF.h"
fe4da5cc 42
fe4da5cc 43ClassImp(AliPHOS)
44
fc879520 45//____________________________________________________________________________
46AliPHOS::AliPHOS():AliDetector()
47{
48 // ctor
49 //We do not create objects, because these pointers will be overwritten durin reading from file.
02ab1add 50 fSDigits = 0 ;
ed4205d8 51 fDigits = 0 ;
fc879520 52 fEmcRecPoints = 0 ;
53 fPpsdRecPoints = 0 ;
54 fTrackSegments = 0 ;
55 fRecParticles = 0 ;
56
57}
58//____________________________________________________________________________
d43225ee 59AliPHOS::AliPHOS(const char* name, const char* title): AliDetector(name,title)
fc879520 60{
61 // ctor
ed4205d8 62
3247125a 63 fSDigits = new TClonesArray("AliPHOSDigit",1000) ;
64 fDigits = new TClonesArray("AliPHOSDigit",1000) ;
65 fEmcRecPoints = new TObjArray(100) ;
66 fPpsdRecPoints = new TObjArray(100) ;
67 fTrackSegments = new TClonesArray("AliPHOSTrackSegment",100);
68 fRecParticles = new TClonesArray("AliPHOSRecParticle",100);
fc879520 69
70}
d15a28e7 71//____________________________________________________________________________
72AliPHOS::~AliPHOS()
fe4da5cc 73{
88714635 74 // dtor
fc879520 75 if(fEmcRecPoints)
76 fEmcRecPoints->Delete() ;
77 delete fEmcRecPoints ;
78 if(fPpsdRecPoints)
79 fPpsdRecPoints->Delete() ;
80 delete fPpsdRecPoints ;
81 if(fTrackSegments)
82 fTrackSegments->Delete() ;
83 delete fTrackSegments ;
84 if(fRecParticles)
85 fRecParticles->Delete() ;
86 delete fRecParticles ;
d15a28e7 87 delete fHits ;
88 delete fDigits ;
02ab1add 89 delete fSDigits ;
fe4da5cc 90}
fe4da5cc 91
d15a28e7 92//____________________________________________________________________________
fe4da5cc 93void AliPHOS::CreateMaterials()
94{
b2a60966 95 // Definitions of materials to build PHOS and associated tracking media.
96 // media number in idtmed are 699 to 798.
fe4da5cc 97
d15a28e7 98 // --- The PbWO4 crystals ---
92862013 99 Float_t aX[3] = {207.19, 183.85, 16.0} ;
100 Float_t zX[3] = {82.0, 74.0, 8.0} ;
101 Float_t wX[3] = {1.0, 1.0, 4.0} ;
102 Float_t dX = 8.28 ;
fe4da5cc 103
92862013 104 AliMixture(0, "PbWO4$", aX, zX, dX, -3, wX) ;
fe4da5cc 105
fe4da5cc 106
d15a28e7 107 // --- The polysterene scintillator (CH) ---
92862013 108 Float_t aP[2] = {12.011, 1.00794} ;
109 Float_t zP[2] = {6.0, 1.0} ;
110 Float_t wP[2] = {1.0, 1.0} ;
111 Float_t dP = 1.032 ;
fe4da5cc 112
92862013 113 AliMixture(1, "Polystyrene$", aP, zP, dP, -2, wP) ;
fe4da5cc 114
d15a28e7 115 // --- Aluminium ---
116 AliMaterial(2, "Al$", 26.98, 13., 2.7, 8.9, 999., 0, 0) ;
117 // --- Absorption length is ignored ^
fe4da5cc 118
d15a28e7 119 // --- Tyvek (CnH2n) ---
92862013 120 Float_t aT[2] = {12.011, 1.00794} ;
121 Float_t zT[2] = {6.0, 1.0} ;
122 Float_t wT[2] = {1.0, 2.0} ;
123 Float_t dT = 0.331 ;
fe4da5cc 124
92862013 125 AliMixture(3, "Tyvek$", aT, zT, dT, -2, wT) ;
fe4da5cc 126
d15a28e7 127 // --- Polystyrene foam ---
92862013 128 Float_t aF[2] = {12.011, 1.00794} ;
129 Float_t zF[2] = {6.0, 1.0} ;
130 Float_t wF[2] = {1.0, 1.0} ;
131 Float_t dF = 0.12 ;
fe4da5cc 132
92862013 133 AliMixture(4, "Foam$", aF, zF, dF, -2, wF) ;
fe4da5cc 134
d15a28e7 135 // --- Titanium ---
92862013 136 Float_t aTIT[3] = {47.88, 26.98, 54.94} ;
137 Float_t zTIT[3] = {22.0, 13.0, 25.0} ;
138 Float_t wTIT[3] = {69.0, 6.0, 1.0} ;
139 Float_t dTIT = 4.5 ;
fe4da5cc 140
92862013 141 AliMixture(5, "Titanium$", aTIT, zTIT, dTIT, -3, wTIT);
fe4da5cc 142
d15a28e7 143 // --- Silicon ---
144 AliMaterial(6, "Si$", 28.0855, 14., 2.33, 9.36, 42.3, 0, 0) ;
fe4da5cc 145
fe4da5cc 146
fe4da5cc 147
d15a28e7 148 // --- Foam thermo insulation ---
92862013 149 Float_t aTI[2] = {12.011, 1.00794} ;
150 Float_t zTI[2] = {6.0, 1.0} ;
151 Float_t wTI[2] = {1.0, 1.0} ;
152 Float_t dTI = 0.1 ;
fe4da5cc 153
92862013 154 AliMixture(7, "Thermo Insul.$", aTI, zTI, dTI, -2, wTI) ;
fe4da5cc 155
d15a28e7 156 // --- Textolitn ---
92862013 157 Float_t aTX[4] = {16.0, 28.09, 12.011, 1.00794} ;
158 Float_t zTX[4] = {8.0, 14.0, 6.0, 1.0} ;
159 Float_t wTX[4] = {292.0, 68.0, 462.0, 736.0} ;
160 Float_t dTX = 1.75 ;
fe4da5cc 161
92862013 162 AliMixture(8, "Textolit$", aTX, zTX, dTX, -4, wTX) ;
fe4da5cc 163
d15a28e7 164 //--- FR4 ---
92862013 165 Float_t aFR[3] = {28.0855, 15.9994, 17.749} ;
166 Float_t zFR[3] = {14., 8., 8.875} ;
167 Float_t wFR[3] = {.28, .32, .4} ;
168 Float_t dFR = 1.8 ;
fe4da5cc 169
92862013 170 AliMixture(9, "FR4$", aFR, zFR, dFR, -3, wFR) ;
fe4da5cc 171
d15a28e7 172 // --- The Composite Material for micromegas (so far polyetylene) ---
92862013 173 Float_t aCM[2] = {12.01, 1.} ;
174 Float_t zCM[2] = {6., 1.} ;
175 Float_t wCM[2] = {1., 2.} ;
176 Float_t dCM = 0.935 ;
fe4da5cc 177
92862013 178 AliMixture(10, "Compo Mat$", aCM, zCM, dCM, -2, wCM) ;
fe4da5cc 179
d15a28e7 180 // --- Copper ---
181 AliMaterial(11, "Cu$", 63.546, 29, 8.96, 1.43, 14.8, 0, 0) ;
182
183 // --- G10 : Printed Circuit material ---
92862013 184 Float_t aG10[4] = { 12., 1., 16., 28.} ;
185 Float_t zG10[4] = { 6., 1., 8., 14.} ;
186 Float_t wG10[4] = { .259, .288, .248, .205} ;
187 Float_t dG10 = 1.7 ;
d15a28e7 188
92862013 189 AliMixture(12, "G10$", aG10, zG10, dG10, -4, wG10);
fe4da5cc 190
d15a28e7 191 // --- Lead ---
192 AliMaterial(13, "Pb$", 207.2, 82, 11.35, 0.56, 0., 0, 0) ;
fe4da5cc 193
d15a28e7 194 // --- The gas mixture ---
195 // Co2
92862013 196 Float_t aCO[2] = {12.0, 16.0} ;
197 Float_t zCO[2] = {6.0, 8.0} ;
198 Float_t wCO[2] = {1.0, 2.0} ;
199 Float_t dCO = 0.001977 ;
fe4da5cc 200
92862013 201 AliMixture(14, "CO2$", aCO, zCO, dCO, -2, wCO);
fe4da5cc 202
d15a28e7 203 // Ar
92862013 204 Float_t dAr = 0.001782 ;
205 AliMaterial(15, "Ar$", 39.948, 18.0, dAr, 14.0, 0., 0, 0) ;
d15a28e7 206
207 // ArCo2
208 Char_t namate[21];
92862013 209 Float_t aGM[2] ;
210 Float_t zGM[2] ;
211 Float_t wGM[2] ;
212 Float_t dGM ;
fe4da5cc 213
92862013 214 Float_t absL, radL, density ;
d15a28e7 215 Float_t buf[1] ;
216 Int_t nbuf ;
bc9ab547 217
92862013 218 gMC->Gfmate((*fIdmate)[15], namate, aGM[0], zGM[0], density, radL, absL, buf, nbuf) ; // Get properties of Ar
219 gMC->Gfmate((*fIdmate)[14], namate, aGM[1], zGM[1], density, radL, absL, buf, nbuf) ; // Get properties of CO2
bc9ab547 220
fe4da5cc 221
d15a28e7 222 // Create gas mixture
fe4da5cc 223
92862013 224 Float_t arContent = 0.80 ; // Ar-content of the Ar/CO2-mixture (80% / 20%)
d15a28e7 225
92862013 226 wGM[0] = arContent;
227 wGM[1] = 1. - arContent ;
228 dGM = wGM[0] * dAr + wGM[1] * dCO;
fe4da5cc 229
92862013 230 AliMixture(16, "ArCO2$", aGM, zGM, dGM, 2, wGM) ;
fe4da5cc 231
a530ba0a 232 // --- Stainless steel (let it be pure iron) ---
233 AliMaterial(17, "Steel$", 55.845, 26, 7.87, 1.76, 0., 0, 0) ;
d15a28e7 234
235 // --- Air ---
236 AliMaterial(99, "Air$", 14.61, 7.3, 0.001205, 30420., 67500., 0, 0) ;
fe4da5cc 237
d15a28e7 238
239 // DEFINITION OF THE TRACKING MEDIA
fe4da5cc 240
d15a28e7 241 // for PHOS: idtmed[699->798] equivalent to fIdtmed[0->100]
242 Int_t * idtmed = fIdtmed->GetArray() - 699 ;
92862013 243 Int_t isxfld = gAlice->Field()->Integ() ;
244 Float_t sxmgmx = gAlice->Field()->Max() ;
fe4da5cc 245
d15a28e7 246 // The scintillator of the calorimeter made of PBW04 -> idtmed[699]
247 AliMedium(0, "PHOS Xtal $", 0, 1,
92862013 248 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 249
d15a28e7 250 // The scintillator of the CPV made of Polystyrene scintillator -> idtmed[700]
251 AliMedium(1, "CPV scint. $", 1, 1,
92862013 252 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 253
d15a28e7 254 // Various Aluminium parts made of Al -> idtmed[701]
255 AliMedium(2, "Al parts $", 2, 0,
92862013 256 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.001, 0.001, 0, 0) ;
fe4da5cc 257
d15a28e7 258 // The Tywek which wraps the calorimeter crystals -> idtmed[702]
259 AliMedium(3, "Tyvek wrapper$", 3, 0,
92862013 260 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.001, 0.001, 0, 0) ;
fe4da5cc 261
d15a28e7 262 // The Polystyrene foam around the calorimeter module -> idtmed[703]
263 AliMedium(4, "Polyst. foam $", 4, 0,
92862013 264 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 265
d15a28e7 266 // The Titanium around the calorimeter crystal -> idtmed[704]
267 AliMedium(5, "Titan. cover $", 5, 0,
92862013 268 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.0001, 0.0001, 0, 0) ;
fe4da5cc 269
d15a28e7 270 // The Silicon of the pin diode to read out the calorimeter crystal -> idtmed[705]
271 AliMedium(6, "Si PIN $", 6, 0,
92862013 272 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.01, 0.01, 0, 0) ;
fe4da5cc 273
d15a28e7 274 // The thermo insulating material of the box which contains the calorimeter module -> idtmed[706]
275 AliMedium(7, "Thermo Insul.$", 7, 0,
92862013 276 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 277
d15a28e7 278 // The Textolit which makes up the box which contains the calorimeter module -> idtmed[707]
279 AliMedium(8, "Textolit $", 8, 0,
92862013 280 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 281
d15a28e7 282 // FR4: The Plastic which makes up the frame of micromegas -> idtmed[708]
283 AliMedium(9, "FR4 $", 9, 0,
92862013 284 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.0001, 0, 0) ;
fe4da5cc 285
fe4da5cc 286
d15a28e7 287 // The Composite Material for micromegas -> idtmed[709]
288 AliMedium(10, "CompoMat $", 10, 0,
92862013 289 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 290
d15a28e7 291 // Copper -> idtmed[710]
292 AliMedium(11, "Copper $", 11, 0,
92862013 293 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.0001, 0, 0) ;
fe4da5cc 294
d15a28e7 295 // G10: Printed Circuit material -> idtmed[711]
296
297 AliMedium(12, "G10 $", 12, 0,
92862013 298 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.01, 0, 0) ;
fe4da5cc 299
d15a28e7 300 // The Lead -> idtmed[712]
301
302 AliMedium(13, "Lead $", 13, 0,
92862013 303 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.1, 0, 0) ;
fe4da5cc 304
d15a28e7 305 // The gas mixture: ArCo2 -> idtmed[715]
306
307 AliMedium(16, "ArCo2 $", 16, 1,
92862013 308 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.01, 0, 0) ;
d15a28e7 309
a530ba0a 310 // Stainless steel -> idtmed[716]
311 AliMedium(17, "Steel $", 17, 0,
312 isxfld, sxmgmx, 10.0, 0.1, 0.1, 0.1, 0.0001, 0, 0) ;
313
d15a28e7 314 // Air -> idtmed[798]
315 AliMedium(99, "Air $", 99, 0,
92862013 316 isxfld, sxmgmx, 10.0, 1.0, 0.1, 0.1, 10.0, 0, 0) ;
fe4da5cc 317
d15a28e7 318 // --- Set decent energy thresholds for gamma and electron tracking
fe4da5cc 319
d15a28e7 320 // Tracking threshold for photons and electrons in the scintillator crystal
321 gMC->Gstpar(idtmed[699], "CUTGAM",0.5E-4) ;
322 gMC->Gstpar(idtmed[699], "CUTELE",1.0E-4) ;
9f616d61 323
d15a28e7 324 // --- Generate explicitly delta rays in the titan cover ---
325 gMC->Gstpar(idtmed[704], "LOSS",3.) ;
326 gMC->Gstpar(idtmed[704], "DRAY",1.) ;
d15a28e7 327 // --- and in aluminium parts ---
328 gMC->Gstpar(idtmed[701], "LOSS",3.) ;
329 gMC->Gstpar(idtmed[701], "DRAY",1.) ;
92862013 330 // --- and in PIN diode
331 gMC->Gstpar(idtmed[705], "LOSS",3) ;
332 gMC->Gstpar(idtmed[705], "DRAY",1) ;
333 // --- and in the passive convertor
334 gMC->Gstpar(idtmed[712], "LOSS",3) ;
335 gMC->Gstpar(idtmed[712], "DRAY",1) ;
336 // Tracking threshold for photons and electrons in the gas ArC02
b7101219 337 gMC->Gstpar(idtmed[715], "CUTGAM",1.E-5) ;
338 gMC->Gstpar(idtmed[715], "CUTELE",1.E-5) ;
339 gMC->Gstpar(idtmed[715], "CUTNEU",1.E-5) ;
340 gMC->Gstpar(idtmed[715], "CUTHAD",1.E-5) ;
341 gMC->Gstpar(idtmed[715], "CUTMUO",1.E-5) ;
342 gMC->Gstpar(idtmed[715], "BCUTE",1.E-5) ;
343 gMC->Gstpar(idtmed[715], "BCUTM",1.E-5) ;
344 gMC->Gstpar(idtmed[715], "DCUTE",1.E-5) ;
345 gMC->Gstpar(idtmed[715], "DCUTM",1.E-5) ;
346 gMC->Gstpar(idtmed[715], "PPCUTM",1.E-5) ;
9f616d61 347 gMC->Gstpar(idtmed[715], "LOSS",2.) ;
348 gMC->Gstpar(idtmed[715], "DRAY",0.) ;
349 gMC->Gstpar(idtmed[715], "STRA",2.) ;
350
0c409cb2 351}
0c409cb2 352//____________________________________________________________________________
2ea4f4fc 353void AliPHOS::SetTreeAddress()
354{
037cc66d 355
ad8cfaf4 356
07a64e48 357 // TBranch *branch;
ad8cfaf4 358 // AliDetector::SetTreeAddress();
359
360 TBranch *branch;
361 char branchname[20];
362 sprintf(branchname,"%s",GetName());
3247125a 363
ad8cfaf4 364 // Branch address for hit tree
365 TTree *treeH = gAlice->TreeH();
366 if (treeH && fHits) {
367 branch = treeH->GetBranch(branchname);
368 if (branch) branch->SetAddress(&fHits);
369 }
3247125a 370
ad8cfaf4 371 // Branch address for digit tree
372 TTree *treeD = gAlice->TreeD();
373
374 if(fDigits)
02ab1add 375 fDigits->Clear();
ad8cfaf4 376
377 if (treeD && fDigits) {
378 branch = treeD->GetBranch(branchname);
379 if (branch) branch->SetAddress(&fDigits);
380 }
2ea4f4fc 381
037cc66d 382 if(fSDigits)
383 fSDigits->Clear();
037cc66d 384
385 if (gAlice->TreeS() && fSDigits ) {
386 branch = gAlice->TreeS()->GetBranch("PHOS");
387 if (branch) branch->SetAddress(&fSDigits) ;
388 }
389
ed4205d8 390
b73f246d 391 TTree *treeR = gAlice->TreeR();
ed4205d8 392
b73f246d 393 //Branch address for TreeR: EmcRecPoint
02ab1add 394
395 if(fEmcRecPoints)
396 fEmcRecPoints->Delete();
02ab1add 397
398
ed4205d8 399 if ( treeR && fEmcRecPoints ) {
400 branch = treeR->GetBranch("PHOSEmcRP");
401 if (branch) branch->SetAddress(&fEmcRecPoints) ;
402 }
403
404 //Branch address for TreeR: PPSDRecPoint
ed4205d8 405
02ab1add 406 if(fPpsdRecPoints)
407 fPpsdRecPoints->Delete();
02ab1add 408
ed4205d8 409 if ( treeR && fPpsdRecPoints ) {
410 branch = treeR->GetBranch("PHOSPpsdRP");
411 if (branch) branch->SetAddress(&fPpsdRecPoints) ;
412 }
413
414 //Branch address for TreeR: TrackSegments
02ab1add 415
416 if(fTrackSegments)
3247125a 417 fTrackSegments->Clear() ;
ed4205d8 418
419 if ( treeR && fTrackSegments ) {
420 branch = treeR->GetBranch("PHOSTS");
421 if (branch) branch->SetAddress(&fTrackSegments) ;
422 }
423
424 //Branch address for TreeR: RecParticles
ed4205d8 425
02ab1add 426 if(fRecParticles)
427 fRecParticles->Clear() ;
3247125a 428
ed4205d8 429 if ( treeR && fRecParticles ) {
430 branch = treeR->GetBranch("PHOSRP");
431 if (branch) branch->SetAddress(&fRecParticles) ;
432 }
433
0c409cb2 434}
435
9f616d61 436