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be3bb6c1 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// Factory for muon chambers, segmentations and response //
18////////////////////////////////////////////////////////////
19
88cb7938 20/* $Id$ */
ba030c0e 21
be3bb6c1 22#include "AliMUONFactory.h"
23#include "AliMUON.h"
24#include "AliMUONChamber.h"
25#include "AliMUONResponseV0.h"
26#include "AliMUONResponseTrigger.h"
be3bb6c1 27#include "AliMUONSegmentationV01.h"
28#include "AliMUONSegmentationV02.h"
be3bb6c1 29#include "AliMUONSegmentationSlat.h"
30#include "AliMUONSegmentationSlatN.h"
be3bb6c1 31#include "AliMUONSegmentationTriggerX.h"
32#include "AliMUONSegmentationTriggerY.h"
33
34ClassImp(AliMUONFactory)
35
ba030c0e 36//__________________________________________________________________________
37AliMUONFactory::AliMUONFactory()
38 : TObject(),
39 fMUON(0),
40 fResponse0(0)
be3bb6c1 41{
42//
ba030c0e 43}
be3bb6c1 44
11ca64ac 45//__________________________________________________________________________
46AliMUONFactory::AliMUONFactory(const AliMUONFactory& rhs)
47 : TObject(rhs)
48{
49// Protected copy constructor
50
e516b01d 51 Fatal("AliMUONFactory", "Not implemented.");
11ca64ac 52}
53
ba030c0e 54//__________________________________________________________________________
30178c30 55
ba030c0e 56AliMUONFactory::~AliMUONFactory()
57{
be3bb6c1 58//
ba030c0e 59}
60
11ca64ac 61//__________________________________________________________________________
62AliMUONFactory& AliMUONFactory::operator=(const AliMUONFactory& rhs)
63{
64// Protected assignement operator
65
66 if (this == &rhs) return *this;
67
e516b01d 68 Fatal("operator=", "Not implemented.");
11ca64ac 69
70 return *this;
71}
72
ba030c0e 73//__________________________________________________________________________
74void AliMUONFactory::BuildCommon()
75{
be3bb6c1 76//
ba030c0e 77// Construct the default response.
be3bb6c1 78//
ba030c0e 79
be3bb6c1 80 // Default response: 5 mm of gas
ba030c0e 81 fResponse0 = new AliMUONResponseV0;
82 fResponse0->SetSqrtKx3AndDeriveKx2Kx4(0.7131); // sqrt(0.5085)
83 fResponse0->SetSqrtKy3AndDeriveKy2Ky4(0.7642); // sqrt(0.5840)
84 fResponse0->SetPitch(0.25); // anode-cathode distance
85 fResponse0->SetSigmaIntegration(10.);
4ac9d21e 86 fResponse0->SetChargeSlope(10);
ba030c0e 87 fResponse0->SetChargeSpread(0.18, 0.18);
88 fResponse0->SetMaxAdc(4096);
4ac9d21e 89 fResponse0->SetSaturation(3000);
ba030c0e 90 fResponse0->SetZeroSuppression(6);
91}
92
93//__________________________________________________________________________
94void AliMUONFactory::BuildStation1()
95{
96//--------------------------------------------------------
97// Configuration for Chamber TC1/2 (Station 1) ----------
98//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
99
be3bb6c1 100 // Response for 4 mm of gas (station 1)
101 // automatic consistency with width of sensitive medium in CreateGeometry ????
102 AliMUONResponseV0* responseSt1 = new AliMUONResponseV0;
103 // Mathieson parameters from L.Kharmandarian's thesis, page 190
104 responseSt1->SetSqrtKx3AndDeriveKx2Kx4(0.7000); // sqrt(0.4900)
105 responseSt1->SetSqrtKy3AndDeriveKy2Ky4(0.7550); // sqrt(0.5700)
106 responseSt1->SetPitch(0.20); // anode-cathode distance
107 responseSt1->SetSigmaIntegration(10.);
108 // ChargeSlope larger to compensate for the smaller anode-cathode distance
109 // and keep the same most probable ADC channel for mip's
110 responseSt1->SetChargeSlope(62.5);
111 // assumed proportionality to anode-cathode distance for ChargeSpread
112 responseSt1->SetChargeSpread(0.144, 0.144);
113 responseSt1->SetMaxAdc(4096);
4ac9d21e 114 responseSt1->SetSaturation(3000);
be3bb6c1 115 responseSt1->SetZeroSuppression(6);
116
ba030c0e 117 //--------------------------------------------------------
118 // Configuration for Chamber TC1/2 (Station 1) ----------
119
be3bb6c1 120 Float_t rseg1[4]={17.5, 55.2, 71.3, 95.5};
121 Int_t nseg1[4]={4, 4, 2, 1};
122//
ba030c0e 123 Int_t chamber=1;
124// ^^^^^^^^^^^^^^^^
125 fMUON->SetNsec(chamber-1,2);
be3bb6c1 126//
127 AliMUONSegmentationV01 *seg11=new AliMUONSegmentationV01(4);
128
129 seg11->SetSegRadii(rseg1);
130 seg11->SetPadSize(2.4, 0.4); // smaller pad size
131 seg11->SetDAnod(0.20); // smaller distance between anode wires
132 seg11->SetPadDivision(nseg1);
133
ba030c0e 134 fMUON->SetSegmentationModel(chamber-1, 1, seg11);
be3bb6c1 135
136 AliMUONSegmentationV02 *seg12=new AliMUONSegmentationV02(4);
137 seg12->SetSegRadii(rseg1);
138 seg12->SetPadSize(0.6, 1.6); // smaller pad size
139 seg12->SetDAnod(0.20); // smaller distance between anode wires
140 seg12->SetPadDivision(nseg1);
141
ba030c0e 142 fMUON->SetSegmentationModel(chamber-1, 2, seg12);
be3bb6c1 143
ba030c0e 144 fMUON->SetResponseModel(chamber-1, responseSt1); // special response
145 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
be3bb6c1 146
147 chamber=2;
148// ^^^^^^^^^
149//
ba030c0e 150 fMUON->SetNsec(chamber-1,2);
be3bb6c1 151//
152 AliMUONSegmentationV01 *seg21=new AliMUONSegmentationV01(4);
153 seg21->SetSegRadii(rseg1);
154 seg21->SetPadSize(2.4, 0.4); // smaller pad size
155 seg21->SetDAnod(0.20); // smaller distance between anode wires
156 seg21->SetPadDivision(nseg1);
ba030c0e 157 fMUON->SetSegmentationModel(chamber-1, 1, seg21);
be3bb6c1 158//
159 AliMUONSegmentationV02 *seg22=new AliMUONSegmentationV02(4);
160 seg22->SetSegRadii(rseg1);
161 seg22->SetPadSize(0.6, 1.6); // smaller pad size
162 seg22->SetDAnod(0.20); // smaller distance between anode wires
163 seg22->SetPadDivision(nseg1);
ba030c0e 164 fMUON->SetSegmentationModel(chamber-1, 2, seg22);
be3bb6c1 165
ba030c0e 166 fMUON->SetResponseModel(chamber-1, responseSt1); // special response
167 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
be3bb6c1 168
ba030c0e 169}
170
171//__________________________________________________________________________
172void AliMUONFactory::BuildStation2()
173{
be3bb6c1 174//
175//--------------------------------------------------------
176// Configuration for Chamber TC3/4 (Station 2) -----------
177///^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
178// Float_t rseg2[4]={23.5, 87.7, 122.4, 122.5};
ba030c0e 179
9af8b94b 180 Float_t rseg2[4]={23.5, 53.5, 90.5, 122.5};
be3bb6c1 181 Int_t nseg2[4]={4, 4, 2, 1};
182//
ba030c0e 183 Int_t chamber=3;
184// ^^^^^^^^^^^^^^^^
185 fMUON->SetNsec(chamber-1,2);
be3bb6c1 186//
187 AliMUONSegmentationV01 *seg31=new AliMUONSegmentationV01(4);
188 seg31->SetSegRadii(rseg2);
189 seg31->SetPadSize(3.0, 0.5);
190 seg31->SetDAnod(3.0/3./4);
191 seg31->SetPadDivision(nseg2);
ba030c0e 192 fMUON->SetSegmentationModel(chamber-1, 1, seg31);
be3bb6c1 193//
194 AliMUONSegmentationV02 *seg32=new AliMUONSegmentationV02(4);
195 seg32->SetSegRadii(rseg2);
196 seg32->SetPadSize(0.75, 2.0);
197 seg32->SetPadDivision(nseg2);
198 seg32->SetDAnod(3.0/3./4);
199
ba030c0e 200 fMUON->SetSegmentationModel(chamber-1, 2, seg32);
be3bb6c1 201
ba030c0e 202 fMUON->SetResponseModel(chamber-1, fResponse0);
203 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
be3bb6c1 204
205 chamber=4;
206// ^^^^^^^^^
207//
ba030c0e 208 fMUON->SetNsec(chamber-1,2);
be3bb6c1 209//
210 AliMUONSegmentationV01 *seg41=new AliMUONSegmentationV01(4);
211 seg41->SetSegRadii(rseg2);
212 seg41->SetPadSize(3.0, 0.5);
213 seg41->SetDAnod(3.0/3./4);
214 seg41->SetPadDivision(nseg2);
ba030c0e 215 fMUON->SetSegmentationModel(chamber-1, 1, seg41);
be3bb6c1 216//
217 AliMUONSegmentationV02 *seg42=new AliMUONSegmentationV02(4);
218 seg42->SetSegRadii(rseg2);
219 seg42->SetPadSize(0.75, 2.0);
220 seg42->SetPadDivision(nseg2);
221 seg42->SetDAnod(3.0/3./4);
222
ba030c0e 223 fMUON->SetSegmentationModel(chamber-1, 2, seg42);
be3bb6c1 224
ba030c0e 225 fMUON->SetResponseModel(chamber-1, fResponse0);
226 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
227}
be3bb6c1 228
229
ba030c0e 230//__________________________________________________________________________
231void AliMUONFactory::BuildStation3()
232{
be3bb6c1 233//--------------------------------------------------------
234// Configuration for Chamber TC5/6 (Station 3) ----------
235//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
ba030c0e 236
be3bb6c1 237 Int_t nseg3[4]={4, 4, 2, 1};
238 Int_t npcb5[36] = {0,0,2,0,
239 0,0,3,0,
240 0,1,3,0,
241 0,2,2,0,
7ddb761c 242 0,2,2,0,
be3bb6c1 243 0,2,2,0,
244 0,1,3,0,
245 0,0,3,0,
246 0,0,2,0};
247
e516b01d 248 Float_t shift = 0.; // no more constant overlap between slats
249
250 Float_t xpos5[9] = {1.25, 1.25, 1.25, 1.25, 1.25, 1.25, 1.25, 1.25, 1.25};
251 Float_t ypos5[9] = {-146.5, -112.8, -75.5, -37.8, 0.0, 37.8, 75.5, 112.8, 146.5};
252
253 for (Int_t i = 0; i < 9; i++) ypos5[i] -= 20.; // origin in segmentation at the bottom of the slat !
254
ba030c0e 255 Int_t chamber=5;
256 fMUON->SetNsec(chamber-1,2);
be3bb6c1 257 AliMUONSegmentationSlat *seg51=new AliMUONSegmentationSlat(4);
258 seg51->SetNSlats(9);
259 seg51->SetShift(shift);
260 seg51->SetNPCBperSector(npcb5);
261 seg51->SetSlatXPositions(xpos5);
e516b01d 262 seg51->SetSlatYPositions(ypos5);
be3bb6c1 263 seg51->SetPadSize(10.,0.5);
264 seg51->SetDAnod(0.25);
265 seg51->SetPadDivision(nseg3);
ba030c0e 266 fMUON->SetSegmentationModel(chamber-1, 1, seg51);
be3bb6c1 267
268 AliMUONSegmentationSlatN *seg52=new AliMUONSegmentationSlatN(4);
269 seg52->SetNSlats(9);
270 seg52->SetShift(shift);
271 seg52->SetNPCBperSector(npcb5);
272 seg52->SetSlatXPositions(xpos5);
e516b01d 273 seg52->SetSlatYPositions(ypos5);
be3bb6c1 274 seg52->SetPadSize(1., 10.); // DeltaX(non bending) = 2 * DeltaY(bending)
275 seg52->SetDAnod(0.25);
276 seg52->SetPadDivision(nseg3);
ba030c0e 277 fMUON->SetSegmentationModel(chamber-1, 2, seg52);
278 fMUON->SetResponseModel(chamber-1, fResponse0);
279 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
be3bb6c1 280
281 chamber=6;
ba030c0e 282 fMUON->SetNsec(chamber-1,2);
be3bb6c1 283 AliMUONSegmentationSlat *seg61=new AliMUONSegmentationSlat(4);
284 seg61->SetNSlats(9);
285 seg61->SetShift(shift);
286 seg61->SetNPCBperSector(npcb5);
287 seg61->SetSlatXPositions(xpos5);
e516b01d 288 seg61->SetSlatYPositions(ypos5);
be3bb6c1 289 seg61->SetPadSize(10.,0.5);
290 seg61->SetDAnod(0.25);
291 seg61->SetPadDivision(nseg3);
ba030c0e 292 fMUON->SetSegmentationModel(chamber-1, 1, seg61);
be3bb6c1 293
294 AliMUONSegmentationSlatN *seg62=new AliMUONSegmentationSlatN(4);
295 seg62->SetNSlats(9);
296 seg62->SetShift(shift);
297 seg62->SetNPCBperSector(npcb5);
298 seg62->SetSlatXPositions(xpos5);
e516b01d 299 seg62->SetSlatYPositions(ypos5);
be3bb6c1 300 seg62->SetPadSize(1., 10.); // DeltaX(non bending) = 2 * DeltaY(bending)
301 seg62->SetDAnod(0.25);
302 seg62->SetPadDivision(nseg3);
ba030c0e 303 fMUON->SetSegmentationModel(chamber-1, 2, seg62);
304 fMUON->SetResponseModel(chamber-1, fResponse0);
305 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
306}
307
be3bb6c1 308
ba030c0e 309//__________________________________________________________________________
310void AliMUONFactory::BuildStation4()
311{
be3bb6c1 312//--------------------------------------------------------
313// Configuration for Chamber TC7/8 (Station 4) ----------
314//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
315
316 Int_t nseg4[4]={4, 4, 2, 1};
317
ba030c0e 318 Int_t chamber=7;
319// ^^^^^^^^^^^^^^^^
be3bb6c1 320
ba030c0e 321 fMUON->SetNsec(chamber-1,2);
be3bb6c1 322//
323 AliMUONSegmentationSlat *seg71=new AliMUONSegmentationSlat(4);
e516b01d 324 Float_t shift = 0.;
325
c10e6eaf 326 Int_t npcb7[52] = {0,0,0,2,
327 0,0,0,3,
be3bb6c1 328 0,0,2,2,
329 0,0,3,2,
330 0,2,2,1,
7ddb761c 331 0,2,2,2,
332 0,1,2,2,
333 0,2,2,2,
be3bb6c1 334 0,2,2,1,
335 0,0,3,2,
336 0,0,2,2,
c10e6eaf 337 0,0,0,3,
338 0,0,0,2};
e516b01d 339 Float_t xpos7[13] = {1.25, 1.25, 1.25, 1.25, 1.25, 1.25, 39.45, 1.25, 1.25, 1.25, 1.25, 1.25, 1.25};
340 Float_t ypos7[13] = {-204.1, -175.5, -138.5, -109.2, -72.6, -38.2, 0.0,
341 38.2, 72.6, 109.2, 138.5, 175.5, 204.1};
342 Float_t ypos8[13] = {-208.6, -180.0, -143.0, -113.6, -76.05, -38.2, 0.0,
343 38.2, 76.05, 113.6, 143.0, 180.0, 208.6};
344 for (Int_t i = 0; i < 13; i++) {
345 ypos7[i] -= 20.;
346 ypos8[i] -= 20.;
347 }
be3bb6c1 348
c10e6eaf 349 seg71->SetNSlats(13);
be3bb6c1 350 seg71->SetShift(shift);
351 seg71->SetNPCBperSector(npcb7);
352 seg71->SetSlatXPositions(xpos7);
e516b01d 353 seg71->SetSlatYPositions(ypos7);
be3bb6c1 354
355 seg71->SetPadSize(10.,0.5);
356 seg71->SetDAnod(0.25);
357 seg71->SetPadDivision(nseg4);
ba030c0e 358 fMUON->SetSegmentationModel(chamber-1, 1, seg71);
be3bb6c1 359
360 AliMUONSegmentationSlatN *seg72=new AliMUONSegmentationSlatN(4);
361
ba030c0e 362 fMUON->SetSegmentationModel(chamber-1, 2, seg72);
6296ba34 363 seg72->SetNSlats(13);
be3bb6c1 364 seg72->SetShift(shift);
365 seg72->SetNPCBperSector(npcb7);
366 seg72->SetSlatXPositions(xpos7);
e516b01d 367 seg72->SetSlatYPositions(ypos7);
be3bb6c1 368 seg72->SetPadSize(1., 10.); // DeltaX(non bending) = 2 * DeltaY(bending)
369 seg72->SetDAnod(0.25);
370 seg72->SetPadDivision(nseg4);
371
ba030c0e 372 fMUON->SetResponseModel(chamber-1, fResponse0);
373 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
be3bb6c1 374
375 chamber=8;
376// ^^^^^^^^^
ba030c0e 377 fMUON->SetNsec(chamber-1,2);
be3bb6c1 378//
379 AliMUONSegmentationSlat *seg81=new AliMUONSegmentationSlat(4);
380
c10e6eaf 381 seg81->SetNSlats(13);
be3bb6c1 382 seg81->SetShift(shift);
383 seg81->SetNPCBperSector(npcb7);
384 seg81->SetSlatXPositions(xpos7);
e516b01d 385 seg81->SetSlatYPositions(ypos8);
be3bb6c1 386 seg81->SetPadSize(10.,0.5);
387 seg81->SetDAnod(0.25);
388 seg81->SetPadDivision(nseg4);
ba030c0e 389 fMUON->SetSegmentationModel(chamber-1, 1, seg81);
be3bb6c1 390
391 AliMUONSegmentationSlat *seg82=new AliMUONSegmentationSlatN(4);
392
ba030c0e 393 fMUON->SetSegmentationModel(chamber-1, 2, seg82);
6296ba34 394 seg82->SetNSlats(13);
be3bb6c1 395 seg82->SetShift(shift);
396 seg82->SetNPCBperSector(npcb7);
397 seg82->SetSlatXPositions(xpos7);
e516b01d 398 seg82->SetSlatYPositions(ypos8);
be3bb6c1 399 seg82->SetPadSize(1., 10.); // DeltaX(non bending) = 2 * DeltaY(bending)
400 seg82->SetDAnod(0.25);
401 seg82->SetPadDivision(nseg4);
402
ba030c0e 403 fMUON->SetResponseModel(chamber-1, fResponse0);
404 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
405}
be3bb6c1 406
ba030c0e 407//__________________________________________________________________________
408void AliMUONFactory::BuildStation5()
409{
be3bb6c1 410//--------------------------------------------------------
411// Configuration for Chamber TC9/10 (Station 5) ---------
412//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
be3bb6c1 413
ba030c0e 414 Int_t chamber=9;
415// ^^^^^^^^^^^^^^^^
416
417 fMUON->SetNsec(chamber-1,2);
be3bb6c1 418//
419 AliMUONSegmentationSlat *seg91=new AliMUONSegmentationSlat(4);
ba030c0e 420
421 Int_t nseg4[4]={4, 4, 2, 1};
e516b01d 422 Float_t shift = 0.;
423
be3bb6c1 424 Int_t npcb9[52] = {0,0,0,3,
425 0,0,0,4,
426 0,0,2,3,
427 0,0,3,3,
428 0,2,2,2,
429 0,2,2,2,
430 0,1,2,2,
431 0,2,2,2,
432 0,2,2,2,
433 0,0,3,3,
434 0,0,2,3,
435 0,0,0,4,
436 0,0,0,3};
437
e516b01d 438 Float_t xpos9[13] = {1.25, 1.25, 1.25, 1.25, 1.25, 1.25, 39.45, 1.25, 1.25, 1.25, 1.25, 1.25, 1.25};
439 Float_t ypos9[13] = {-224.8, -188.05, -151.0, -113.7, -76.1, -38.2, 0.0,
440 38.2, 76.1, 113.7, 151.0, 188.05, 224.8};
441
442 for (Int_t i = 0; i < 13; i++) ypos9[i] -= 20.;
443
be3bb6c1 444
445 seg91->SetNSlats(13);
446 seg91->SetShift(shift);
447 seg91->SetNPCBperSector(npcb9);
448 seg91->SetSlatXPositions(xpos9);
e516b01d 449 seg91->SetSlatYPositions(ypos9);
be3bb6c1 450 seg91->SetPadSize(10.,0.5);
451 seg91->SetDAnod(0.25);
452 seg91->SetPadDivision(nseg4);
ba030c0e 453 fMUON->SetSegmentationModel(chamber-1, 1, seg91);
be3bb6c1 454
455 AliMUONSegmentationSlatN *seg92=new AliMUONSegmentationSlatN(4);
456
ba030c0e 457 fMUON->SetSegmentationModel(chamber-1, 2, seg92);
be3bb6c1 458 seg92->SetNSlats(13);
459 seg92->SetShift(shift);
460 seg92->SetNPCBperSector(npcb9);
461 seg92->SetSlatXPositions(xpos9);
e516b01d 462 seg92->SetSlatYPositions(ypos9);
be3bb6c1 463 seg92->SetPadSize(1., 10.); // DeltaX(non bending) = 2 * DeltaY(bending)
464 seg92->SetDAnod(0.25);
465 seg92->SetPadDivision(nseg4);
466
ba030c0e 467 fMUON->SetResponseModel(chamber-1, fResponse0);
468 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
be3bb6c1 469
470 chamber=10;
471// ^^^^^^^^^
ba030c0e 472 fMUON->SetNsec(chamber-1,2);
be3bb6c1 473//
474 AliMUONSegmentationSlat *seg101=new AliMUONSegmentationSlat(4);
475
476 seg101->SetNSlats(13);
477 seg101->SetShift(shift);
478 seg101->SetNPCBperSector(npcb9);
479 seg101->SetSlatXPositions(xpos9);
e516b01d 480 seg101->SetSlatYPositions(ypos9);
be3bb6c1 481 seg101->SetPadSize(10.,0.5);
482 seg101->SetDAnod(0.25);
483 seg101->SetPadDivision(nseg4);
ba030c0e 484 fMUON->SetSegmentationModel(chamber-1, 1, seg101);
be3bb6c1 485
486 AliMUONSegmentationSlatN *seg102=new AliMUONSegmentationSlatN(4);
487
ba030c0e 488 fMUON->SetSegmentationModel(chamber-1, 2, seg102);
be3bb6c1 489 seg102->SetNSlats(13);
490 seg102->SetShift(shift);
491 seg102->SetNPCBperSector(npcb9);
492 seg102->SetSlatXPositions(xpos9);
e516b01d 493 seg102->SetSlatYPositions(ypos9);
be3bb6c1 494 seg102->SetPadSize(1., 10.); // DeltaX(non bending) = 2 * DeltaY(bending)
495 seg102->SetDAnod(0.25);
496 seg102->SetPadDivision(nseg4);
497
ba030c0e 498 fMUON->SetResponseModel(chamber-1, fResponse0);
499 fMUON->Chamber(chamber-1).SetChargeCorrel(0.11); // 11% charge spread
500}
be3bb6c1 501
ba030c0e 502//__________________________________________________________________________
503void AliMUONFactory::BuildStation6()
504{
be3bb6c1 505//--------------------------------------------------------
506// Configuration for Trigger Stations --------------------
507//^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
ba030c0e 508
be3bb6c1 509// Cluster-size off
510 AliMUONResponseTrigger* responseTrigger0 = new AliMUONResponseTrigger;
511// Cluster-size on
512// AliMUONResponseTriggerV1* responseTrigger0 = new AliMUONResponseTriggerV1;
513
ba030c0e 514 Int_t chamber=11;
515 fMUON->SetNsec(chamber-1,2);
be3bb6c1 516 AliMUONSegmentationTriggerX *seg111=new AliMUONSegmentationTriggerX;
ba030c0e 517 fMUON->SetSegmentationModel(chamber-1, 1, seg111);
be3bb6c1 518 AliMUONSegmentationTriggerY *seg112=new AliMUONSegmentationTriggerY;
ba030c0e 519 fMUON->SetSegmentationModel(chamber-1, 2, seg112);
be3bb6c1 520
ba030c0e 521 fMUON->SetResponseModel(chamber-1, responseTrigger0);
522 fMUON->Chamber(chamber-1).SetChargeCorrel(0); // same charge on cathodes
be3bb6c1 523
524
525 chamber=12;
ba030c0e 526 fMUON->SetNsec(chamber-1,2);
be3bb6c1 527 AliMUONSegmentationTriggerX *seg121=new AliMUONSegmentationTriggerX;
ba030c0e 528 fMUON->SetSegmentationModel(chamber-1, 1, seg121);
be3bb6c1 529 AliMUONSegmentationTriggerY *seg122=new AliMUONSegmentationTriggerY;
ba030c0e 530 fMUON->SetSegmentationModel(chamber-1, 2, seg122);
be3bb6c1 531
ba030c0e 532 fMUON->SetResponseModel(chamber-1, responseTrigger0);
533 fMUON->Chamber(chamber-1).SetChargeCorrel(0); // same charge on cathodes
be3bb6c1 534
535 chamber=13;
ba030c0e 536 fMUON->SetNsec(chamber-1,2);
be3bb6c1 537 AliMUONSegmentationTriggerX *seg131=new AliMUONSegmentationTriggerX;
ba030c0e 538 fMUON->SetSegmentationModel(chamber-1, 1, seg131);
be3bb6c1 539 AliMUONSegmentationTriggerY *seg132=new AliMUONSegmentationTriggerY;
ba030c0e 540 fMUON->SetSegmentationModel(chamber-1, 2, seg132);
541 fMUON->SetResponseModel(chamber-1, responseTrigger0);
542 fMUON->Chamber(chamber-1).SetChargeCorrel(0); // same charge on cathodes
be3bb6c1 543
544 chamber=14;
ba030c0e 545 fMUON->SetNsec(chamber-1,2);
be3bb6c1 546 AliMUONSegmentationTriggerX *seg141=new AliMUONSegmentationTriggerX;
ba030c0e 547 fMUON->SetSegmentationModel(chamber-1, 1, seg141);
be3bb6c1 548 AliMUONSegmentationTriggerY *seg142=new AliMUONSegmentationTriggerY;
ba030c0e 549 fMUON->SetSegmentationModel(chamber-1, 2, seg142);
be3bb6c1 550
ba030c0e 551 fMUON->SetResponseModel(chamber-1, responseTrigger0);
552 fMUON->Chamber(chamber-1).SetChargeCorrel(0); // same charge on cathodes
553}
554
555//__________________________________________________________________________
556void AliMUONFactory::Build(AliMUON* where, const char* what)
557{
558//
559// Construct MUON from chambers, segmentation and responses
560//
561
562 fMUON = where;
563 char tmp[20];
564 strcpy(tmp, what);
565
566 if (strcmp(tmp, "default")==0) {
567 // Set default parameters
568 fMUON->SetIshunt(0);
569 fMUON->SetMaxStepGas(0.1);
570 fMUON->SetMaxStepAlu(0.1);
571
572 // Build all stations
573 BuildCommon();
574 BuildStation1();
575 BuildStation2();
576 BuildStation3();
577 BuildStation4();
578 BuildStation5();
579 BuildStation6();
580 }
e516b01d 581 else {
582 if(fMUON->GetDebug()) {
583 printf("\nAliMUONFactory: --------AliMUONFactory------------------------------");
584 printf("\nAliMUONFactory: Non default version of MUON selected ");
585 printf("\nAliMUONFactory: You have to construct yourself the MUON elements !!");
586 printf("\nAliMUONFactory: ----------------------------------------------------");
587 }
588 }
be3bb6c1 589}
590
ba030c0e 591//__________________________________________________________________________
592void AliMUONFactory::BuildStation(AliMUON* where, Int_t stationNumber)
593{
594//
595// Construct MUON from chambers, segmentation and responses
596//
597// Version 0
598//
599// First define the number of planes that are segmented (1 or 2) by a call
600// to SetNsec.
601// Then chose for each chamber (chamber plane) the segmentation
602// and response model.
603// They should be equal for the two chambers of each station. In a future
604// version this will be enforced.
605//
606
607 fMUON = where;
608 if (!fResponse0) BuildCommon();
609
610 switch (stationNumber) {
611 case 1: BuildStation1(); break;
612 case 2: BuildStation2(); break;
613 case 3: BuildStation3(); break;
614 case 4: BuildStation4(); break;
615 case 5: BuildStation5(); break;
616 case 6: BuildStation6(); break;
617
e516b01d 618 default: Fatal("Build", "Wrong station number");
ba030c0e 619 }
620}