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4c039060 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$Log$
f8014e68 18Revision 1.29 2002/10/14 14:57:42 hristov
19Merging the VirtualMC branch to the main development branch (HEAD)
20
b9d0a01d 21Revision 1.25.6.3 2002/07/25 06:24:27 alibrary
22Updating TOF on VirtualMC
23
24Revision 1.28 2002/07/24 16:13:56 vicinanz
25Fixed bub in BuildGeometry
26
9e9add11 27Revision 1.27 2002/06/24 14:09:12 vicinanz
28review on materials and
29
43808676 30Revision 1.26 2002/05/08 13:24:50 vicinanz
31AliTOFanalyzeMatching.C macro added and minor changes to the AliTOF code
32
b213b8bd 33Revision 1.25 2001/11/22 11:22:51 hristov
34Updated version of TOF digitization, N^2 problem solved (J.Chudoba)
35
e59d8a81 36Revision 1.23 2001/09/27 10:39:20 vicinanz
37SDigitizer and Merger added
38
517b7f8f 39Revision 1.22 2001/09/20 15:54:22 vicinanz
40Updated Strip Structure (Double Stack)
41
dfacde63 42Revision 1.21 2001/08/28 08:45:59 vicinanz
43TTask and TFolder structures implemented
44
68861244 45Revision 1.20 2001/05/16 14:57:24 alibrary
46New files for folders and Stack
47
9e1a0ddb 48Revision 1.19 2001/05/04 10:09:48 vicinanz
49Major upgrades to the strip structure
50
b94fa26c 51Revision 1.18 2000/12/04 08:48:20 alibrary
52Fixing problems in the HEAD
53
0cc62300 54Revision 1.17 2000/10/02 21:28:17 fca
55Removal of useless dependecies via forward declarations
56
94de3818 57Revision 1.16 2000/05/10 16:52:18 vicinanz
58New TOF version with holes for PHOS/RICH
59
2cef3cb2 60Revision 1.14.2.1 2000/05/10 09:37:16 vicinanz
61New version with Holes for PHOS/RICH
62
da39da0c 63Revision 1.14 1999/11/05 22:39:06 fca
64New hits structure
65
2cef3cb2 66Revision 1.13 1999/11/02 11:26:39 fca
67added stdlib.h for exit
68
69Revision 1.12 1999/11/01 20:41:57 fca
826b71ec 70Added protections against using the wrong version of FRAME
71
2cef3cb2 72Revision 1.11 1999/10/22 08:04:14 fca
ab76897d 73Correct improper use of negative parameters
74
2cef3cb2 75Revision 1.10 1999/10/16 19:30:06 fca
d0a635a0 76Corrected Rotation Matrix and CVS log
77
2cef3cb2 78Revision 1.9 1999/10/15 15:35:20 fca
00e5f8d9 79New version for frame1099 with and without holes
80
2cef3cb2 81Revision 1.8 1999/09/29 09:24:33 fca
937fe4a4 82Introduction of the Copyright and cvs Log
83
4c039060 84*/
85
fe4da5cc 86///////////////////////////////////////////////////////////////////////////////
9e9add11 87//
68861244 88// This class contains the functions for version 2 of the Time Of Flight //
fe4da5cc 89// detector. //
937fe4a4 90//
91// VERSION WITH 5 MODULES AND TILTED STRIPS
92//
2cef3cb2 93// HOLES FOR PHOS AND RICH DETECTOR
937fe4a4 94//
2cef3cb2 95// Authors:
937fe4a4 96//
97// Alessio Seganti
98// Domenico Vicinanza
99//
100// University of Salerno - Italy
101//
b94fa26c 102// Fabrizio Pierella
103// University of Bologna - Italy
104//
937fe4a4 105//
fe4da5cc 106//Begin_Html
107/*
3fe3a833 108<img src="picts/AliTOFv2Class.gif">
fe4da5cc 109*/
110//End_Html
111// //
112///////////////////////////////////////////////////////////////////////////////
113
f8014e68 114#include <Riostream.h>
ab76897d 115#include <stdlib.h>
116
fe4da5cc 117#include "AliTOFv2.h"
2cef3cb2 118#include "TBRIK.h"
94de3818 119#include "TGeometry.h"
2cef3cb2 120#include "TNode.h"
0cc62300 121#include <TLorentzVector.h>
2cef3cb2 122#include "TObject.h"
fe4da5cc 123#include "AliRun.h"
94de3818 124#include "AliMC.h"
125#include "AliMagF.h"
fe4da5cc 126#include "AliConst.h"
2cef3cb2 127
fe4da5cc 128
129ClassImp(AliTOFv2)
130
131//_____________________________________________________________________________
151e057e 132AliTOFv2::AliTOFv2()
fe4da5cc 133{
134 //
135 // Default constructor
136 //
137}
138
139//_____________________________________________________________________________
140AliTOFv2::AliTOFv2(const char *name, const char *title)
2cef3cb2 141 : AliTOF(name,title)
fe4da5cc 142{
143 //
144 // Standard constructor
145 //
da39da0c 146 //
147 // Check that FRAME is there otherwise we have no place where to
148 // put TOF
b94fa26c 149 AliModule* frame=gAlice->GetModule("FRAME");
150 if(!frame) {
da39da0c 151 Error("Ctor","TOF needs FRAME to be present\n");
152 exit(1);
2cef3cb2 153 } else
b94fa26c 154 if(frame->IsVersion()!=1) {
da39da0c 155 Error("Ctor","FRAME version 1 needed with this version of TOF\n");
156 exit(1);
157 }
158
fe4da5cc 159}
2cef3cb2 160
b94fa26c 161//____________________________________________________________________________
68861244 162
2cef3cb2 163void AliTOFv2::BuildGeometry()
164{
165 //
166 // Build TOF ROOT geometry for the ALICE event display
167 //
b94fa26c 168 TNode *node, *top;
2cef3cb2 169 const int kColorTOF = 27;
9e9add11 170
2cef3cb2 171 // Find top TNODE
b94fa26c 172 top = gAlice->GetGeometry()->GetNode("alice");
9e9add11 173
2cef3cb2 174 // Position the different copies
b94fa26c 175 const Float_t krTof =(fRmax+fRmin)/2;
176 const Float_t khTof = fRmax-fRmin;
177 const Int_t kNTof = fNTof;
2cef3cb2 178 const Float_t kPi = TMath::Pi();
b94fa26c 179 const Float_t kangle = 2*kPi/kNTof;
2cef3cb2 180 Float_t ang;
9e9add11 181
182 // define offset for nodes
183 Float_t zOffsetC = fZtof - fZlenC*0.5;
184 Float_t zOffsetB = fZtof - fZlenC - fZlenB*0.5;
185 Float_t zOffsetA = 0.;
2cef3cb2 186 // Define TOF basic volume
187
b94fa26c 188 char nodeName0[6], nodeName1[6], nodeName2[6];
189 char nodeName3[6], nodeName4[6], rotMatNum[6];
9e9add11 190
2cef3cb2 191 new TBRIK("S_TOF_C","TOF box","void",
9e9add11 192 fStripLn*0.5,khTof*0.5,fZlenC*0.5);
2cef3cb2 193 new TBRIK("S_TOF_B","TOF box","void",
9e9add11 194 fStripLn*0.5,khTof*0.5,fZlenB*0.5);
2cef3cb2 195 new TBRIK("S_TOF_A","TOF box","void",
9e9add11 196 fStripLn*0.5,khTof*0.5,fZlenA*0.5);
197
b94fa26c 198 for (Int_t nodeNum=1;nodeNum<19;nodeNum++){
9e9add11 199
200 if (nodeNum<10) {
201 sprintf(rotMatNum,"rot50%i",nodeNum);
202 sprintf(nodeName0,"FTO00%i",nodeNum);
203 sprintf(nodeName1,"FTO10%i",nodeNum);
204 sprintf(nodeName2,"FTO20%i",nodeNum);
205 sprintf(nodeName3,"FTO30%i",nodeNum);
206 sprintf(nodeName4,"FTO40%i",nodeNum);
207 }
208 if (nodeNum>9) {
209 sprintf(rotMatNum,"rot5%i",nodeNum);
210 sprintf(nodeName0,"FTO0%i",nodeNum);
211 sprintf(nodeName1,"FTO1%i",nodeNum);
212 sprintf(nodeName2,"FTO2%i",nodeNum);
213 sprintf(nodeName3,"FTO3%i",nodeNum);
214 sprintf(nodeName4,"FTO4%i",nodeNum);
215 }
216
217 new TRotMatrix(rotMatNum,rotMatNum,90,-20*nodeNum,90,90-20*nodeNum,0,0);
218 ang = (4.5-nodeNum) * kangle;
219
220 top->cd();
221 node = new TNode(nodeName0,nodeName0,"S_TOF_C",krTof*TMath::Cos(ang),krTof*TMath::Sin(ang),zOffsetC,rotMatNum);
222 node->SetLineColor(kColorTOF);
223 fNodes->Add(node);
224
225 top->cd();
226 node = new TNode(nodeName1,nodeName1,"S_TOF_C",krTof*TMath::Cos(ang),krTof*TMath::Sin(ang),-zOffsetC,rotMatNum);
227 node->SetLineColor(kColorTOF);
228 fNodes->Add(node);
229 if (nodeNum !=1 && nodeNum!=17 && nodeNum !=18)
230 {
231 top->cd();
232 node = new TNode(nodeName2,nodeName2,"S_TOF_B",krTof*TMath::Cos(ang),krTof*TMath::Sin(ang),zOffsetB,rotMatNum);
233 node->SetLineColor(kColorTOF);
234 fNodes->Add(node);
235
236 top->cd();
237 node = new TNode(nodeName3,nodeName3,"S_TOF_B",krTof*TMath::Cos(ang),krTof*TMath::Sin(ang),-zOffsetB,rotMatNum);
238 node->SetLineColor(kColorTOF);
239 fNodes->Add(node);
240 } // Holes for RICH detector
241
242 if ((nodeNum<7 || nodeNum>11) && nodeNum !=1 && nodeNum!=17 && nodeNum !=18)
243 {
244 top->cd();
245 node = new TNode(nodeName4,nodeName4,"S_TOF_A",krTof*TMath::Cos(ang),krTof*TMath::Sin(ang),zOffsetA,rotMatNum);
246 node->SetLineColor(kColorTOF);
247 fNodes->Add(node);
248 } // Holes for PHOS detector (+ Holes for RICH detector, central part)
b94fa26c 249 } // end loop on nodeNum
2cef3cb2 250}
251
fe4da5cc 252
253//_____________________________________________________________________________
254void AliTOFv2::CreateGeometry()
255{
256 //
3fe3a833 257 // Create geometry for Time Of Flight version 0
fe4da5cc 258 //
259 //Begin_Html
260 /*
3fe3a833 261 <img src="picts/AliTOFv2.gif">
fe4da5cc 262 */
263 //End_Html
264 //
937fe4a4 265 // Creates common geometry
fe4da5cc 266 //
267 AliTOF::CreateGeometry();
268}
269
270//_____________________________________________________________________________
2cef3cb2 271void AliTOFv2::TOFpc(Float_t xtof, Float_t ytof, Float_t zlenC,
272 Float_t zlenB, Float_t zlenA, Float_t ztof0)
fe4da5cc 273{
274 //
275 // Definition of the Time Of Fligh Resistive Plate Chambers
937fe4a4 276 // xFLT, yFLT, zFLT - sizes of TOF modules (large)
3fe3a833 277
937fe4a4 278 Float_t ycoor, zcoor;
b94fa26c 279 Float_t par[3];
2cef3cb2 280 Int_t *idtmed = fIdtmed->GetArray()-499;
281 Int_t idrotm[100];
282 Int_t nrot = 0;
283 Float_t hTof = fRmax-fRmin;
fe4da5cc 284
b94fa26c 285 Float_t radius = fRmin+2.;//cm
937fe4a4 286
2cef3cb2 287 par[0] = xtof * 0.5;
288 par[1] = ytof * 0.5;
289 par[2] = zlenC * 0.5;
290 gMC->Gsvolu("FTOC", "BOX ", idtmed[506], par, 3);
291 par[2] = zlenB * 0.5;
292 gMC->Gsvolu("FTOB", "BOX ", idtmed[506], par, 3);
293 par[2] = zlenA * 0.5;
294 gMC->Gsvolu("FTOA", "BOX ", idtmed[506], par, 3);
937fe4a4 295
937fe4a4 296
43808676 297 // Positioning of modules
937fe4a4 298
43808676 299 Float_t zcor1 = ztof0 - zlenC*0.5;
300 Float_t zcor2 = ztof0 - zlenC - zlenB*0.5;
301 Float_t zcor3 = 0.;
302
303 AliMatrix(idrotm[0], 90., 0., 0., 0., 90,-90.);
304 AliMatrix(idrotm[1], 90.,180., 0., 0., 90, 90.);
305 gMC->Gspos("FTOC", 1, "BTO1", 0, zcor1, 0, idrotm[0], "ONLY");
306 gMC->Gspos("FTOC", 2, "BTO1", 0, -zcor1, 0, idrotm[1], "ONLY");
307 gMC->Gspos("FTOC", 1, "BTO2", 0, zcor1, 0, idrotm[0], "ONLY");
308 gMC->Gspos("FTOC", 2, "BTO2", 0, -zcor1, 0, idrotm[1], "ONLY");
309 gMC->Gspos("FTOC", 1, "BTO3", 0, zcor1, 0, idrotm[0], "ONLY");
310 gMC->Gspos("FTOC", 2, "BTO3", 0, -zcor1, 0, idrotm[1], "ONLY");
311
312 gMC->Gspos("FTOB", 1, "BTO1", 0, zcor2, 0, idrotm[0], "ONLY");
313 gMC->Gspos("FTOB", 2, "BTO1", 0, -zcor2, 0, idrotm[1], "ONLY");
314 gMC->Gspos("FTOB", 1, "BTO2", 0, zcor2, 0, idrotm[0], "ONLY");
315 gMC->Gspos("FTOB", 2, "BTO2", 0, -zcor2, 0, idrotm[1], "ONLY");
316
317 gMC->Gspos("FTOA", 0, "BTO1", 0, zcor3, 0, idrotm[0], "ONLY");
318
2cef3cb2 319 Float_t db = 0.5;//cm
320 Float_t xFLT, xFST, yFLT, zFLTA, zFLTB, zFLTC;
43808676 321
2cef3cb2 322 xFLT = fStripLn;
937fe4a4 323 yFLT = ytof;
2cef3cb2 324 zFLTA = zlenA;
325 zFLTB = zlenB;
326 zFLTC = zlenC;
327
328 xFST = xFLT-fDeadBndX*2;//cm
937fe4a4 329
937fe4a4 330// Sizes of MRPC pads
331
2cef3cb2 332 Float_t yPad = 0.505;//cm
fe4da5cc 333
b94fa26c 334// Large not sensitive volumes with Insensitive Freon
2cef3cb2 335 par[0] = xFLT*0.5;
336 par[1] = yFLT*0.5;
b94fa26c 337
9e1a0ddb 338 if(fDebug)
339 cout <<ClassName()
340 <<": ************************* TOF geometry **************************"
341 <<endl;
937fe4a4 342
2cef3cb2 343 par[2] = (zFLTA *0.5);
b94fa26c 344 gMC->Gsvolu("FLTA", "BOX ", idtmed[512], par, 3); // Insensitive Freon
2cef3cb2 345 gMC->Gspos ("FLTA", 0, "FTOA", 0., 0., 0., 0, "ONLY");
937fe4a4 346
2cef3cb2 347 par[2] = (zFLTB * 0.5);
b94fa26c 348 gMC->Gsvolu("FLTB", "BOX ", idtmed[512], par, 3); // Insensitive Freon
2cef3cb2 349 gMC->Gspos ("FLTB", 0, "FTOB", 0., 0., 0., 0, "ONLY");
937fe4a4 350
b94fa26c 351 par[2] = (zFLTC * 0.5);
352 gMC->Gsvolu("FLTC", "BOX ", idtmed[512], par, 3); // Insensitive Freon
2cef3cb2 353 gMC->Gspos ("FLTC", 0, "FTOC", 0., 0., 0., 0, "ONLY");
937fe4a4 354
43808676 355 ///// Layers of Aluminum before and after detector /////
356 ///// Aluminum Box for Modules (1.8 mm thickness) /////
357 ///// lateral walls not simulated for the time being
358 //const Float_t khAlWall = 0.18;
359 // fp to be checked
360 const Float_t khAlWall = 0.11;
b94fa26c 361 par[0] = xFLT*0.5;
43808676 362 par[1] = khAlWall/2.;//cm
937fe4a4 363 ycoor = -yFLT/2 + par[1];
b94fa26c 364 par[2] = (zFLTA *0.5);
365 gMC->Gsvolu("FALA", "BOX ", idtmed[508], par, 3); // Alluminium
366 gMC->Gspos ("FALA", 1, "FLTA", 0., ycoor, 0., 0, "ONLY");
367 gMC->Gspos ("FALA", 2, "FLTA", 0.,-ycoor, 0., 0, "ONLY");
368 par[2] = (zFLTB *0.5);
369 gMC->Gsvolu("FALB", "BOX ", idtmed[508], par, 3); // Alluminium
370 gMC->Gspos ("FALB", 1, "FLTB", 0., ycoor, 0., 0, "ONLY");
371 gMC->Gspos ("FALB", 2, "FLTB", 0.,-ycoor, 0., 0, "ONLY");
372 par[2] = (zFLTC *0.5);
373 gMC->Gsvolu("FALC", "BOX ", idtmed[508], par, 3); // Alluminium
374 gMC->Gspos ("FALC", 1, "FLTC", 0., ycoor, 0., 0, "ONLY");
375 gMC->Gspos ("FALC", 2, "FLTC", 0.,-ycoor, 0., 0, "ONLY");
376
43808676 377 ///////////////// Detector itself //////////////////////
378
b94fa26c 379 const Float_t kdeadBound = fDeadBndZ; //cm non-sensitive between the pad edge
43808676 380 //and the boundary of the strip
b94fa26c 381 const Int_t knx = fNpadX; // number of pads along x
382 const Int_t knz = fNpadZ; // number of pads along z
383 const Float_t kspace = fSpace; //cm distance from the front plate of the box
43808676 384
2cef3cb2 385 Float_t zSenStrip = fZpad*fNpadZ;//cm
b94fa26c 386 Float_t stripWidth = zSenStrip + 2*kdeadBound;
43808676 387
2cef3cb2 388 par[0] = xFLT*0.5;
389 par[1] = yPad*0.5;
b94fa26c 390 par[2] = stripWidth*0.5;
937fe4a4 391
43808676 392 // new description for strip volume -double stack strip-
393 // -- all constants are expressed in cm
394 // heigth of different layers
395 const Float_t khhony = 0.8 ; // heigth of HONY Layer
396 const Float_t khpcby = 0.08 ; // heigth of PCB Layer
b94fa26c 397 const Float_t khmyly = 0.035 ; // heigth of MYLAR Layer
398 const Float_t khgraphy = 0.02 ; // heigth of GRAPHITE Layer
43808676 399 const Float_t khglasseiy = 0.135; // 0.6 Ext. Glass + 1.1 i.e. (Int. Glass/2) (mm)
b94fa26c 400 const Float_t khsensmy = 0.11 ; // heigth of Sensitive Freon Mixture
401 const Float_t kwsensmz = 2*3.5 ; // cm
402 const Float_t klsensmx = 48*2.5; // cm
403 const Float_t kwpadz = 3.5; // cm z dimension of the FPAD volume
404 const Float_t klpadx = 2.5; // cm x dimension of the FPAD volume
405
406 // heigth of the FSTR Volume (the strip volume)
dfacde63 407 const Float_t khstripy = 2*khhony+3*khpcby+4*(khmyly+khgraphy+khglasseiy)+2*khsensmy;
b94fa26c 408 // width of the FSTR Volume (the strip volume)
409 const Float_t kwstripz = 10.;
410 // length of the FSTR Volume (the strip volume)
411 const Float_t klstripx = 122.;
412
413 Float_t parfp[3]={klstripx*0.5,khstripy*0.5,kwstripz*0.5};
43808676 414 // coordinates of the strip center in the strip reference frame; used for positioning
415 // internal strip volumes
b94fa26c 416 Float_t posfp[3]={0.,0.,0.};
43808676 417
b94fa26c 418
419 // FSTR volume definition and filling this volume with non sensitive Gas Mixture
420 gMC->Gsvolu("FSTR","BOX",idtmed[512],parfp,3);
421 //-- HONY Layer definition
43808676 422 // parfp[0] = -1;
b94fa26c 423 parfp[1] = khhony*0.5;
43808676 424 // parfp[2] = -1;
b94fa26c 425 gMC->Gsvolu("FHON","BOX",idtmed[503],parfp,3);
426 // positioning 2 HONY Layers on FSTR volume
43808676 427
b94fa26c 428 posfp[1]=-khstripy*0.5+parfp[1];
429 gMC->Gspos("FHON",1,"FSTR",0., posfp[1],0.,0,"ONLY");
430 gMC->Gspos("FHON",2,"FSTR",0.,-posfp[1],0.,0,"ONLY");
43808676 431
b94fa26c 432 //-- PCB Layer definition
433 parfp[1] = khpcby*0.5;
434 gMC->Gsvolu("FPCB","BOX",idtmed[504],parfp,3);
435 // positioning 2 PCB Layers on FSTR volume
436 posfp[1]=-khstripy*0.5+khhony+parfp[1];
437 gMC->Gspos("FPCB",1,"FSTR",0., posfp[1],0.,0,"ONLY");
438 gMC->Gspos("FPCB",2,"FSTR",0.,-posfp[1],0.,0,"ONLY");
dfacde63 439 // positioning the central PCB layer
440 gMC->Gspos("FPCB",3,"FSTR",0.,0.,0.,0,"ONLY");
43808676 441
442
443
b94fa26c 444 //-- MYLAR Layer definition
445 parfp[1] = khmyly*0.5;
446 gMC->Gsvolu("FMYL","BOX",idtmed[511],parfp,3);
447 // positioning 2 MYLAR Layers on FSTR volume
448 posfp[1] = -khstripy*0.5+khhony+khpcby+parfp[1];
449 gMC->Gspos("FMYL",1,"FSTR",0., posfp[1],0.,0,"ONLY");
450 gMC->Gspos("FMYL",2,"FSTR",0.,-posfp[1],0.,0,"ONLY");
dfacde63 451 // adding further 2 MYLAR Layers on FSTR volume
452 posfp[1] = khpcby*0.5+parfp[1];
453 gMC->Gspos("FMYL",3,"FSTR",0., posfp[1],0.,0,"ONLY");
454 gMC->Gspos("FMYL",4,"FSTR",0.,-posfp[1],0.,0,"ONLY");
43808676 455
456
b94fa26c 457 //-- Graphite Layer definition
458 parfp[1] = khgraphy*0.5;
459 gMC->Gsvolu("FGRP","BOX",idtmed[502],parfp,3);
460 // positioning 2 Graphite Layers on FSTR volume
461 posfp[1] = -khstripy*0.5+khhony+khpcby+khmyly+parfp[1];
462 gMC->Gspos("FGRP",1,"FSTR",0., posfp[1],0.,0,"ONLY");
463 gMC->Gspos("FGRP",2,"FSTR",0.,-posfp[1],0.,0,"ONLY");
dfacde63 464 // adding further 2 Graphite Layers on FSTR volume
465 posfp[1] = khpcby*0.5+khmyly+parfp[1];
466 gMC->Gspos("FGRP",3,"FSTR",0., posfp[1],0.,0,"ONLY");
467 gMC->Gspos("FGRP",4,"FSTR",0.,-posfp[1],0.,0,"ONLY");
43808676 468
469
b94fa26c 470 //-- Glass (EXT. +Semi INT.) Layer definition
471 parfp[1] = khglasseiy*0.5;
472 gMC->Gsvolu("FGLA","BOX",idtmed[514],parfp,3);
473 // positioning 2 Glass Layers on FSTR volume
474 posfp[1] = -khstripy*0.5+khhony+khpcby+khmyly+khgraphy+parfp[1];
475 gMC->Gspos("FGLA",1,"FSTR",0., posfp[1],0.,0,"ONLY");
476 gMC->Gspos("FGLA",2,"FSTR",0.,-posfp[1],0.,0,"ONLY");
dfacde63 477 // adding further 2 Glass Layers on FSTR volume
478 posfp[1] = khpcby*0.5+khmyly+khgraphy+parfp[1];
479 gMC->Gspos("FGLA",3,"FSTR",0., posfp[1],0.,0,"ONLY");
480 gMC->Gspos("FGLA",4,"FSTR",0.,-posfp[1],0.,0,"ONLY");
43808676 481
b94fa26c 482
483 //-- Sensitive Mixture Layer definition
484 parfp[0] = klsensmx*0.5;
485 parfp[1] = khsensmy*0.5;
dfacde63 486 parfp[2] = kwsensmz*0.5;
b94fa26c 487 gMC->Gsvolu("FSEN","BOX",idtmed[513],parfp,3);
dfacde63 488 gMC->Gsvolu("FNSE","BOX",idtmed[512],parfp,3);
489 // positioning 2 gas Layers on FSTR volume
490 // the upper is insensitive freon
491 // while the remaining is sensitive
492 posfp[1] = khpcby*0.5+khmyly+khgraphy+khglasseiy+parfp[1];
493 gMC->Gspos("FNSE",0,"FSTR", 0., posfp[1],0.,0,"ONLY");
494 gMC->Gspos("FSEN",0,"FSTR", 0.,-posfp[1],0.,0,"ONLY");
43808676 495
b94fa26c 496 // dividing FSEN along z in knz=2 and along x in knx=48
497 gMC->Gsdvn("FSEZ","FSEN",knz,3);
498 gMC->Gsdvn("FSEX","FSEZ",knx,1);
499
500 // FPAD volume definition
501 parfp[0] = klpadx*0.5;
502 parfp[1] = khsensmy*0.5;
503 parfp[2] = kwpadz*0.5;
504 gMC->Gsvolu("FPAD","BOX",idtmed[513],parfp,3);
505 // positioning the FPAD volumes on previous divisions
506 gMC->Gspos("FPAD",0,"FSEX",0.,0.,0.,0,"ONLY");
937fe4a4 507
43808676 508 //// Positioning the Strips (FSTR) in the FLT volumes /////
509
2cef3cb2 510 // Plate A (Central)
511
512 Float_t t = zFLTC+zFLTB+zFLTA*0.5+ 2*db;//Half Width of Barrel
43808676 513
b213b8bd 514 Float_t gap = fGapA+0.5; //cm updated distance between the strip axis
937fe4a4 515 Float_t zpos = 0;
2cef3cb2 516 Float_t ang = 0;
937fe4a4 517 Int_t i=1,j=1;
2cef3cb2 518 nrot = 0;
519 zcoor = 0;
b94fa26c 520 ycoor = -14.5 + kspace ; //2 cm over front plate
43808676 521
2cef3cb2 522 AliMatrix (idrotm[0], 90., 0.,90.,90.,0., 90.);
523 gMC->Gspos("FSTR",j,"FLTA",0.,ycoor, 0.,idrotm[0],"ONLY");
43808676 524
9e1a0ddb 525 if(fDebug) {
43808676 526 printf("%s: %f, St. %2i, Pl.3 ",ClassName(),ang*kRaddeg,i);
527 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
9e1a0ddb 528 }
43808676 529
2cef3cb2 530 zcoor -= zSenStrip;
531 j++;
b94fa26c 532 Int_t upDown = -1; // upDown=-1 -> Upper strip
43808676 533 // upDown=+1 -> Lower strip
937fe4a4 534 do{
43808676 535 ang = atan(zcoor/radius);
536 ang *= kRaddeg;
537 AliMatrix (idrotm[nrot], 90., 0.,90.-ang,90.,-ang, 90.);
538 AliMatrix (idrotm[nrot+1],90.,180.,90.+ang,90., ang, 90.);
539 ang /= kRaddeg;
540 ycoor = -14.5+ kspace; //2 cm over front plate
541 ycoor += (1-(upDown+1)/2)*gap;
542 gMC->Gspos("FSTR",j ,"FLTA",0.,ycoor, zcoor,idrotm[nrot], "ONLY");
543 gMC->Gspos("FSTR",j+1,"FLTA",0.,ycoor,-zcoor,idrotm[nrot+1],"ONLY");
544
545 if(fDebug) {
546 printf("%s: %f, St. %2i, Pl.3 ",ClassName(),ang*kRaddeg,i);
547 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
548 }
549
550 j += 2;
551 upDown*= -1; // Alternate strips
552 zcoor = zcoor-(zSenStrip/2)/TMath::Cos(ang)-
553 upDown*gap*TMath::Tan(ang)-
554 (zSenStrip/2)/TMath::Cos(ang);
b94fa26c 555 } while (zcoor-(stripWidth/2)*TMath::Cos(ang)>-t+zFLTC+zFLTB+db*2);
937fe4a4 556
2cef3cb2 557 zcoor = zcoor+(zSenStrip/2)/TMath::Cos(ang)+
43808676 558 upDown*gap*TMath::Tan(ang)+
559 (zSenStrip/2)/TMath::Cos(ang);
560
b94fa26c 561 gap = fGapB;
2cef3cb2 562 zcoor = zcoor-(zSenStrip/2)/TMath::Cos(ang)-
43808676 563 upDown*gap*TMath::Tan(ang)-
564 (zSenStrip/2)/TMath::Cos(ang);
565
b94fa26c 566 ang = atan(zcoor/radius);
2cef3cb2 567 ang *= kRaddeg;
568 AliMatrix (idrotm[nrot], 90., 0.,90.-ang,90.,-ang, 90.);
569 AliMatrix (idrotm[nrot+1],90.,180.,90.+ang,90., ang, 90.);
570 ang /= kRaddeg;
43808676 571
b94fa26c 572 ycoor = -14.5+ kspace; //2 cm over front plate
573 ycoor += (1-(upDown+1)/2)*gap;
2cef3cb2 574 gMC->Gspos("FSTR",j ,"FLTA",0.,ycoor, zcoor,idrotm[nrot], "ONLY");
575 gMC->Gspos("FSTR",j+1,"FLTA",0.,ycoor,-zcoor,idrotm[nrot+1],"ONLY");
43808676 576
68861244 577 if(fDebug) {
43808676 578 printf("%s: %f, St. %2i, Pl.3 ",ClassName(),ang*kRaddeg,i);
579 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
68861244 580 }
43808676 581
b94fa26c 582 ycoor = -hTof/2.+ kspace;//2 cm over front plate
43808676 583
2cef3cb2 584 // Plate B
43808676 585
937fe4a4 586 nrot = 0;
587 i=1;
b94fa26c 588 upDown = 1;
589 Float_t deadRegion = 1.0;//cm
2cef3cb2 590
591 zpos = zcoor - (zSenStrip/2)/TMath::Cos(ang)-
43808676 592 upDown*gap*TMath::Tan(ang)-
593 (zSenStrip/2)/TMath::Cos(ang)-
594 deadRegion/TMath::Cos(ang);
595
b94fa26c 596 ang = atan(zpos/radius);
2cef3cb2 597 ang *= kRaddeg;
598 AliMatrix (idrotm[nrot], 90., 0., 90.-ang,90.,ang, 270.);
599 ang /= kRaddeg;
b94fa26c 600 ycoor = -hTof*0.5+ kspace ; //2 cm over front plate
601 ycoor += (1-(upDown+1)/2)*gap;
2cef3cb2 602 zcoor = zpos+(zFLTA*0.5+zFLTB*0.5+db); // Moves to the system of the modulus FLTB
603 gMC->Gspos("FSTR",i, "FLTB", 0., ycoor, zcoor,idrotm[nrot], "ONLY");
43808676 604
68861244 605 if(fDebug) {
43808676 606 printf("%s: %f, St. %2i, Pl.4 ",ClassName(),ang*kRaddeg,i);
607 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
68861244 608 }
43808676 609
2cef3cb2 610 i++;
b94fa26c 611 upDown*=-1;
43808676 612
937fe4a4 613 do {
43808676 614 zpos = zpos - (zSenStrip/2)/TMath::Cos(ang)-
615 upDown*gap*TMath::Tan(ang)-
616 (zSenStrip/2)/TMath::Cos(ang);
617 ang = atan(zpos/radius);
618 ang *= kRaddeg;
619 AliMatrix (idrotm[nrot], 90., 0., 90.-ang,90.,ang, 270.);
620 ang /= kRaddeg;
621 Float_t deltaSpaceinB=-0.5; // [cm] to avoid overlaps with the end of freon frame
622 Float_t deltaGapinB=0.5; // [cm] to avoid overlaps in between initial strips
623 ycoor = -hTof*0.5+ kspace+deltaSpaceinB ; //2 cm over front plate
624 ycoor += (1-(upDown+1)/2)*(gap+deltaGapinB);
625 zcoor = zpos+(zFLTA*0.5+zFLTB*0.5+db); // Moves to the system of the modulus FLTB
626 gMC->Gspos("FSTR",i, "FLTB", 0., ycoor, zcoor,idrotm[nrot], "ONLY");
627
628 if(fDebug) {
629 printf("%s: %f, St. %2i, Pl.4 ",ClassName(),ang*kRaddeg,i);
630 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
631 }
632
633 upDown*=-1;
634 i++;
2cef3cb2 635 } while (TMath::Abs(ang*kRaddeg)<22.5);
636 //till we reach a tilting angle of 22.5 degrees
43808676 637
b94fa26c 638 ycoor = -hTof*0.5+ kspace ; //2 cm over front plate
2cef3cb2 639 zpos = zpos - zSenStrip/TMath::Cos(ang);
b213b8bd 640 // this avoid overlaps in between outer strips in plate B
641 Float_t deltaMovingUp=0.8; // [cm]
642 Float_t deltaMovingDown=-0.5; // [cm]
43808676 643
2cef3cb2 644 do {
43808676 645 ang = atan(zpos/radius);
646 ang *= kRaddeg;
647 AliMatrix (idrotm[nrot], 90., 0., 90.-ang,90.,ang, 270.);
648 ang /= kRaddeg;
649 zcoor = zpos+(zFLTB/2+zFLTA/2+db);
650 gMC->Gspos("FSTR",i, "FLTB", 0., ycoor+deltaMovingDown+deltaMovingUp, zcoor,idrotm[nrot], "ONLY");
651 deltaMovingUp+=0.8; // update delta moving toward the end of the plate
652 zpos = zpos - zSenStrip/TMath::Cos(ang);
653 if(fDebug) {
654 printf("%s: %f, St. %2i, Pl.4 ",ClassName(),ang*kRaddeg,i);
655 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
656 }
657 i++;
658
b94fa26c 659 } while (zpos-stripWidth*0.5/TMath::Cos(ang)>-t+zFLTC+db);
43808676 660
2cef3cb2 661 // Plate C
662
663 zpos = zpos + zSenStrip/TMath::Cos(ang);
43808676 664
2cef3cb2 665 zpos = zpos - (zSenStrip/2)/TMath::Cos(ang)+
43808676 666 gap*TMath::Tan(ang)-
667 (zSenStrip/2)/TMath::Cos(ang);
668
937fe4a4 669 nrot = 0;
670 i=0;
b213b8bd 671 Float_t deltaGap=-2.5; // [cm] update distance from strip center and plate
672 ycoor= -hTof*0.5+kspace+gap+deltaGap;
43808676 673
2cef3cb2 674 do {
43808676 675 i++;
676 ang = atan(zpos/radius);
677 ang *= kRaddeg;
678 AliMatrix (idrotm[nrot], 90., 0., 90.-ang,90.,ang, 270.);
679 ang /= kRaddeg;
680 zcoor = zpos+(zFLTC*0.5+zFLTB+zFLTA*0.5+db*2);
681 gMC->Gspos("FSTR",i, "FLTC", 0., ycoor, zcoor,idrotm[nrot], "ONLY");
682
683 if(fDebug) {
684 printf("%s: %f, St. %2i, Pl.5 ",ClassName(),ang*kRaddeg,i);
685 printf("%s: y = %f, z = %f, zpos = %f \n",ClassName(),ycoor,zcoor,zpos);
686 }
687
688 zpos = zpos - zSenStrip/TMath::Cos(ang);
b94fa26c 689 } while (zpos-stripWidth*TMath::Cos(ang)*0.5>-t);
43808676 690
691
692 ////////// Layers after strips /////////////////
693 // Al Layer thickness (2.3mm) factor 0.7
694
b94fa26c 695 Float_t overSpace = fOverSpc;//cm
43808676 696
b94fa26c 697 par[0] = xFLT*0.5;
43808676 698 par[1] = 0.115*0.7; // factor 0.7
b94fa26c 699 par[2] = (zFLTA *0.5);
700 ycoor = -yFLT/2 + overSpace + par[1];
43808676 701 gMC->Gsvolu("FPEA", "BOX ", idtmed[508], par, 3); // Al
2cef3cb2 702 gMC->Gspos ("FPEA", 0, "FLTA", 0., ycoor, 0., 0, "ONLY");
b94fa26c 703 par[2] = (zFLTB *0.5);
43808676 704 gMC->Gsvolu("FPEB", "BOX ", idtmed[508], par, 3); // Al
2cef3cb2 705 gMC->Gspos ("FPEB", 0, "FLTB", 0., ycoor, 0., 0, "ONLY");
b94fa26c 706 par[2] = (zFLTC *0.5);
43808676 707 gMC->Gsvolu("FPEC", "BOX ", idtmed[508], par, 3); // Al
2cef3cb2 708 gMC->Gspos ("FPEC", 0, "FLTC", 0., ycoor, 0., 0, "ONLY");
937fe4a4 709
43808676 710
711 // plexiglass thickness: 1.5 mm ; factor 0.3
937fe4a4 712 ycoor += par[1];
b94fa26c 713 par[0] = xFLT*0.5;
43808676 714 par[1] = 0.075*0.3; // factor 0.3
b94fa26c 715 par[2] = (zFLTA *0.5);
937fe4a4 716 ycoor += par[1];
43808676 717 gMC->Gsvolu("FECA", "BOX ", idtmed[505], par, 3); // Plexigl.
2cef3cb2 718 gMC->Gspos ("FECA", 0, "FLTA", 0., ycoor, 0., 0, "ONLY");
b94fa26c 719 par[2] = (zFLTB *0.5);
43808676 720 gMC->Gsvolu("FECB", "BOX ", idtmed[505], par, 3); // Plexigl.
2cef3cb2 721 gMC->Gspos ("FECB", 0, "FLTB", 0., ycoor, 0., 0, "ONLY");
b94fa26c 722 par[2] = (zFLTC *0.5);
43808676 723 gMC->Gsvolu("FECC", "BOX ", idtmed[505], par, 3); // Plexigl.
2cef3cb2 724 gMC->Gspos ("FECC", 0, "FLTC", 0., ycoor, 0., 0, "ONLY");
43808676 725
726 // frame of Air
b94fa26c 727 ycoor += par[1];
728 par[0] = xFLT*0.5;
43808676 729 par[1] = (yFLT/2-ycoor-khAlWall)*0.5; // Aluminum layer considered (0.18 cm)
b94fa26c 730 par[2] = (zFLTA *0.5);
731 ycoor += par[1];
732 gMC->Gsvolu("FAIA", "BOX ", idtmed[500], par, 3); // Air
733 gMC->Gspos ("FAIA", 0, "FLTA", 0., ycoor, 0., 0, "ONLY");
734 par[2] = (zFLTB *0.5);
735 gMC->Gsvolu("FAIB", "BOX ", idtmed[500], par, 3); // Air
736 gMC->Gspos ("FAIB", 0, "FLTB", 0., ycoor, 0., 0, "ONLY");
737 par[2] = (zFLTC *0.5);
738 gMC->Gsvolu("FAIC", "BOX ", idtmed[500], par, 3); // Air
739 gMC->Gspos ("FAIC", 0, "FLTC", 0., ycoor, 0., 0, "ONLY");
43808676 740
741
742 // start with cards and cooling tubes
743 // finally, cards, cooling tubes and layer for thermal dispersion
744 // 3 volumes
745 // card volume definition
746
747 // see GEOM200 in GEANT manual
748 AliMatrix(idrotm[98], 90., 0., 90., 90., 0., 0.); // 0 deg
749
750 Float_t cardpar[3];
751 cardpar[0]= 61.;
752 cardpar[1]= 5.;
753 cardpar[2]= 0.1;
754 gMC->Gsvolu("FCAR", "BOX ", idtmed[504], cardpar, 3); // PCB Card
755 //alu plate volume definition
756 cardpar[1]= 3.5;
757 cardpar[2]= 0.05;
758 gMC->Gsvolu("FALP", "BOX ", idtmed[508], cardpar, 3); // Alu Plate
759
760
761 // central module positioning (FAIA)
762 Float_t cardpos[3], aplpos2, stepforcardA=6.625;
763 cardpos[0]= 0.;
764 cardpos[1]= -0.5;
765 cardpos[2]= -53.;
766 Float_t aplpos1 = -2.;
767 Int_t icard;
768 for (icard=0; icard<15; ++icard) {
769 cardpos[2]= cardpos[2]+stepforcardA;
770 aplpos2 = cardpos[2]+0.15;
771 gMC->Gspos("FCAR",icard,"FAIA",cardpos[0],cardpos[1],cardpos[2],idrotm[98],"ONLY");
772 gMC->Gspos("FALP",icard,"FAIA",cardpos[0],aplpos1,aplpos2,idrotm[98],"ONLY");
773
774 }
775
776
777 // intermediate module positioning (FAIB)
778 Float_t stepforcardB= 7.05;
779 cardpos[2]= -70.5;
780 for (icard=0; icard<19; ++icard) {
781 cardpos[2]= cardpos[2]+stepforcardB;
782 aplpos2 = cardpos[2]+0.15;
783 gMC->Gspos("FCAR",icard,"FAIB",cardpos[0],cardpos[1],cardpos[2],idrotm[98],"ONLY");
784 gMC->Gspos("FALP",icard,"FAIB",cardpos[0],aplpos1,aplpos2,idrotm[98],"ONLY");
785 }
786
787
788 // outer module positioning (FAIC)
789 Float_t stepforcardC= 8.45238;
790 cardpos[2]= -88.75;
791 for (icard=0; icard<20; ++icard) {
792 cardpos[2]= cardpos[2]+stepforcardC;
793 aplpos2 = cardpos[2]+0.15;
794 gMC->Gspos("FCAR",icard,"FAIC",cardpos[0],cardpos[1],cardpos[2],idrotm[98],"ONLY");
795 gMC->Gspos("FALP",icard,"FAIC",cardpos[0],aplpos1,aplpos2,idrotm[98],"ONLY");
796 }
797
798 // tube volume definition
799 Float_t tubepar[3];
800 tubepar[0]= 0.;
801 tubepar[1]= 0.4;
802 tubepar[2]= 61.;
803 gMC->Gsvolu("FTUB", "TUBE", idtmed[516], tubepar, 3); // cooling tubes (steel)
804 tubepar[0]= 0.;
805 tubepar[1]= 0.35;
806 tubepar[2]= 61.;
807 gMC->Gsvolu("FITU", "TUBE", idtmed[515], tubepar, 3); // cooling water
808 // positioning water tube into the steel one
809 gMC->Gspos("FITU",1,"FTUB",0.,0.,0.,0,"ONLY");
810
811
812 // rotation matrix
813 AliMatrix(idrotm[99], 180., 90., 90., 90., 90., 0.);
814 // central module positioning (FAIA)
815 Float_t tubepos[3], tdis=0.6;
816 tubepos[0]= 0.;
817 tubepos[1]= cardpos[1];
818 tubepos[2]= -53.+tdis;
819 // tub1pos = 5.;
820 Int_t itub;
821 for (itub=0; itub<15; ++itub) {
822 tubepos[2]= tubepos[2]+stepforcardA;
823 gMC->Gspos("FTUB",itub,"FAIA",tubepos[0],tubepos[1],tubepos[2],idrotm[99],
824 "ONLY");
825 }
826
827
828 // intermediate module positioning (FAIB)
829 tubepos[2]= -70.5+tdis;
830 for (itub=0; itub<19; ++itub) {
831 tubepos[2]= tubepos[2]+stepforcardB;
832 gMC->Gspos("FTUB",itub,"FAIB",tubepos[0],tubepos[1],tubepos[2],idrotm[99],
833 "ONLY");
834 }
835
836 // outer module positioning (FAIC)
837 tubepos[2]= -88.75+tdis;
838 for (itub=0; itub<20; ++itub) {
839 tubepos[2]= tubepos[2]+stepforcardC;
840 gMC->Gspos("FTUB",itub,"FAIC",tubepos[0],tubepos[1],tubepos[2],idrotm[99],
841 "ONLY");
842 }
843
fe4da5cc 844}
845
846//_____________________________________________________________________________
68861244 847void AliTOFv2::DrawModule() const
fe4da5cc 848{
849 //
517b7f8f 850 // Draw a shaded view of the Time Of Flight version 2
fe4da5cc 851 //
fe4da5cc 852 // Set everything unseen
cfce8870 853 gMC->Gsatt("*", "seen", -1);
fe4da5cc 854 //
855 // Set ALIC mother transparent
cfce8870 856 gMC->Gsatt("ALIC","SEEN",0);
fe4da5cc 857 //
858 // Set the volumes visible
cfce8870 859 gMC->Gsatt("ALIC","SEEN",0);
2cef3cb2 860
861 gMC->Gsatt("FTOA","SEEN",1);
862 gMC->Gsatt("FTOB","SEEN",1);
863 gMC->Gsatt("FTOC","SEEN",1);
864 gMC->Gsatt("FLTA","SEEN",1);
865 gMC->Gsatt("FLTB","SEEN",1);
866 gMC->Gsatt("FLTC","SEEN",1);
867 gMC->Gsatt("FPLA","SEEN",1);
868 gMC->Gsatt("FPLB","SEEN",1);
869 gMC->Gsatt("FPLC","SEEN",1);
870 gMC->Gsatt("FSTR","SEEN",1);
871 gMC->Gsatt("FPEA","SEEN",1);
872 gMC->Gsatt("FPEB","SEEN",1);
873 gMC->Gsatt("FPEC","SEEN",1);
874
875 gMC->Gsatt("FLZ1","SEEN",0);
876 gMC->Gsatt("FLZ2","SEEN",0);
877 gMC->Gsatt("FLZ3","SEEN",0);
878 gMC->Gsatt("FLX1","SEEN",0);
879 gMC->Gsatt("FLX2","SEEN",0);
880 gMC->Gsatt("FLX3","SEEN",0);
881 gMC->Gsatt("FPAD","SEEN",0);
882
cfce8870 883 gMC->Gdopt("hide", "on");
884 gMC->Gdopt("shad", "on");
885 gMC->Gsatt("*", "fill", 7);
886 gMC->SetClipBox(".");
887 gMC->SetClipBox("*", 0, 1000, -1000, 1000, -1000, 1000);
888 gMC->DefaultRange();
889 gMC->Gdraw("alic", 40, 30, 0, 12, 9.5, .02, .02);
890 gMC->Gdhead(1111, "Time Of Flight");
891 gMC->Gdman(18, 4, "MAN");
892 gMC->Gdopt("hide","off");
fe4da5cc 893}
517b7f8f 894//_____________________________________________________________________________
895void AliTOFv2::DrawDetectorModules()
896{
897//
898// Draw a shaded view of the TOF detector version 2
899//
900
901 AliMC* pMC = AliMC::GetMC();
902
903//Set ALIC mother transparent
904 pMC->Gsatt("ALIC","SEEN",0);
905
906//
907//Set volumes visible
908//
909//=====> Level 1
910 // Level 1 for TOF volumes
911 gMC->Gsatt("B077","seen",0);
912
913
914//==========> Level 2
915 // Level 2
916 gMC->Gsatt("B076","seen",-1); // all B076 sub-levels skipped -
917 gMC->Gsatt("B071","seen",0);
918 gMC->Gsatt("B074","seen",0);
919 gMC->Gsatt("B075","seen",0);
920 gMC->Gsatt("B080","seen",0); // B080 does not has sub-level
921
922
923 // Level 2 of B071
924 gMC->Gsatt("B063","seen",-1); // all B063 sub-levels skipped -
925 gMC->Gsatt("B065","seen",-1); // all B065 sub-levels skipped -
926 gMC->Gsatt("B067","seen",-1); // all B067 sub-levels skipped -
927 gMC->Gsatt("B069","seen",-1); // all B069 sub-levels skipped -
928 gMC->Gsatt("B056","seen",0); // B056 does not has sub-levels -
929 gMC->Gsatt("B059","seen",-1); // all B059 sub-levels skipped -
930 gMC->Gsatt("B072","seen",-1); // all B072 sub-levels skipped -
931 gMC->Gsatt("BTR1","seen",0); // BTR1 do not have sub-levels -
932 gMC->Gsatt("BTO1","seen",0);
933
934
935 // Level 2 of B074
936 gMC->Gsatt("BTR2","seen",0); // BTR2 does not has sub-levels -
937 gMC->Gsatt("BTO2","seen",0);
938
939 // Level 2 of B075
940 gMC->Gsatt("BTR3","seen",0); // BTR3 do not have sub-levels -
941 gMC->Gsatt("BTO3","seen",0);
942
943// ==================> Level 3
944 // Level 3 of B071 / Level 2 of BTO1
945 gMC->Gsatt("FTOC","seen",-2);
946 gMC->Gsatt("FTOB","seen",-2);
947 gMC->Gsatt("FTOA","seen",-2);
948
949 // Level 3 of B074 / Level 2 of BTO2
950 // -> cfr previous settings
951
952 // Level 3 of B075 / Level 2 of BTO3
953 // -> cfr previous settings
954
955 gMC->Gdopt("hide","on");
956 gMC->Gdopt("shad","on");
957 gMC->Gsatt("*", "fill", 5);
958 gMC->SetClipBox(".");
959 gMC->SetClipBox("*", 0, 1000, 0, 1000, 0, 1000);
960 gMC->DefaultRange();
961 gMC->Gdraw("alic", 45, 40, 0, 10, 10, .015, .015);
962 gMC->Gdhead(1111,"TOF detector V1");
963 gMC->Gdman(18, 4, "MAN");
964 gMC->Gdopt("hide","off");
965}
966
967//_____________________________________________________________________________
968void AliTOFv2::DrawDetectorStrips()
969{
970//
971// Draw a shaded view of the TOF strips for version 2
972//
973
974 AliMC* pMC = AliMC::GetMC();
975
976//Set ALIC mother transparent
977 pMC->Gsatt("ALIC","SEEN",0);
978
979//
980//Set volumes visible
981//=====> Level 1
982 // Level 1 for TOF volumes
983 gMC->Gsatt("B077","seen",0);
984
985//==========> Level 2
986 // Level 2
987 gMC->Gsatt("B076","seen",-1); // all B076 sub-levels skipped -
988 gMC->Gsatt("B071","seen",0);
989 gMC->Gsatt("B074","seen",0);
990 gMC->Gsatt("B075","seen",0);
991 gMC->Gsatt("B080","seen",0); // B080 does not has sub-level
992
993 // Level 2 of B071
994 gMC->Gsatt("B063","seen",-1); // all B063 sub-levels skipped -
995 gMC->Gsatt("B065","seen",-1); // all B065 sub-levels skipped -
996 gMC->Gsatt("B067","seen",-1); // all B067 sub-levels skipped -
997 gMC->Gsatt("B069","seen",-1); // all B069 sub-levels skipped -
998 gMC->Gsatt("B056","seen",0); // B056 does not has sub-levels -
999 gMC->Gsatt("B059","seen",-1); // all B059 sub-levels skipped -
1000 gMC->Gsatt("B072","seen",-1); // all B072 sub-levels skipped -
1001 gMC->Gsatt("BTR1","seen",0); // BTR1 do not have sub-levels -
1002 gMC->Gsatt("BTO1","seen",0);
1003
1004// ==================> Level 3
1005 // Level 3 of B071 / Level 2 of BTO1
1006 gMC->Gsatt("FTOC","seen",0);
1007 gMC->Gsatt("FTOB","seen",0);
1008 gMC->Gsatt("FTOA","seen",0);
1009
1010 // Level 3 of B074 / Level 2 of BTO2
1011 // -> cfr previous settings
1012
1013 // Level 3 of B075 / Level 2 of BTO3
1014 // -> cfr previous settings
1015
1016
1017// ==========================> Level 4
1018 // Level 4 of B071 / Level 3 of BTO1 / Level 2 of FTOC
1019 gMC->Gsatt("FLTC","seen",0);
1020 // Level 4 of B071 / Level 3 of BTO1 / Level 2 of FTOB
1021 gMC->Gsatt("FLTB","seen",0);
1022 // Level 4 of B071 / Level 3 of BTO1 / Level 2 of FTOA
1023 gMC->Gsatt("FLTA","seen",0);
1024
1025 // Level 4 of B074 / Level 3 of BTO2 / Level 2 of FTOC
1026 // -> cfr previous settings
1027 // Level 4 of B074 / Level 3 of BTO2 / Level 2 of FTOB
1028 // -> cfr previous settings
1029
1030 // Level 4 of B075 / Level 3 of BTO3 / Level 2 of FTOC
1031 // -> cfr previous settings
1032
1033//======================================> Level 5
1034 // Level 5 of B071 / Level 4 of BTO1 / Level 3 of FTOC / Level 2 of FLTC
1035 gMC->Gsatt("FALC","seen",0); // no children for FALC
1036 gMC->Gsatt("FSTR","seen",-2);
1037 gMC->Gsatt("FPEC","seen",0); // no children for FPEC
1038 gMC->Gsatt("FECC","seen",0); // no children for FECC
1039 gMC->Gsatt("FWAC","seen",0); // no children for FWAC
1040 gMC->Gsatt("FAIC","seen",0); // no children for FAIC
1041
1042 // Level 5 of B071 / Level 4 of BTO1 / Level 3 of FTOB / Level 2 of FLTB
1043 gMC->Gsatt("FALB","seen",0); // no children for FALB
1044//--> gMC->Gsatt("FSTR","seen",-2);
1045
1046
1047 // -> cfr previous settings
1048 gMC->Gsatt("FPEB","seen",0); // no children for FPEB
1049 gMC->Gsatt("FECB","seen",0); // no children for FECB
1050 gMC->Gsatt("FWAB","seen",0); // no children for FWAB
1051 gMC->Gsatt("FAIB","seen",0); // no children for FAIB
1052
1053 // Level 5 of B071 / Level 4 of BTO1 / Level 3 of FTOA / Level 2 of FLTA
1054 gMC->Gsatt("FALA","seen",0); // no children for FALB
1055//--> gMC->Gsatt("FSTR","seen",-2);
1056 // -> cfr previous settings
1057 gMC->Gsatt("FPEA","seen",0); // no children for FPEA
1058 gMC->Gsatt("FECA","seen",0); // no children for FECA
1059 gMC->Gsatt("FWAA","seen",0); // no children for FWAA
1060 gMC->Gsatt("FAIA","seen",0); // no children for FAIA
1061
1062 // Level 2 of B074
1063 gMC->Gsatt("BTR2","seen",0); // BTR2 does not has sub-levels -
1064 gMC->Gsatt("BTO2","seen",0);
1065
1066 // Level 2 of B075
1067 gMC->Gsatt("BTR3","seen",0); // BTR3 do not have sub-levels -
1068 gMC->Gsatt("BTO3","seen",0);
1069
1070// for others Level 5, cfr. previous settings
1071
1072 gMC->Gdopt("hide","on");
1073 gMC->Gdopt("shad","on");
1074 gMC->Gsatt("*", "fill", 5);
1075 gMC->SetClipBox(".");
1076 gMC->SetClipBox("*", 0, 1000, 0, 1000, 0, 1000);
1077 gMC->DefaultRange();
1078 gMC->Gdraw("alic", 45, 40, 0, 10, 10, .015, .015);
1079 gMC->Gdhead(1111,"TOF Strips V1");
1080 gMC->Gdman(18, 4, "MAN");
1081 gMC->Gdopt("hide","off");
1082}
fe4da5cc 1083
1084//_____________________________________________________________________________
1085void AliTOFv2::CreateMaterials()
1086{
1087 //
1088 // Define materials for the Time Of Flight
1089 //
1090 AliTOF::CreateMaterials();
1091}
1092
1093//_____________________________________________________________________________
1094void AliTOFv2::Init()
1095{
1096 //
1097 // Initialise the detector after the geometry has been defined
1098 //
68861244 1099 if(fDebug) {
9e1a0ddb 1100 printf("%s: **************************************"
68861244 1101 " TOF "
1102 "**************************************\n",ClassName());
9e1a0ddb 1103 printf("\n%s: Version 2 of TOF initialing, "
68861244 1104 "TOF with holes for PHOS and RICH \n",ClassName());
1105 }
ab76897d 1106
fe4da5cc 1107 AliTOF::Init();
ab76897d 1108
2cef3cb2 1109 fIdFTOA = gMC->VolId("FTOA");
1110 fIdFTOB = gMC->VolId("FTOB");
1111 fIdFTOC = gMC->VolId("FTOC");
1112 fIdFLTA = gMC->VolId("FLTA");
1113 fIdFLTB = gMC->VolId("FLTB");
1114 fIdFLTC = gMC->VolId("FLTC");
1115
9e1a0ddb 1116 if(fDebug) {
1117 printf("%s: **************************************"
68861244 1118 " TOF "
1119 "**************************************\n",ClassName());
9e1a0ddb 1120 }
fe4da5cc 1121}
1122
1123//_____________________________________________________________________________
1124void AliTOFv2::StepManager()
1125{
1126 //
1127 // Procedure called at each step in the Time Of Flight
1128 //
3fe3a833 1129 TLorentzVector mom, pos;
2cef3cb2 1130 Float_t xm[3],pm[3],xpad[3],ppad[3];
1131 Float_t hits[13],phi,phid,z;
1132 Int_t vol[5];
b94fa26c 1133 Int_t sector, plate, padx, padz, strip;
1134 Int_t copy, padzid, padxid, stripid, i;
2cef3cb2 1135 Int_t *idtmed = fIdtmed->GetArray()-499;
b94fa26c 1136 Float_t incidenceAngle;
826b71ec 1137
1138 if(gMC->GetMedium()==idtmed[513] &&
0a6d8768 1139 gMC->IsTrackEntering() && gMC->TrackCharge()
826b71ec 1140 && gMC->CurrentVolID(copy)==fIdSens)
2cef3cb2 1141 {
1142 // getting information about hit volumes
826b71ec 1143
b94fa26c 1144 padzid=gMC->CurrentVolOffID(2,copy);
1145 padz=copy;
826b71ec 1146
b94fa26c 1147 padxid=gMC->CurrentVolOffID(1,copy);
1148 padx=copy;
826b71ec 1149
b94fa26c 1150 stripid=gMC->CurrentVolOffID(4,copy);
826b71ec 1151 strip=copy;
1152
0a6d8768 1153 gMC->TrackPosition(pos);
1154 gMC->TrackMomentum(mom);
826b71ec 1155
2cef3cb2 1156// Double_t NormPos=1./pos.Rho();
b94fa26c 1157 Double_t normMom=1./mom.Rho();
2cef3cb2 1158
1159// getting the cohordinates in pad ref system
1160 xm[0] = (Float_t)pos.X();
1161 xm[1] = (Float_t)pos.Y();
1162 xm[2] = (Float_t)pos.Z();
1163
b94fa26c 1164 pm[0] = (Float_t)mom.X()*normMom;
1165 pm[1] = (Float_t)mom.Y()*normMom;
1166 pm[2] = (Float_t)mom.Z()*normMom;
2cef3cb2 1167
1168 gMC->Gmtod(xm,xpad,1);
1169 gMC->Gmtod(pm,ppad,2);
5919c40c 1170
1171 if (ppad[1] > 1.) ppad[1]=1;
1172 if (ppad[1] < -1.) ppad[1]=-1;
b94fa26c 1173 incidenceAngle = TMath::ACos(ppad[1])*kRaddeg;
826b71ec 1174
1175 z = pos[2];
2cef3cb2 1176
1177 plate = 0;
1178 if (TMath::Abs(z) <= fZlenA*0.5) plate = 3;
1179 if (z < (fZlenA*0.5+fZlenB) &&
1180 z > fZlenA*0.5) plate = 4;
1181 if (z >-(fZlenA*0.5+fZlenB) &&
1182 z < -fZlenA*0.5) plate = 2;
1183 if (z > (fZlenA*0.5+fZlenB)) plate = 5;
1184 if (z <-(fZlenA*0.5+fZlenB)) plate = 1;
1185
1186 phi = pos.Phi();
1187 phid = phi*kRaddeg+180.;
826b71ec 1188 sector = Int_t (phid/20.);
1189 sector++;
1190
0a6d8768 1191 for(i=0;i<3;++i) {
2cef3cb2 1192 hits[i] = pos[i];
1193 hits[i+3] = pm[i];
0a6d8768 1194 }
2cef3cb2 1195
1196 hits[6] = mom.Rho();
1197 hits[7] = pos[3];
1198 hits[8] = xpad[0];
1199 hits[9] = xpad[1];
1200 hits[10]= xpad[2];
b94fa26c 1201 hits[11]= incidenceAngle;
2cef3cb2 1202 hits[12]= gMC->Edep();
1203
1204 vol[0]= sector;
1205 vol[1]= plate;
1206 vol[2]= strip;
b94fa26c 1207 vol[3]= padx;
1208 vol[4]= padz;
2cef3cb2 1209
1210 AddHit(gAlice->CurrentTrack(),vol, hits);
fe4da5cc 1211 }
1212}