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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 /* $Id$ */
17
18 /////////////////////////////////////////////////////////////////////
19 //                                                                 //
20 // START ( T-zero) detector  version 1                             //
21 //
22 //Begin Html       
23 /*
24 <img src="gif/AliSTARTv1Class.gif">
25 */
26 //End Html
27 //                                                                  //
28 //                                                                  //
29 //////////////////////////////////////////////////////////////////////
30
31 #include <Riostream.h>
32 #include <stdlib.h>
33
34 #include <TGeometry.h>
35 #include <TLorentzVector.h>
36 #include <TMath.h>
37 #include <TNode.h>
38 #include <TTUBE.h>
39 #include <TVirtualMC.h>
40
41 #include "AliLog.h"
42 #include "AliMagF.h"
43 #include "AliRun.h"
44
45 #include "AliSTARThit.h"
46 #include "AliSTARTv1.h"
47 #include "AliSTARTParameters.h"
48
49 #include "AliMC.h"
50 #include "AliCDBLocal.h"
51 #include "AliCDBStorage.h"
52 #include "AliCDBManager.h"
53 #include "AliCDBEntry.h"
54
55 ClassImp(AliSTARTv1)
56
57 //--------------------------------------------------------------------
58 AliSTARTv1::AliSTARTv1(const char *name, const char *title):
59  AliSTART(name,title)
60 {
61   //
62   // Standart constructor for START Detector version 0
63   //
64   fIdSens1=0;
65   fIshunt = 2;
66 }
67 //_____________________________________________________________________________
68
69 AliSTARTv1::~AliSTARTv1() 
70 {
71   // desctructor  
72 }
73
74 //-------------------------------------------------------------------------
75 void AliSTARTv1::CreateGeometry()
76 {
77   //
78   // Create the geometry of START Detector version 0
79   //
80   // begin Html
81   /*
82    <img src="gif/AliSTARTv0.gif">
83   */
84   //
85
86
87    Int_t *idtmed = fIdtmed->GetArray();
88   
89   AliSTARTParameters* param = AliSTARTParameters::Instance();
90   param->Init();
91   Float_t zdetC = param->GetZposition(0);
92   Float_t zdetA = param->GetZposition(1);
93   
94   Int_t is;
95   Int_t idrotm[999];
96   Float_t x,y,z;
97
98   Float_t pstartR[18]={0., 360., 5., 
99                        -76.5+0.00+69.7, 4.25, 10.,
100                        -76.5+6.05+69.7, 4.5, 10., 
101                        -76.5+8.05+69.7, 4.5, 10.,
102                        -76.5+8.05+69.7, 5.1, 10.,
103                        -62.9+0.00+69.7, 5.1, 10.};
104   
105   Float_t pstart[3]={4.29, 12.5,6.95};
106   Float_t pinstart[3]={0.,1.6,6.5};
107   Float_t ppmt[3]={0.,1.5,3.5};
108   Float_t ptop[3]={0.,1.,1.0};
109   Float_t preg[3]={0., 1.0, 0.005}; //photcathode dobavil bogdanov
110   Float_t ptopout[3]={1.,1.01,1.5}; 
111   Float_t pbot[3]={0.6,1.2,0.1};
112   Float_t pglass[3]={1.2,1.3,2.};
113   Float_t pcer[3]={0.9,1.1,1.35};
114   Float_t psteel[3]={0.9,1.1,0.15};
115   Float_t psupport1[3] = {4.51,4.6,4.0};//C kozhuh vnutri
116   Float_t psupport2[3] = {9.4,9.5,4.0};// snaruzhi  C
117   Float_t psupport3[3] = {4.51,9.5,0.05};//kryshki  C
118   Float_t psupport5[3] = {1.44,1.5,6.5}; // stakanchik dlai feu  C
119   Float_t psupport6[3] = {0,1.4,0.04}; //kryshechka stakanchika  Al
120   Float_t psupport7[3] = {1.5,1.6,0.4}; //kolechko snaruzhu stakanchika Al
121    
122   // Mother Volume katushka dlia krepezha vokrug truby k Absorbru
123     AliMatrix(idrotm[901], 90., 0., 90., 90., 180., 0.);
124   Float_t ppcon[70]; 
125     ppcon[0]  =   0;
126     ppcon[1]  = 360;
127     ppcon[2]  =  13;
128 //  1: 
129     ppcon[3]  =  14.1/2;
130     ppcon[4]  =   4.4;
131     ppcon[5]  =   4.5;
132 //  2
133     ppcon[6]  = ppcon[3]+1.;
134     ppcon[7]  =   4.4;
135     ppcon[8]  =   4.5;
136 //  3
137     ppcon[9]  = ppcon[6];
138     ppcon[10] =   4.4;
139     ppcon[11] =   5.1;
140
141 //  4
142
143     ppcon[12]  = ppcon[9]+0.1;
144     ppcon[13] =   4.4;
145     ppcon[14] =   5.1;
146 //  5
147
148     ppcon[15]  = ppcon[12];
149     ppcon[16] =   4.9;
150     ppcon[17] =   5.1;
151     
152 //  6
153 //    ppcon[18]  = ppcon[15]+7.05;
154     ppcon[18]  = ppcon[15]+6.9;
155     ppcon[19] =   4.9;
156     ppcon[20] =   5.1;
157     
158 //  7
159     ppcon[21]  = ppcon[18];
160     ppcon[22] =   4.9;
161     ppcon[23] =   5.1;
162
163 /// 8
164     ppcon[24]  = ppcon[21]+0.01;
165     ppcon[25] =   3.15;
166     ppcon[26] =   3.25;
167     
168 /// 9
169     ppcon[27]  = ppcon[24];
170     ppcon[28] =   3.15;
171     ppcon[29] =   3.25;
172     
173 //  10
174     ppcon[30]  = ppcon[27]+4.5;
175     ppcon[31] =   3.15;
176     ppcon[32] =   3.25;
177
178 //  11
179     ppcon[33] = ppcon[30];
180     ppcon[34] =   3.15;
181     ppcon[35] =   3.25;
182
183 //  12
184     ppcon[36]  = ppcon[33];
185     ppcon[37] =   3.15;
186     ppcon[38] =   7.6;
187
188 //  13
189     ppcon[39]  = ppcon[33]+0.4;
190     ppcon[40] =   3.15;
191     ppcon[41] =   7.6;
192
193 //  14
194 //    ppcon[39]  = ppcon[36];
195 //    ppcon[40] =   3.15;
196 //    ppcon[41] =   7.6;
197
198
199
200     gMC->Gsvolu("0SUP", "PCON", idtmed[kAir], ppcon,42);
201     z=-zdetC;
202     gMC->Gspos("0SUP",1,"ALIC",0.,0.,z,idrotm[901],"ONLY");
203
204  //-------------------------------------------------------------------
205  //  START volume 
206  //-------------------------------------------------------------------
207   
208     
209     gMC->Gsvolu("0STR","PCON",idtmed[kAir],pstartR,18);
210     gMC->Gsvolu("0STL","TUBE",idtmed[kAir],pstart,3);
211     gMC->Gspos("0STR",1,"ALIC",0.,0.,-zdetC-pstart[2],idrotm[901],"ONLY");
212     gMC->Gspos("0STL",1,"ALIC",0.,0.,zdetA+pstart[2],0,"ONLY");
213
214 //START interior
215    gMC->Gsvolu("0INS","TUBE",idtmed[kAir],pinstart,3);
216    gMC->Gsvolu("0PMT","TUBE",idtmed[kAir],ppmt,3);     
217           
218     gMC->Gsvolu("0SU1","TUBE",idtmed[kC],psupport1,3);//C kozhuh vnutri
219     gMC->Gsvolu("0SU2","TUBE",idtmed[kC],psupport2,3);// snaruzhi  C
220     gMC->Gsvolu("0SU3","TUBE",idtmed[kC],psupport3,3);//kryshka perednaiai  C
221     gMC->Gsvolu("0SU4","TUBE",idtmed[kC],psupport3,3);//kryshka zadnaiai  C
222     //    gMC->Gsvolu("0SU5","TUBE",idtmed[kAir],psupport4,3);// dyrki dlia feu v zadnej kryshke Air
223     gMC->Gsvolu("0SU6","TUBE",idtmed[kC],psupport5,3);// stakanchik dlai feu  C
224     gMC->Gsvolu("0SU7","TUBE",idtmed[kAl],psupport6,3);//kryshechka stakanchika  Al
225     gMC->Gsvolu("0SU8","TUBE",idtmed[kAl],psupport7,3);//kolechko snaruzhu stakanchika Al
226              
227 // first ring: 12 units of Scintillator+PMT+divider
228   Float_t  theta  = (180 / TMath::Pi()) * TMath::ATan(6.5 / zdetC);
229   AliInfo(Form("theta %f", theta));
230   Float_t angle  = 2 * TMath::Pi() / 12;
231   Float_t phi[3];
232     
233    for (is=0; is<12; is++)
234       {  
235
236         x = 6.5 * TMath::Sin(is * angle);
237         y = 6.5 * TMath::Cos(is * angle);
238         
239         phi[0] = -30 * is;
240         phi[1] = 90 - is * 30;
241         phi[2] = 90 - is * 30;
242         for (Int_t j = 0; j < 3; j++)
243           if (phi[j] < 0)  phi[j] += 360;
244         
245         AliMatrix (idrotm[902 + is], 90.,         phi[0],
246                    90. + theta, phi[1],
247                    theta,       phi[2]);  
248         z=-pstart[2]+pinstart[2]+0.2;
249         gMC->Gspos ("0INS", is + 1, "0STR", x, y, z, idrotm[902 + is], "ONLY");
250         gMC->Gspos ("0INS", is + 13, "0STL", x, y, z, 0, "ONLY");
251       } 
252    
253       
254    x=0;
255    y=0;
256    // z=-pinstart[2]+ppmt[2]+2.*psupport6[2]+0.1;
257     z=-pinstart[2]+ppmt[2]+psupport6[2]*2;
258    gMC->Gspos("0PMT",1,"0INS",x,y,z,0,"ONLY");
259    // PMT
260    
261    // Entry window (glass)
262    gMC->Gsvolu("0TOP","TUBE",idtmed[kOpGlass],ptop,3); //glass
263    z=-ppmt[2]+ptop[2];
264    gMC->Gspos("0TOP",1,"0PMT",0,0,z,0,"ONLY");
265    //metal volume to simulate reclection  
266    gMC->Gsvolu("0TOO","TUBE",idtmed[kOpAir],ptopout,3); //glass
267    //   gMC->Gsvolu("0TOP","TUBE",idtmed[12],ptop,3); //lucite
268    gMC->Gspos("0TOO",1,"0PMT",0,0,z,0,"ONLY");
269
270    //Fotokatod
271    gMC->Gsvolu ("0REG", "TUBE", idtmed[kOpGlassCathode], preg, 3); 
272    z = -ppmt[2] + 2 * ptop[2] + preg[2]; 
273    gMC->Gspos ("0REG", 1, "0PMT", 0, 0, z, 0, "ONLY"); 
274   // Bottom glass
275    gMC->Gsvolu("0BOT","TUBE",idtmed[kGlass],pbot,3);
276    z=ppmt[2]-pbot[2];
277    AliDebugClass(1,Form("Z bottom %f\n",z));
278    gMC->Gspos("0BOT",1,"0PMT",0,0,z,0,"ONLY");
279    // Side cylinder glass
280    gMC->Gsvolu("0OUT","TUBE",idtmed[kGlass],pglass,3);
281    z=ppmt[2]-pglass[2];
282    gMC->Gspos("0OUT",1,"0PMT",0,0,z,0,"ONLY");
283    //PMT electrodes support structure
284    gMC->Gsvolu("0CER","TUBE",idtmed[kCer],pcer,3);
285    gMC->Gsvolu("0STE","TUBE",idtmed[kSteel],psteel,3);
286    z=-ppmt[2]+2*ptop[2]+0.3 + pcer[2];
287    gMC->Gspos("0CER",1,"0PMT",0,0,z,0,"ONLY");
288    z +=psteel[2]+pcer[2];
289    gMC->Gspos("0STE",1,"0PMT",0,0,z,0,"ONLY");
290     
291    //Support  left side
292    z=-pstart[2]+psupport1[2]+0.1;
293    gMC->Gspos("0SU1",1,"0STR",0,0,z,0,"ONLY"); //C kozhuh snaruzhi
294    gMC->Gspos("0SU2",1,"0STR",0,0,z,0,"ONLY"); //C kozhuh vnutri
295    z=-pstart[2]+psupport3[2]+0.1;
296    gMC->Gspos("0SU3",1,"0STR",0,0,z,0,"ONLY"); //peredniaia kryshka
297    z=-pstart[2]+2.*psupport1[2]-0.05;//+0.1;
298    gMC->Gspos("0SU4",1,"0STR",0,0,z,0,"MANY"); //zadnaiai kryshka
299    gMC->Gspos("0SU6",1,"0INS",0,0,0,0,"ONLY");//C stakanchik dlia feu 
300    z=-pinstart[2]+psupport6[2];
301    gMC->Gspos("0SU7",1,"0INS",0,0,z,0,"ONLY"); //Al kryshechka 
302    
303    z=pinstart[2]-psupport7[2];
304    gMC->Gspos("0SU8",1,"0INS",0,0,z,0,"ONLY"); //Al kolechko
305    
306    
307    Float_t par[3];
308    par[0]=4.4;
309    par[1]=4.5;
310    par[2]=0.5;
311    gMC->Gsvolu("0SC0","TUBE",idtmed[kC],par,3);
312    z=ppcon[3]+par[2];
313    gMC->Gspos("0SC0",1,"0SUP",0,0,z,0,"ONLY"); 
314    z += par[2];
315    par[0]=4.4;
316    par[1]=5.1;
317    par[2]=0.05;
318    gMC->Gsvolu("0SC1","TUBE",idtmed[kC],par,3);
319    z += par[2];
320    gMC->Gspos("0SC1",1,"0SUP",0,0,z,0,"ONLY"); 
321    z=z+par[2];
322    par[0]=4.9;
323    par[1]=5.0;
324    par[2]=6.9/2;
325     gMC->Gsvolu("0SC2","TUBE",idtmed[kC],par,3);
326     z += par[2];
327     gMC->Gspos("0SC2",1,"0SUP",0,0,z,0,"ONLY"); 
328     z += par[2];
329    
330      par[0]=3.15;
331     par[1]=4.9;
332     par[2]=0.1/2;
333     gMC->Gsvolu("0SA1","TUBE",idtmed[kAl],par,3);
334     
335     z += par[2];
336     gMC->Gspos("0SA1",1,"0SUP",0,0,z,0,"ONLY"); 
337     z=z+par[2];
338     par[0]=3.15;
339     par[1]=3.16;
340     par[2]=4.5/2;
341     gMC->Gsvolu("0SA2","TUBE",idtmed[kAl],par,3);
342     z += par[2];
343     gMC->Gspos("0SA2",1,"0SUP",0,0,z,0,"ONLY"); 
344     z=z+par[2];
345     par[0]=3.16; // eta chast' prikruchena k absorberu
346     par[1]=7.5;
347     par[2]=0.2;
348     gMC->Gsvolu("0SA3","TUBE",idtmed[kAl],par,3);
349     z += par[2];
350     gMC->Gspos("0SA3",1,"0SUP",0,0,z,0,"ONLY"); 
351     par[0]=3.16; // gvozdi eta chast' prikruchena k absorberu
352     par[1]=7.5;
353     par[2]=0.01;
354     gMC->Gsvolu("0SN2","TUBE",idtmed[kSteel],par,3);
355     gMC->Gspos("0SN2",1,"0SUP",0,0,z,0,"ONLY"); 
356          
357  
358 }    
359 //------------------------------------------------------------------------
360 void AliSTARTv1::CreateMaterials()
361 {
362    Int_t isxfld   = gAlice->Field()->Integ();
363    Float_t sxmgmx = gAlice->Field()->Max();
364    //   Float_t a,z,d,radl,absl,buf[1];
365    // Int_t nbuf;
366    Int_t *idtmed = fIdtmed->GetArray();
367
368 // AIR
369                                                                                 
370    Float_t aAir[4]={12.0107,14.0067,15.9994,39.948};
371    Float_t zAir[4]={6.,7.,8.,18.};
372    Float_t wAir[4]={0.000124,0.755267,0.231781,0.012827};
373    Float_t dAir = 1.20479E-3;
374                                                                                 
375 // Scintillator CH
376    Float_t ascin[2]={1.01,12.01};
377    Float_t zscin[2]={1,6};
378    Float_t wscin[2]={1,1};
379    Float_t denscin=1.03;
380 //Lucite C(CH3)CO2CH3
381    Float_t alucite[3]={1.01,12.01,15.999};
382    Float_t zlucite[3]={1,6,8};
383    Float_t wlucite[3]={8,5,2};
384    Float_t denlucite=1.16;
385  // PMT glass SiO2
386    Float_t aglass[2]={28.0855,15.9994};
387    Float_t zglass[2]={14.,8.};
388    Float_t wglass[2]={1.,2.};
389    Float_t dglass=2.65;
390 // Ceramic   97.2% Al2O3 , 2.8% SiO2
391    // Float_t wcer[2]={0.972,0.028};
392    Float_t aCeramic[2]  = { 26.981539,15.9994 };
393    Float_t zCeramic[2]  = { 13.,8. };
394    Float_t wCeramic[2]  = { 2.,3. };
395    Float_t denscer  = 3.6;
396
397 // Brass 80% Cu, 20% Zn
398    Float_t abrass[2] = {63.546,65.39};
399    Float_t zbrass[2] = {29,30};
400    Float_t wbrass[2] = {0.8,0.2};
401    Float_t denbrass=8.96;
402
403 //Ribber C6H12S
404    Float_t aribber[3] = {12.,1.,32.};
405    Float_t zribber[3] = {6.,1.,16.};
406    Float_t wribber[3] = {6.,12.,1.};
407    Float_t denribber=0.8;
408 // Support inside 
409    Float_t asupport[2] = {12.,1.};
410    Float_t zsupport[2] = {6.,1.};
411    Float_t wsupport[2] = {1.,1.};
412    Float_t densupport=0.1;
413     
414 //*** Definition Of avaible START materials ***
415    AliMaterial(0, "Steel$", 55.850,26.,7.87,1.76,999);
416    AliMaterial(1, "Vacuum$", 1.e-16,1.e-16,1.e-16,1.e16,999);
417    AliMixture(2, "Air$", aAir, zAir, dAir,4,wAir);
418    AliMaterial(10, "CarbonPlastic$", 12.01, 6.0, 2.26, 18.8,999); 
419    AliMaterial(11, "Aliminium$", 26.98, 13.0, 2.7, 8.9,999); 
420
421    AliMixture( 3, "Ceramic  $",aCeramic, zCeramic, denscer, -2, wCeramic);
422    AliMixture( 4, "PMT glass   $",aglass,zglass,dglass,-2,wglass);
423    /* 
424   char namate[21]="";
425   
426    gMC->Gfmate((*fIdmate)[3], namate, a, z, d, radl, absl, buf, nbuf);
427    acer[0]=a;  
428
429    zcer[0]=z;
430    gMC->Gfmate((*fIdmate)[4], namate, a, z, d, radl, absl, buf, nbuf);
431    acer[1]=a;
432    zcer[1]=z;
433    AliMixture( 11, "Ceramic    $", acer, zcer, denscer, 2, wcer);
434    */ 
435     AliMixture( 5, "Scintillator$",ascin,zscin,denscin,-2,wscin);
436    AliMixture( 6, "Brass    $", abrass, zbrass, denbrass, 2, wbrass);
437    AliMixture( 7, "Ribber $",aribber,zribber,denribber,-3,wribber);
438    AliMixture( 8, "Lucite$",alucite,zlucite,denlucite,-3,wlucite);
439    AliMixture( 9, "Penoplast$",asupport,zsupport,densupport,-2,wsupport);
440    AliMixture( 21, "PMT Optical glass   $",aglass,zglass,dglass,-2,wglass);
441    AliMixture( 24, "PMT Optical glass cathode $",aglass,zglass,dglass,-2,wglass);
442     AliMixture(22, "START Opt Air$", aAir, zAir, dAir,4,wAir);
443    AliMixture(23, "START Opt Air Next$", aAir, zAir, dAir,4,wAir);
444    
445    AliMedium(1, "START Air$", 2, 0, isxfld, sxmgmx, 10., .1, 1., .003, .003);
446    AliMedium(2, "Scintillator$", 5, 1, isxfld, sxmgmx, 10., .01, 1., .003, .003);
447    AliMedium(3, "Vacuum$", 1, 0, isxfld, sxmgmx, 10., .01, .1, .003, .003);
448    AliMedium(4, "Ceramic$", 3, 0, isxfld, sxmgmx, 10., .01, .1, .003, .003);
449    AliMedium(6, "Glass$", 4, 1, isxfld, sxmgmx, 10., .01, .1, .003, .003);
450    AliMedium(8, "Steel$", 0, 0, isxfld, sxmgmx, 1., .001, 1., .001, .001);
451    AliMedium(9, "Ribber  $", 7, 0, isxfld, sxmgmx, 10., .01, .1, .003, .003);
452    AliMedium(11, "Brass  $", 6, 0, isxfld, sxmgmx, 10., .01, .1, .003, .003);
453    AliMedium(12, "Lucite$", 8, 1, isxfld, sxmgmx, 10., .01, 1., .003, .003);  
454    AliMedium(13, "CarbonPlastic$", 10, 0, isxfld, sxmgmx, 10., .01, 1., .003, .003);  
455    AliMedium(14, "PenoPlast$", 9, 0, isxfld, sxmgmx, 10., .01, 1., .003, .003);  
456    AliMedium(15, "Aluminium$", 11, 0, isxfld, sxmgmx, 10., .01, 1., .003, .003);  
457    AliMedium(16, "OpticalGlass$", 21, 1, isxfld, sxmgmx, 10., .01, .1, .003, .003);
458    AliMedium(17, "START OpAir$", 22, 0, isxfld, sxmgmx, 10., .1, 1., .003, .003);
459    AliMedium(18, "START OpAirNext$", 23, 0, isxfld, sxmgmx, 10., .1, 1., .003, .003);
460     AliMedium(19, "OpticalGlassCathode$", 24, 1, isxfld, sxmgmx, 10., .01, .1, .003, .003);
461
462
463 // Definition Cherenkov parameters
464    int i;
465    const Int_t kNbins=31;
466    
467    Float_t rindexSiO2[kNbins],  efficAll[kNbins], rindexAir[kNbins], absorAir[kNbins],rindexCathodeNext[kNbins], absorbCathodeNext[kNbins];
468             
469    // quartz 20mm
470    Float_t aAbsSiO2[kNbins]={29.0, 28.6, 28.3, 27.7, 27.3, 26.7, 26.4, 
471                              25.9, 25.3, 24.9, 24.5, 23.7, 
472                              23.2, 22.8, 22.4, 21.8, 21.3,
473                              22.8, 22.1, 21.7, 21.2, 20.5, 
474                              19.9, 19.3, 18.7, 18.0, 17.1, 
475                              16.3, 15.3, 14.3, 14.3   };
476           
477    Float_t aPckov[kNbins]  ={3.87, 3.94, 4.02, 4.11, 4.19, 4.29, 4.38,
478                              4.48, 4.58, 4.69, 4.81, 4.93, 
479                              5.05, 5.19, 5.33, 5.48, 5.63,
480                              5.8,  5.97, 6.16, 6.36, 6.57, 
481                              6.8,  7.04, 7.3,  7.58, 7.89, 
482                              8.22, 8.57, 8.97, 9.39 };  
483    /*     
484    Float_t effCathode[kNbins]={0.11, 0.13, 0.15, 0.16, 0.18, 0.19, 0.20,
485                               0.21, 0.22, 0.23, 0.24, 0.26, 
486                               0.27, 0.29, 0.30, 0.29, 0.29, 
487                               0.28, 0.28, 0.27, 0.26, 0.25, 
488                               0.25, 0.23, 0.20, 0.19, 0.17,
489                               0.17, 0.17, 0.2, 0.23};
490    */     
491    //  Float_t aAbsSiO2[kNbins]; //quartz 30mm
492   for(i=0;i<kNbins;i++)
493     {
494       aPckov[i]=aPckov[i]*1e-9;//Photons energy bins 4 eV - 8.5 eV step 0.1 eV   
495       rindexAir[i]=0;
496       rindexSiO2[i]=1.458; //refractive index for qwarts
497       rindexCathodeNext[i]=0;
498       efficAll[i]=1.;
499
500       //      aAbsSiO2[i]=28.5; //quartz 30mm
501       absorAir[i]=0.3;      
502       absorbCathodeNext[i]=0;
503
504     }
505   
506   
507    gMC->SetCerenkov (idtmed[kOpGlass], kNbins, aPckov, aAbsSiO2, efficAll, rindexSiO2 );
508    // gMC->SetCerenkov (idtmed[kOpGlassCathode], kNbins, aPckov, aAbsSiO2, effCathode, rindexSiO2 );
509    gMC->SetCerenkov (idtmed[kOpGlassCathode], kNbins, aPckov, aAbsSiO2,efficAll , rindexSiO2 );
510   gMC->SetCerenkov (idtmed[kOpAir], kNbins, aPckov,absorAir , efficAll,rindexAir );
511    gMC->SetCerenkov (idtmed[kOpAirNext], kNbins, aPckov,absorbCathodeNext , efficAll, rindexCathodeNext);
512    
513    AliDebugClass(1,": ++++++++++++++Medium set++++++++++");
514    
515    
516 }
517 //---------------------------------------------------------------------
518 void AliSTARTv1::DrawDetector()
519 {
520 //
521 // Draw a shaded view of the Forward multiplicity detector version 0
522 //
523   
524   //Set ALIC mother transparent
525   gMC->Gsatt("ALIC","SEEN",0);
526   //
527   //Set volumes visible
528   //  gMC->Gsatt("0STR","SEEN",0);
529   //  gMC->Gsatt("0INS","SEEN",0);
530   // gMC->Gsatt("0PMT","SEEN",1);
531   // gMC->Gsatt("0DIV","SEEN",1);
532   //
533   gMC->Gdopt("hide","off");
534   gMC->Gdopt("shad","on");
535   gMC->SetClipBox(".");
536   gMC->SetClipBox("*",0,1000,-1000,1000,-1000,1000);
537   gMC->DefaultRange();
538   gMC->Gdraw("alic",90,0,0,-35,9.5,.6,0.6);
539   //gMC->Gdraw("alic",0,0,0,10,9.5,.8,0.8); //other side view
540   gMC->Gdhead(1111,"T-Zero detector");
541   gMC->Gdopt("hide","off");
542 }
543
544 //-------------------------------------------------------------------
545 void AliSTARTv1::Init()
546 {
547 // Initialises version 0 of the Forward Multiplicity Detector
548 //
549 //Int_t *idtmed  = gAlice->Idtmed();
550   AliSTART::Init();
551   fIdSens1=gMC->VolId("0REG");
552
553    AliDebug(1,Form("%s: *** START version 1 initialized ***\n",ClassName()));
554
555 }
556
557 //-------------------------------------------------------------------
558
559 void AliSTARTv1::StepManager()
560 {
561   //
562   // Called for every step in the START Detector
563   //
564   Int_t id,copy,copy1;
565   static Float_t hits[6];
566   static Int_t vol[2];
567   TLorentzVector pos;
568   
569   //   TClonesArray &lhits = *fHits;
570   
571   if(!gMC->IsTrackAlive()) return; // particle has disappeared
572   
573 // If particles is photon then ...
574   
575  if (gMC->TrackPid() == 50000050)
576   {
577       id=gMC->CurrentVolID(copy);
578       
579       
580       // Check the sensetive volume
581       if(id==fIdSens1 ) { 
582         if(gMC->IsTrackEntering()) {
583           gMC->CurrentVolOffID(2,copy);
584           vol[1]=copy;
585           gMC->CurrentVolOffID(3,copy1);
586           vol[0]=copy1;
587           gMC->TrackPosition(pos);
588           hits[0] = pos[0];
589           hits[1] = pos[1];
590           hits[2] = pos[2];
591           if(pos[2]<0) vol[0]=2;
592           if(pos[2]>=0) vol[0]=1; 
593           
594           Float_t etot=gMC->Etot();
595           hits[3]=etot;
596           Int_t iPart= gMC->TrackPid();
597           Int_t partID=gMC->IdFromPDG(iPart);
598           hits[4]=partID;
599           Float_t ttime=gMC->TrackTime();
600           hits[5]=ttime*1e12;
601           AddHit(fIshunt,vol,hits);
602           //  cout<< gAlice->GetMCApp()->GetCurrentTrackNumber()<<" hit added "<<endl;
603         }
604         /*              
605                 printf("track(%i) alive(%i) disap(%i) enter(%i) exit(%i) inside(%i) out(%i) stop(%i) new(%i) \n",
606                        gAlice->GetMCApp()->GetCurrentTrackNumber(),
607                gMC->IsTrackAlive(),
608                gMC->IsTrackDisappeared(),
609                gMC->IsTrackEntering(),
610                gMC->IsTrackExiting(),
611                gMC->IsTrackInside(),
612                gMC->IsTrackOut(),
613                gMC->IsTrackStop(),
614                gMC->IsNewTrack());
615         */              
616       } //sensitive
617   } //photon
618 }
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