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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 | **************************************************************************/ |
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15 | |
16 | /* $Id$ */ |
17 | |
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18 | ///////////////////////////////////////////////////////////////////// |
19 | // // |
20 | // Forward Multiplicity detector based on Silicon version 0 // |
21 | // |
22 | //Begin Html |
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23 | /* |
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24 | <img src="gif/AliFMDv0Class.gif"> |
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25 | */ |
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26 | //End Html |
27 | // // |
28 | // // |
29 | ////////////////////////////////////////////////////////////////////// |
30 | |
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31 | #include <Riostream.h> |
32 | #include <stdlib.h> |
33 | |
34 | #include <TClonesArray.h> |
35 | #include <TDirectory.h> |
36 | #include <TFile.h> |
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37 | #include <TGeometry.h> |
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38 | #include <TLorentzVector.h> |
39 | #include <TMath.h> |
40 | #include <TNode.h> |
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41 | #include <TTUBE.h> |
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42 | #include <TTree.h> |
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43 | #include <TVirtualMC.h> |
44 | |
45 | #include "AliFMDdigit.h" |
46 | #include "AliFMDhit.h" |
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47 | #include "AliFMDv0.h" |
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48 | #include "AliFMDv1.h" |
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49 | #include "AliMagF.h" |
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50 | #include "AliRun.h" |
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51 | #include "AliMC.h" |
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52 | |
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53 | ClassImp(AliFMDv1) |
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54 | |
55 | //-------------------------------------------------------------------- |
56 | AliFMDv1::AliFMDv1(const char *name, const char *title): |
57 | AliFMD(name,title) |
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58 | { |
59 | // |
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60 | // Standart constructor for Forward Multiplicity Detector version 0 |
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61 | // |
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62 | fIdSens1=0; |
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63 | fIdSens2=0; |
64 | fIdSens3=0; |
65 | fIdSens4=0; |
66 | fIdSens5=0; |
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67 | // setBufferSize(128000); |
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68 | } |
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69 | //------------------------------------------------------------------------- |
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70 | void AliFMDv1::CreateGeometry() |
71 | { |
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72 | // |
73 | // Create the geometry of Forward Multiplicity Detector version 0 |
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74 | // |
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75 | //Detector consists of 6 volumes: |
76 | // 1st covered pseudorapidity interval from 3.3 to 2.0 |
77 | // and placed on 65cm in Z-direction; |
78 | // 2nd - from 2.0 to 1.6 and Z=85 cm; |
79 | // 3d - the same pseudorapidity interval as the 1st |
80 | // but on the other side from the interaction point z=-65cm; |
81 | // 4th - simmetricaly with the 2nd : |
82 | // pseudorapidity from 2.0 to 1.6, Z=-85cm |
83 | // 5th - from 3.6 to 4.7, Z=-270cm |
84 | // 6th - from 4.5 to 5.5 , Z=-630cm. |
85 | // Each part has 400mkm Si (sensetive area, detector itself), |
86 | // 0.75cm of plastic simulated electronics material, |
87 | // Al support ring 2cm thickness and 1cm width placed on |
88 | // the outer radius of each Si disk; |
89 | // |
90 | // begin Html |
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91 | /* |
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92 | <img src="gif/AliFMDv0.gif"> |
93 | */ |
94 | // |
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95 | |
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96 | |
97 | |
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98 | Int_t *idtmed = fIdtmed->GetArray(); |
99 | |
100 | Int_t ifmd; |
101 | Int_t idrotm[999]; |
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102 | /*<<<<<<< AliFMDv1.cxx |
103 | Float_t zFMD,par[3],ppcon[15]; |
104 | Float_t z[5]={62.8, 75.2, -83.4, -75.2, -340.}; |
105 | Float_t NylonTube[3]={0.2,0.6,0.45}; |
106 | Float_t zPCB=0.12; Float_t zHoneyComb=0.5; |
107 | Float_t zSi=0.03; |
108 | |
109 | char nameFMD[5], nameSi[5], nameSector[5], nameRing[5]; |
110 | Char_t nameHoney[5], nameHoneyIn[5], nameHoneyOut[5]; |
111 | Char_t namePCB[5], nameCopper[5], nameChips[5], nameG10[5]; |
112 | Char_t nameLPCB[5], nameLCopper[5], nameLChips[5], nameGL10[5];; |
113 | Float_t rin[5]={4.2,15.4,4.2,15.4,4.2}; |
114 | Float_t rout[5]={17.4,28.4,17.4,28.4,17.4}; |
115 | Float_t RinHoneyComb[5] ={ 5.15,16.4, 5.15,16.4, 5.15}; |
116 | Float_t RoutHoneyComb[5]={20.63,34.92,22.3, 32.02,20.63}; |
117 | Float_t zInside; |
118 | Float_t zCooper=0.01; Float_t zChips=0.01; |
119 | Float_t yNylonTube[5]={10,20,10,20,10}; |
120 | =======*/ |
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121 | Float_t zFMD,par[3],ppcon[15]; |
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122 | Float_t z[5]={-62.8, -75.2, 83.4, 75.2, 340.}; |
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123 | Float_t NylonTube[3]={0.2,0.6,0.45}; |
124 | Float_t zPCB=0.12; Float_t zHoneyComb=0.5; |
125 | Float_t zSi=0.03; |
126 | |
127 | char nameFMD[5], nameSi[5], nameSector[5], nameRing[5]; |
128 | Char_t nameHoney[5], nameHoneyIn[5], nameHoneyOut[5]; |
129 | Char_t namePCB[5], nameCopper[5], nameChips[5], nameG10[5]; |
130 | Char_t nameLPCB[5], nameLCopper[5], nameLChips[5], nameGL10[5];; |
131 | Float_t rin[5]={4.2,15.4,4.2,15.4,4.2}; |
132 | Float_t rout[5]={17.4,28.4,17.4,28.4,17.4}; |
133 | Float_t RinHoneyComb[5] ={ 5.15,16.4, 5.15,16.4, 5.15}; |
134 | Float_t RoutHoneyComb[5]={20.63,34.92,22.3, 32.02,20.63}; |
135 | Float_t zInside; |
136 | Float_t zCooper=0.01; Float_t zChips=0.01; |
137 | Float_t yNylonTube[5]={10,20,10,20,10}; |
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138 | //>>>>>>> 1.25 |
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139 | |
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140 | |
141 | AliMatrix(idrotm[901], 90, 0, 90, 90, 180, 0); |
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142 | |
143 | |
144 | // Nylon tubes |
145 | gMC->Gsvolu("GNYL","TUBE", idtmed[1], NylonTube, 3); //support nylon tube |
146 | Float_t wideSupport=zSi+3*zPCB+2*NylonTube[2]+zHoneyComb; |
147 | cout<<" wideSupport "<<wideSupport<<endl; |
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148 | |
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149 | for (ifmd=0; ifmd<5; ifmd++) |
150 | { |
151 | sprintf(nameFMD,"FMD%d",ifmd+1); |
152 | ppcon[0]=0; |
153 | ppcon[1]=360; |
154 | ppcon[2]=4; |
155 | |
156 | ppcon[3]=-wideSupport; |
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157 | ppcon[4]=rin[ifmd]-0.1; |
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158 | ppcon[5]=rout[ifmd]+0.1; |
159 | |
160 | ppcon[6]=ppcon[3]+2*zSi+2*zPCB+2*NylonTube[2]; |
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161 | ppcon[7]=rin[ifmd]-0.1; |
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162 | ppcon[8]=rout[ifmd]+0.1; |
163 | |
164 | ppcon[9]=ppcon[6]; |
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165 | ppcon[10]=RinHoneyComb[ifmd]-0.1; |
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166 | ppcon[11]=RoutHoneyComb[ifmd]+0.1; |
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167 | |
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168 | ppcon[12]=ppcon[9]+2*zHoneyComb+zPCB; |
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169 | ppcon[13]=RinHoneyComb[ifmd]-0.1; |
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170 | ppcon[14]=RoutHoneyComb[ifmd]+0.1; |
171 | gMC->Gsvolu(nameFMD,"PCON",idtmed[0],ppcon,15); |
172 | if (z[ifmd] >0){ |
173 | zFMD=z[ifmd]+wideSupport; |
174 | gMC->Gspos(nameFMD,1,"ALIC",0,0,zFMD,0, "ONLY");} |
175 | else { |
176 | zFMD=z[ifmd]-wideSupport; |
177 | gMC->Gspos(nameFMD,1,"ALIC",0,0,zFMD,idrotm[901], "ONLY");} |
178 | //silicon |
179 | sprintf(nameSi,"GSI%d",ifmd+1); |
180 | sprintf(nameSector,"GSC%d",ifmd+1); |
181 | sprintf(nameRing,"GRN%d",ifmd+1); |
182 | |
183 | //honeycomb support |
184 | sprintf(nameHoney,"GSU%d",ifmd+1); |
185 | gMC->Gsvolu(nameHoney,"TUBE", idtmed[0], par, 0); //honeycomb |
186 | sprintf(nameHoneyIn,"GHI%d",ifmd+1); |
187 | gMC->Gsvolu(nameHoneyIn,"TUBE", idtmed[7], par, 0); //honey comb inside |
188 | sprintf(nameHoneyOut,"GHO%d",ifmd+1); |
189 | gMC->Gsvolu(nameHoneyOut,"TUBE", idtmed[6], par, 0); //honey comb skin |
190 | //PCB |
191 | sprintf(namePCB,"GPC%d",ifmd+1); |
192 | gMC->Gsvolu(namePCB,"TUBE", idtmed[0], par, 0); //PCB |
193 | sprintf(nameCopper,"GCO%d",ifmd+1); |
194 | gMC->Gsvolu(nameCopper,"TUBE", idtmed[3], par, 0); // Cooper |
195 | sprintf(nameChips,"GCH%d",ifmd+1); |
196 | gMC->Gsvolu(nameChips,"TUBE", idtmed[5], par, 0); // Si chips |
197 | sprintf(nameG10,"G10%d",ifmd+1); |
198 | gMC->Gsvolu(nameG10,"TUBE", idtmed[2], par, 0); //G10 plate |
199 | //last PCB |
200 | sprintf(nameLPCB,"GPL%d",ifmd+1); |
201 | gMC->Gsvolu(nameLPCB,"TUBE", idtmed[0], par, 0); //PCB |
202 | sprintf(nameLCopper,"GCL%d",ifmd+1); |
203 | gMC->Gsvolu(nameLCopper,"TUBE", idtmed[3], par, 0); // Cooper |
204 | sprintf(nameLChips,"GHL%d",ifmd+1); |
205 | gMC->Gsvolu(nameLChips,"TUBE", idtmed[5], par, 0); // Si chips |
206 | sprintf(nameGL10,"G1L%d",ifmd+1); |
207 | gMC->Gsvolu(nameGL10,"TUBE", idtmed[2], par, 0); // Last G10 |
208 | par[0]=rin[ifmd]; // pipe size |
209 | par[1]=rout[ifmd]; |
210 | par[2]=zSi/2; |
211 | gMC->Gsvolu(nameSi,"TUBE", idtmed[4], par, 3); |
212 | zInside=ppcon[3]+par[2]; |
213 | gMC->Gspos(nameSi,ifmd+1,nameFMD,0,0,zInside,0, "ONLY"); |
214 | //PCB 1 |
215 | zInside += par[2]+zPCB/2; |
216 | par[2]=zPCB/2; |
217 | gMC->Gsposp(namePCB,1,nameFMD,0,0,zInside,0, "ONLY",par,3); |
218 | zInside += zPCB; |
219 | gMC->Gsposp(namePCB,2,nameFMD,0,0,zInside,0, "ONLY",par,3); |
220 | Float_t NulonTubeBegin=zInside+2.5*zPCB; |
221 | par[2]=zPCB/2-0.02; |
222 | Float_t zInPCB = -zPCB/2+par[2]; |
223 | gMC->Gsposp(nameG10,1,namePCB,0,0,zInPCB,0, "ONLY",par,3); |
224 | zInPCB+=par[2]+zCooper/2 ; |
225 | par[2]=zCooper/2; |
226 | gMC->Gsposp(nameCopper,1,namePCB,0,0,zInPCB,0, "ONLY",par,3); |
227 | zInPCB += zCooper/2 + zChips/2; |
228 | par[2]=zChips/2; |
229 | gMC->Gsposp(nameChips,1,namePCB,0,0,zInPCB,0, "ONLY",par,3); |
230 | //HoneyComb |
231 | zHoneyComb=0.8; |
232 | par[0] = RinHoneyComb[ifmd]; |
233 | par[1] = RoutHoneyComb[ifmd]; |
234 | par[2] = zHoneyComb/2; |
235 | zInside += 2*NylonTube[2]+par[2]; |
236 | gMC->Gsposp(nameHoney,1,nameFMD,0,0,zInside,0, "ONLY",par,3); |
237 | par[2]=0.1/2; |
238 | Float_t zHoney=-zHoneyComb/2+par[2]; |
239 | gMC->Gsposp(nameHoneyOut,1,nameHoney,0,0,zHoney,0, |
240 | "ONLY",par,3); //shkurki |
241 | zHoney=zHoneyComb/2-par[2]; |
242 | gMC->Gsposp(nameHoneyOut,2,nameHoney,0,0,zHoney,0, "ONLY",par,3); |
243 | par[2]=(zHoneyComb-2.*0.1)/2; //soty vnutri |
244 | gMC->Gsposp(nameHoneyIn,1,nameHoney,0,0,0,0, "ONLY",par,3); |
245 | |
246 | gMC->Gspos("GNYL",1,nameFMD,0,yNylonTube[ifmd], |
247 | NulonTubeBegin+NylonTube[2]/2.,0, "ONLY"); |
248 | gMC->Gspos("GNYL",2,nameFMD,0,-yNylonTube[ifmd], |
249 | NulonTubeBegin+NylonTube[2]/2.,0, "ONLY"); |
250 | |
251 | //last PCB |
252 | par[0]=RoutHoneyComb[ifmd]-9; |
253 | par[1]=RoutHoneyComb[ifmd]; |
254 | par[2]=zPCB/2; |
255 | zInside += zHoneyComb/2+par[2]; |
256 | gMC->Gsposp(nameLPCB,1,nameFMD,0,0,zInside,0, "ONLY",par,3); |
257 | |
258 | par[2]=zPCB/2-0.02; |
259 | zInPCB = -zPCB/2+par[2]; |
260 | gMC->Gsposp(nameGL10,1,nameLPCB,0,0,zInPCB,0, "ONLY",par,3); |
261 | zInPCB+=par[2]+zCooper/2 ; |
262 | par[2]=zCooper/2; |
263 | gMC->Gsposp(nameLCopper,1,nameLPCB,0,0,zInPCB,0, "ONLY",par,3); |
264 | zInPCB += zCooper/2 + zChips/2; |
265 | par[2]=zChips/2; |
266 | gMC->Gsposp(nameLChips,1,nameLPCB,0,0,zInPCB,0, "ONLY",par,3); |
267 | |
268 | |
269 | //Granularity |
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270 | fSectorsSi1=20; |
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271 | fRingsSi1=256*2; |
272 | // fRingsSi1=3; // for drawing only |
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273 | fSectorsSi2=40; |
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274 | fRingsSi2=128*2; |
275 | // fRingsSi2=3; //for drawing onl |
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276 | if(ifmd==1||ifmd==3) |
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277 | { |
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278 | gMC->Gsdvn(nameSector, nameSi , fSectorsSi2, 2); |
279 | gMC->Gsdvn(nameRing, nameSector, fRingsSi2, 1); |
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280 | } |
281 | else |
282 | { |
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283 | gMC->Gsdvn(nameSector, nameSi , fSectorsSi1, 2); |
284 | gMC->Gsdvn(nameRing, nameSector , fRingsSi1, 1); |
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285 | } |
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286 | |
287 | } |
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288 | } |
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289 | |
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290 | |
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291 | //------------------------------------------------------------------------ |
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292 | void AliFMDv1::CreateMaterials() |
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293 | { |
294 | Int_t isxfld = gAlice->Field()->Integ(); |
295 | Float_t sxmgmx = gAlice->Field()->Max(); |
296 | |
297 | // Plastic CH |
298 | Float_t aPlastic[2]={1.01,12.01}; |
299 | Float_t zPlastic[2]={1,6}; |
300 | Float_t wPlastic[2]={1,1}; |
301 | Float_t denPlastic=1.03; |
302 | // |
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303 | // 60% SiO2 , 40% G10FR4 |
304 | // PC board |
305 | Float_t apcb[3] = { 28.0855,15.9994,17.749 }; |
306 | Float_t zpcb[3] = { 14.,8.,8.875 }; |
307 | Float_t wpcb[3] = { .28,.32,.4 }; |
308 | Float_t denspcb = 1.8; |
309 | // |
60b0465d |
310 | // AIR |
311 | Float_t aAir[4]={12.0107,14.0067,15.9994,39.948}; |
312 | Float_t zAir[4]={6.,7.,8.,18.}; |
313 | Float_t wAir[4]={0.000124,0.755267,0.231781,0.012827}; |
314 | Float_t dAir = 1.20479E-3; |
315 | //*** Definition Of avaible FMD materials *** |
316 | AliMixture(0, "FMD Air$", aAir, zAir, dAir, 4,wAir); |
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317 | AliMixture(1, "Plastic$",aPlastic,zPlastic,denPlastic,-2,wPlastic); |
318 | AliMixture(2, "SSD PCB$", apcb, zpcb, denspcb, 3, wpcb); |
319 | AliMaterial(3, "SSD Copper$", 63.546, 29., 8.96, 1.43, 999.); |
320 | AliMaterial(4, "SSD Si$", 28.0855, 14., 2.33, 9.36, 999.); |
321 | AliMaterial(5, "SSD Si chip$", 28.0855, 14., 2.33, 9.36, 999.); |
322 | AliMaterial(6, "SSD C$", 12.011, 6., 2.265,18.8, 999.); |
323 | AliMaterial(7, "SSD Kapton$", 12.011, 6., 0.01, 31.27, 999.);//honeycomb |
324 | AliMaterial(8, "SSD G10FR4$", 17.749, 8.875, 1.8, 21.822, 999.); |
325 | |
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326 | |
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327 | //** |
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328 | AliMedium(0, "FMD air$", 0, 0, isxfld, sxmgmx, 1., .001, 1., .001, .001); |
329 | AliMedium(1, "Plastic$", 1, 0,isxfld, sxmgmx, 10., .01, 1., .003, .003); |
330 | AliMedium(2, "SSD PCB$", 2, 0, isxfld, sxmgmx, 1., .001, 1., .001, .001); |
331 | AliMedium(3, "SSD Copper$", 3, 0,isxfld, sxmgmx, 10., .01, 1., .003, .003); |
332 | AliMedium(4, "SSD Si$", 4, 1, isxfld, sxmgmx, 1., .001, 1., .001, .001); |
333 | AliMedium(5, "SSD Si chip$", 5, 0,isxfld, sxmgmx, 10., .01, 1., .003, .003); |
334 | AliMedium(6, "SSD C$", 6, 0,isxfld, sxmgmx, 10., .01, 1., .003, .003); |
335 | AliMedium(7, "SSD Kapton$", 7, 0, isxfld, sxmgmx, 1., .001, 1., .001, .001); |
336 | AliMedium(8, "SSD G10FR4$", 8, 0,isxfld, sxmgmx, 10., .01, 1., .003, .003); |
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337 | |
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338 | |
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339 | |
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340 | } |
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341 | //--------------------------------------------------------------------- |
342 | void AliFMDv1::DrawDetector() |
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343 | { |
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344 | // |
345 | // Draw a shaded view of the Forward multiplicity detector version 0 |
346 | // |
347 | |
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348 | //Set ALIC mother transparent |
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349 | gMC->Gsatt("ALIC","SEEN",0); |
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350 | // |
351 | //Set volumes visible |
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352 | gMC->Gsatt("FMD1","SEEN",1); |
353 | gMC->Gsatt("FMD2","SEEN",1); |
354 | gMC->Gsatt("FMD3","SEEN",1); |
355 | gMC->Gsatt("FMD4","SEEN",1); |
356 | gMC->Gsatt("FMD5","SEEN",1); |
357 | |
358 | // |
359 | gMC->Gdopt("hide","on"); |
360 | gMC->Gdopt("shad","on"); |
361 | gMC->SetClipBox("."); |
362 | gMC->SetClipBox("*",0,1000,-1000,1000,-1000,1000); |
363 | gMC->DefaultRange(); |
364 | gMC->Gdraw("alic",40,30,0,12,9.5,.2,0.2); |
365 | gMC->Gdhead(1111,"Forward multiplicity detector"); |
366 | gMC->Gdopt("hide","off"); |
367 | } |
368 | //------------------------------------------------------------------- |
369 | void AliFMDv1::Init() |
370 | { |
371 | // Initialises version 0 of the Forward Multiplicity Detector |
372 | // |
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373 | AliFMD::Init(); |
374 | fIdSens1=gMC->VolId("GRN1"); |
375 | fIdSens2=gMC->VolId("GRN2"); |
376 | fIdSens3=gMC->VolId("GRN3"); |
377 | fIdSens4=gMC->VolId("GRN4"); |
378 | fIdSens5=gMC->VolId("GRN5"); |
379 | printf("*** FMD version 1 initialized ***\n"); |
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380 | } |
381 | |
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382 | //------------------------------------------------------------------- |
383 | |
384 | void AliFMDv1::StepManager() |
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385 | { |
386 | // |
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387 | // Called for every step in the Forward Multiplicity Detector |
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388 | // |
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389 | Int_t id,copy,copy1,copy2; |
390 | static Float_t hits[9]; |
391 | static Int_t vol[3]; |
392 | static Float_t de; |
393 | TLorentzVector pos; |
394 | TLorentzVector mom; |
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395 | |
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396 | |
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397 | TClonesArray &lhits = *fHits; |
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398 | if(!gMC->IsTrackAlive()) return; // particle has disappeared |
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399 | |
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400 | Float_t charge = gMC->TrackCharge(); |
401 | if(TMath::Abs(charge)<=0.) return; //take only charged particles |
402 | |
403 | // printf(" in StepManeger \n"); |
404 | id=gMC->CurrentVolID(copy); |
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405 | //((TGeant3*)gMC)->Gpcxyz(); |
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406 | |
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407 | // Check the sensetive volume |
37c55dc0 |
408 | if(id==fIdSens1||id==fIdSens2||id==fIdSens3||id==fIdSens4||id==fIdSens5) |
b9a2d5e4 |
409 | { |
410 | if(gMC->IsTrackEntering()) |
411 | { |
b9a2d5e4 |
412 | vol[2]=copy; |
413 | gMC->CurrentVolOffID(1,copy1); |
414 | vol[1]=copy1; |
415 | gMC->CurrentVolOffID(2,copy2); |
416 | vol[0]=copy2; |
f075b58b |
417 | |
b9a2d5e4 |
418 | gMC->TrackPosition(pos); |
419 | hits[0]=pos[0]; |
420 | hits[1]=pos[1]; |
421 | hits[2]=pos[2]; |
f075b58b |
422 | |
b9a2d5e4 |
423 | gMC->TrackMomentum(mom); |
424 | hits[3]=mom[0]; |
425 | hits[4]=mom[1]; |
426 | hits[5]=mom[2]; |
427 | |
428 | Int_t iPart= gMC->TrackPid(); |
429 | Int_t partId=gMC->IdFromPDG(iPart); |
430 | hits[7]=partId; |
431 | hits[8]=1e9*gMC->TrackTime(); |
432 | de=0.; |
b9a2d5e4 |
433 | } |
434 | if(gMC->IsTrackInside()){ |
435 | de=de+1000.*gMC->Edep(); |
436 | } |
437 | |
438 | if(gMC->IsTrackExiting() |
439 | ||gMC->IsTrackDisappeared()|| |
440 | gMC->IsTrackStop()) |
441 | { |
442 | hits[6]=de+1000.*gMC->Edep(); |
5d12ce38 |
443 | new(lhits[fNhits++]) AliFMDhit(fIshunt,gAlice->GetMCApp()->GetCurrentTrackNumber(),vol,hits); |
b9a2d5e4 |
444 | } // IsTrackExiting() |
445 | } |
446 | } |
dc8af42e |
447 | //-------------------------------------------------------------------------- |
448 | |
449 | void AliFMDv1::Response( Float_t Edep) |
450 | { |
451 | Float_t I=1.664*0.04*2.33/22400; // = 0.69e-6; |
452 | Float_t chargeOnly=Edep/I; |
453 | //Add noise ~500electrons |
454 | Int_t charge=500; |
455 | if (Edep>0) |
456 | charge=Int_t(gRandom->Gaus(chargeOnly,500)); |
457 | } |
b9a2d5e4 |
458 | |
459 | |
460 | |
461 | |
fe4da5cc |
462 | |
0d630091 |
463 | |