916c29ab |
1 | enum gentype_t {hijing, gun, box, pythia, param, cocktail, fluka, halo, ntuple, scan}; |
2 | |
3 | gentype_t gentype=param; |
4 | |
5 | |
6 | ntracks=1; |
7 | |
8 | void Config() |
9 | { |
10 | |
11 | new TGeant3("C++ Interface to Geant3"); |
12 | |
13 | //======================================================================= |
14 | // Create the output file |
15 | |
16 | TFile *rootfile = new TFile("galice.root","recreate"); |
17 | rootfile->SetCompressionLevel(2); |
18 | TGeant3 *geant3 = (TGeant3*)gMC; |
19 | |
20 | //======================================================================= |
21 | // ******* GEANT STEERING parameters FOR ALICE SIMULATION ******* |
22 | geant3->SetTRIG(1); //Number of events to be processed |
23 | geant3->SetSWIT(4,10); |
24 | geant3->SetDEBU(0,0,1); |
25 | //geant3->SetSWIT(2,2); |
26 | geant3->SetDCAY(1); |
27 | geant3->SetPAIR(1); |
28 | geant3->SetCOMP(1); |
29 | geant3->SetPHOT(1); |
30 | geant3->SetPFIS(0); |
31 | geant3->SetDRAY(0); |
32 | geant3->SetANNI(1); |
33 | geant3->SetBREM(1); |
34 | geant3->SetMUNU(1); |
35 | geant3->SetCKOV(1); |
36 | geant3->SetHADR(1); //Select pure GEANH (HADR 1) or GEANH/NUCRIN (HADR 3) |
37 | geant3->SetLOSS(2); |
38 | geant3->SetMULS(1); |
39 | geant3->SetRAYL(1); |
40 | geant3->SetAUTO(1); //Select automatic STMIN etc... calc. (AUTO 1) or manual (AUTO 0) |
41 | geant3->SetABAN(0); //Restore 3.16 behaviour for abandoned tracks |
42 | geant3->SetOPTI(2); //Select optimisation level for GEANT geometry searches (0,1,2) |
43 | Float_t cut = 1.e-3; // 1MeV cut by default |
44 | Float_t tofmax = 1.e10; |
45 | // GAM ELEC NHAD CHAD MUON EBREM MUHAB EDEL MUDEL MUPA TOFMAX |
46 | geant3->SetCUTS(cut,cut, cut, cut, cut, cut, cut, cut, cut, cut, tofmax); |
47 | // |
48 | //======================================================================= |
49 | // ************* STEERING parameters FOR ALICE SIMULATION ************** |
50 | // --- Specify event type to be tracked through the ALICE setup |
51 | // --- All positions are in cm, angles in degrees, and P and E in GeV |
52 | |
53 | switch(gentype) |
54 | { |
55 | case gun: |
56 | //********************************************* |
57 | // Example for Fixed Particle Gun |
58 | //********************************************* |
59 | AliGenFixed *gener = new AliGenFixed(ntracks); |
60 | gener->SetMomentum(50); |
61 | gener->SetPhi(180.); |
62 | gener->SetTheta(5.); |
63 | gener->SetOrigin(0,0,0); //vertex position |
64 | gener->SetPart(13); //GEANT particle type |
65 | break; |
66 | case box: |
67 | //********************************************* |
68 | // Example for Moving Particle Gun * |
69 | //********************************************* |
70 | AliGenBox *gener = new AliGenBox(ntracks); |
71 | gener->SetMomentumRange(3,4); |
72 | gener->SetPhiRange(0,360); |
73 | gener->SetThetaRange(90, 180. ); |
74 | gener->SetOrigin(0,0,0); |
75 | //vertex position |
76 | gener->SetSigma(0,0,0); //Sigma in (X,Y,Z) (cm) on IP position |
77 | gener->SetPart(5); //GEANT particle type |
78 | break; |
79 | case scan: |
80 | //********************************************* |
81 | // Scanning on a grid * |
82 | //********************************************* |
83 | AliGenScan *gener = new AliGenScan(-1); |
84 | gener->SetMomentumRange(4,4); |
85 | gener->SetPhiRange(0,360); |
86 | gener->SetThetaRange(9,9); |
87 | //vertex position |
88 | gener->SetSigma(6,6,0); //Sigma in (X,Y,Z) (cm) on IP position |
89 | gener->SetPart(5); |
90 | gener->SetRange(20, -100, 100, 20, -100, 100, 1, 500, 500); |
91 | break; |
92 | |
93 | case hijing: |
94 | AliGenHIJINGpara *gener = new AliGenHIJINGpara(ntracks); |
95 | gener->SetMomentumRange(0,999); |
96 | gener->SetPhiRange(0,360); |
97 | gener->SetThetaRange(2,10); |
98 | gener->SetOrigin(0,0,0); //vertex position |
99 | gener->SetSigma(0,0,0); //Sigma in (X,Y,Z) (cm) on IP position |
100 | break; |
101 | |
102 | case pythia: |
103 | //******************************************** |
104 | // Example for Charm Production with Pythia * |
105 | //******************************************** |
106 | |
107 | AliGenPythia *gener = new AliGenPythia(ntracks); |
108 | gener->SetMomentumRange(0,999); |
109 | gener->SetPhiRange(0,360); |
110 | gener->SetThetaRange(0., 180.); |
111 | gener->SetYRange(-10,10); |
112 | gener->SetPtRange(0,100); |
113 | gener->SetOrigin(0,0,0); // vertex position |
114 | gener->SetVertexSmear(perEvent); |
115 | gener->SetSigma(0,0,5.6); // Sigma in (X,Y,Z) (cm) on IP position |
116 | // gener->SetStrucFunc(DO_Set_1); |
117 | gener->SetProcess(mb); |
118 | gener->SetEnergyCMS(5500.); |
119 | break; |
120 | |
121 | case param: |
122 | //******************************************************* |
123 | // Example for J/psi Production from Parameterisation * |
124 | //******************************************************* |
125 | AliGenParam *gener = new AliGenParam(ntracks, upsilon_p); |
126 | gener->SetMomentumRange(0,999); |
127 | gener->SetPhiRange(0,360); |
128 | gener->SetYRange(2.5,4); |
129 | gener->SetThetaRange(2,9); |
130 | |
131 | gener->SetPtRange(0,10); |
132 | gener->SetOrigin(0,0,0); //vertex position |
133 | gener->SetSigma(0,0,0);//Sigma in (X,Y,Z) (cm) on IP position |
134 | gener->ForceDecay(dimuon); |
135 | gener->SetCutOnChild(1); |
136 | break; |
137 | |
138 | case fluka: |
139 | //******************************************************* |
140 | // Example for a FLUKA Boundary Source * |
141 | //******************************************************* |
142 | AliGenFLUKAsource *gener = new AliGenFLUKAsource(-1); |
143 | gener->AddFile("$(ALICE_ROOT)/data/all32.root"); |
144 | gener->SetPartFlag(9); |
145 | gener->SetAgeMax(1.e-5); |
146 | // 31.7 events |
147 | gener->SetFraction(0.0315); |
148 | // gener->SetFraction(0.75*0.0315); |
149 | rootfile->cd(); |
150 | // gener->SetPartFlag(10); |
151 | gener->SetMomentumRange(0,999); |
152 | gener->SetPhiRange(0,360); |
153 | gener->SetThetaRange(0., 180.); |
154 | gener->SetAgeMax(1.e-5); |
155 | |
156 | // 31.7 events |
157 | // gener->SetFraction(0.0315); |
158 | break; |
159 | |
160 | case ntuple: |
161 | //******************************************************* |
162 | // Example for reading from a external file * |
163 | //******************************************************* |
164 | AliGenExtFile *gener = new AliGenExtFile(-1); |
165 | gener->SetFileName("$(ALICE_ROOT)/data/dtujet93.root"); |
166 | gener->SetVertexSmear(perEvent); |
167 | gener->SetTrackingFlag(1); |
168 | break; |
169 | |
170 | case halo: |
171 | //******************************************************* |
172 | // Example for Tunnel Halo Source * |
173 | //******************************************************* |
174 | AliGenHalo *gener = new AliGenHalo(ntracks); |
175 | gener->SetFileName("/h1/morsch/marsip/marsip5.mu"); |
176 | break; |
177 | |
178 | case cocktail: |
179 | //******************************************************* |
180 | // Example for a Cocktail * |
181 | //******************************************************* |
182 | |
183 | AliGenCocktail *gener = new AliGenCocktail(); |
184 | |
185 | gener->SetPhiRange(0,360); |
186 | gener->SetYRange(2.5,4); |
187 | gener->SetThetaRange(2,9); |
188 | gener->SetPtRange(0,10); |
189 | gener->SetOrigin(0,0,0); //vertex position |
190 | gener->SetSigma(0,0,0); //Sigma in (X,Y,Z) (cm) on IP position |
191 | gener->SetMomentumRange(0,999); |
192 | |
193 | AliGenParam *jpsi = new AliGenParam(1,jpsi_p); |
194 | jpsi->ForceDecay(dimuon); |
195 | jpsi->SetCutOnChild(1); |
196 | |
197 | |
198 | AliGenFLUKAsource *bg = new AliGenFLUKAsource(-1); |
199 | bg->AddFile("$(ALICE_ROOT)/data/all32.root"); |
200 | rootfile->cd(); |
201 | bg->SetPartFlag(9); |
202 | bg->SetAgeMax(1.e-5); |
203 | // 31.7 events |
204 | // gener->SetFraction(0.0315); |
205 | bg->SetFraction(0.01*0.0315); |
206 | |
207 | gener->AddGenerator(jpsi,"J/Psi", 1); |
208 | gener->AddGenerator(bg,"Background",1); |
209 | |
210 | break; |
211 | } |
212 | |
213 | // Activate this line if you want the vertex smearing to happen |
214 | // track by track |
215 | // |
216 | // gener->SetVertexSmear(perTrack); |
217 | |
218 | gener->Init(); |
219 | |
220 | gAlice->SetField(-999,2); //Specify maximum magnetic field in Tesla (neg. ==> default field) |
221 | |
222 | Int_t iMAG=1; |
223 | Int_t iITS=1; |
224 | Int_t iTPC=1; |
225 | Int_t iTOF=1; |
226 | Int_t iRICH=1; |
227 | Int_t iZDC=0; |
228 | Int_t iCASTOR=1; |
229 | Int_t iTRD=1; |
230 | Int_t iABSO=1; |
231 | Int_t iDIPO=1; |
232 | Int_t iHALL=1; |
233 | Int_t iFRAME=1; |
234 | Int_t iSHIL=1; |
235 | Int_t iPIPE=1; |
236 | Int_t iFMD=1; |
237 | Int_t iMUON=1; |
238 | Int_t iPHOS=1; |
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239 | Int_t iCPV=1; |
916c29ab |
240 | Int_t iPMD=1; |
b422f318 |
241 | Int_t iSTART=0; |
916c29ab |
242 | |
243 | //=================== Alice BODY parameters ============================= |
244 | AliBODY *BODY = new AliBODY("BODY","Alice envelop"); |
245 | |
246 | |
247 | if(iMAG) { |
248 | //=================== MAG parameters ============================ |
249 | // --- Start with Magnet since detector layouts may be depending --- |
250 | // --- on the selected Magnet dimensions --- |
251 | AliMAG *MAG = new AliMAG("MAG","Magnet"); |
252 | } |
253 | |
254 | |
255 | if(iABSO) { |
256 | //=================== ABSO parameters ============================ |
257 | AliABSO *ABSO = new AliABSO("ABSO","Muon Absorber"); |
258 | } |
259 | |
260 | if(iDIPO) { |
261 | //=================== DIPO parameters ============================ |
262 | |
263 | AliDIPO *DIPO = new AliDIPOv2("DIPO","Dipole version 2"); |
264 | } |
265 | |
266 | if(iHALL) { |
267 | //=================== HALL parameters ============================ |
268 | |
269 | AliHALL *HALL = new AliHALL("HALL","Alice Hall"); |
270 | } |
271 | |
272 | |
273 | if(iFRAME) { |
274 | //=================== FRAME parameters ============================ |
275 | |
276 | AliFRAME *FRAME = new AliFRAMEv0("FRAME","Space Frame"); |
277 | } |
278 | |
279 | if(iSHIL) { |
280 | //=================== SHIL parameters ============================ |
281 | |
282 | AliSHIL *SHIL = new AliSHIL("SHIL","Shielding"); |
283 | } |
284 | |
285 | |
286 | if(iPIPE) { |
287 | //=================== PIPE parameters ============================ |
288 | |
289 | AliPIPE *PIPE = new AliPIPEv0("PIPE","Beam Pipe"); |
290 | } |
291 | |
292 | |
293 | if(iITS) { |
294 | //=================== ITS parameters ============================ |
295 | // |
296 | // EUCLID is a flag to output (=1) both geometry and media to two ASCII files |
297 | // (called by default ITSgeometry.euc and ITSgeometry.tme) in a format |
298 | // understandable to the CAD system EUCLID. The default (=0) means that you |
299 | // dont want to use this facility. |
300 | // |
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301 | AliITS *ITS = new AliITSv5("ITS","normal ITS"); |
302 | ITS->SetEUCLID(0); |
916c29ab |
303 | } |
304 | |
305 | if(iTPC) { |
306 | //============================ TPC parameters ================================ |
307 | // --- This allows the user to specify sectors for the SLOW (TPC geometry 2) |
308 | // --- Simulator. SecAL (SecAU) <0 means that ALL lower (upper) |
309 | // --- sectors are specified, any value other than that requires at least one |
310 | // --- sector (lower or upper)to be specified! |
311 | // --- Reminder: sectors 1-24 are lower sectors (1-12 -> z>0, 13-24 -> z<0) |
312 | // --- sectors 25-72 are the upper ones (25-48 -> z>0, 49-72 -> z<0) |
313 | // --- SecLows - number of lower sectors specified (up to 6) |
314 | // --- SecUps - number of upper sectors specified (up to 12) |
315 | // --- Sens - sensitive strips for the Slow Simulator !!! |
316 | // --- This does NOT work if all S or L-sectors are specified, i.e. |
317 | // --- if SecAL or SecAU < 0 |
318 | // |
319 | // |
320 | //----------------------------------------------------------------------------- |
321 | |
322 | AliTPC *TPC = new AliTPCv1("TPC","Normal TPC"); |
323 | AliTPCD *paramd = TPC->GetDigParam(); |
324 | AliTPCParam *param = &(paramd->GetParam()); |
325 | |
326 | // Set geometrical parameters |
327 | |
328 | param->SetSectorAngles(40.,0.,20.,10.); |
329 | param->SetInnerRadiusLow(83.7); |
330 | param->SetInnerRadiusUp(132.9); |
331 | param->SetOuterRadiusLow(146.9); |
332 | param->SetOuterRadiusUp(249.4); |
333 | param->SetInSecLowEdge(81.6); |
334 | param->SetInSecUpEdge(135.); |
335 | param->SetOuSecLowEdge(144.2); |
336 | param->SetOuSecUpEdge(252.1); |
337 | param->SetEdge(1.5); |
338 | param->SetDeadZone(1.15); |
339 | param->Update(); |
340 | |
341 | // set gas mixture |
342 | |
343 | TPC->SetGasMixt(2,20,10,-1,0.9,0.1,0.); |
344 | TPC->SetSecAL(1); |
345 | TPC->SetSecAU(1); |
346 | TPC->SetSecLows(0, -1, -1, -1, -1, -1); |
347 | TPC->SetSecUps(18, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1); |
348 | TPC->SetSens(-1); |
349 | } |
350 | |
351 | if(iTOF) { |
352 | //=================== TOF parameters ============================ |
353 | AliTOF *TOF = new AliTOFv2("TOF","normal TOF"); |
354 | } |
355 | |
356 | if(iRICH) { |
357 | //=================== RICH parameters =========================== |
358 | |
359 | AliRICH *RICH = new AliRICHv0("RICH","normal RICH"); |
360 | |
361 | RICH->SetSMAXAR(0.03); |
362 | RICH->SetSMAXAL(-1); |
363 | // |
364 | // Version 0 |
365 | // Default Segmentation |
366 | AliRICHsegmentationV0* RsegV0 = new AliRICHsegmentationV0; |
367 | RsegV0->SetPADSIZ(.8, .8); |
368 | RsegV0->SetDAnod(0.8/3); |
369 | // Default response |
370 | AliRICHresponseV0* Rresponse0 = new AliRICHresponseV0; |
371 | AliRICHresponseCkv* RresponseCkv = new AliRICHresponseCkv; |
372 | |
373 | //------------------------Chambers 0-6 ---------------------------- |
374 | for (Int_t i=0; i<7; i++) { |
375 | RICH->SetSegmentationModel(i, 1, RsegV0); |
376 | RICH->SetResponseModel(i, mip , Rresponse0); |
377 | RICH->SetResponseModel(i, cerenkov, RresponseCkv); |
378 | RICH->Chamber(i).SetRSIGM(5.); |
379 | RICH->Chamber(i).SetMUCHSP(43.); |
380 | RICH->Chamber(i).SetMUSIGM(0.18, 0.18); |
381 | RICH->Chamber(i).SetMAXADC( 1024); |
382 | RICH->Chamber(i).SetSqrtKx3(0.77459667); |
383 | RICH->Chamber(i).SetKx2(0.962); |
384 | RICH->Chamber(i).SetKx4(0.379); |
385 | RICH->Chamber(i).SetSqrtKy3(0.77459667); |
386 | RICH->Chamber(i).SetKy2(0.962); |
387 | RICH->Chamber(i).SetKy4(0.379); |
388 | RICH->Chamber(i).SetPitch(0.25); |
389 | RICH->SetNsec(i,1); |
390 | } |
391 | } |
392 | |
393 | if(iZDC) { |
394 | //=================== ZDC parameters ============================ |
395 | |
396 | AliZDC *ZDC = new AliZDCv1("ZDC","normal ZDC"); |
397 | } |
398 | |
399 | if(iCASTOR) { |
400 | //=================== CASTOR parameters ============================ |
401 | |
402 | AliCASTOR *CASTOR = new AliCASTORv1("CASTOR","normal CASTOR"); |
403 | } |
404 | |
405 | if(iTRD) { |
406 | //=================== TRD parameters ============================ |
407 | |
408 | AliTRD *TRD = new AliTRDv0("TRD","TRD version 0"); |
409 | // Select the gas mixture (0: 97% Xe + 3% isobutane, 1: 90% Xe + 10% CO2) |
410 | TRD->SetGasMix(0); |
411 | TRD->SetHits(1); |
412 | } |
413 | |
414 | if(iFMD) { |
415 | //=================== FMD parameters ============================ |
416 | |
417 | AliFMD *FMD = new AliFMDv1("FMD","normal FMD"); |
418 | } |
419 | |
420 | if(iMUON) { |
421 | //=================== MUON parameters =========================== |
422 | |
423 | AliMUON *MUON = new AliMUONv0("MUON","normal MUON"); |
424 | |
425 | MUON->SetMaxStepGas(0.1); |
426 | MUON->SetMaxStepAlu(0.1); |
427 | // |
428 | // Version 0 |
429 | // |
430 | // First define the number of planes that are segmented (1 or 2) by a call |
431 | // to SetNsec. |
432 | // Then chose for each chamber (chamber plane) the segmentation |
433 | // and response model. |
434 | // They should be equal for the two chambers of each station. In a future |
435 | // version this will be enforced. |
436 | // |
437 | // |
438 | Int_t chamber; |
439 | Int_t station; |
440 | // Default response |
441 | AliMUONresponseV0* response0 = new AliMUONresponseV0; |
442 | response0->SetSqrtKx3(0.7131); |
443 | response0->SetKx2(1.0107); |
444 | response0->SetKx4(0.4036); |
445 | response0->SetSqrtKy3(0.7642); |
446 | response0->SetKy2(0.9706); |
447 | response0->SetKy4(0.3831); |
448 | response0->SetPitch(0.25); |
449 | response0->SetSigmaIntegration(10.); |
450 | response0->SetChargeSlope(50); |
451 | response0->SetChargeSpread(0.18, 0.18); |
452 | response0->SetMaxAdc(4096); |
453 | //-------------------------------------------------------- |
454 | // Configuration for Chamber TC1/2 (Station 1) ---------- |
455 | //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ |
456 | // Float_t rseg1[4]={17.5, 55.2, 71.3, 95.5}; |
457 | Float_t rseg1[4]={15.5, 55.2, 71.3, 95.5}; |
458 | Int_t nseg1[4]={4, 4, 2, 1}; |
459 | // |
460 | chamber=1; |
461 | //^^^^^^^^^ |
462 | MUON->SetNsec(chamber-1,2); |
463 | // |
464 | AliMUONsegmentationV01 *seg11=new AliMUONsegmentationV01; |
465 | |
466 | seg11->SetSegRadii(rseg1); |
467 | seg11->SetPADSIZ(3, 0.5); |
468 | seg11->SetDAnod(3.0/3./4); |
469 | seg11->SetPadDivision(nseg1); |
470 | |
471 | MUON->SetSegmentationModel(chamber-1, 1, seg11); |
472 | // |
473 | AliMUONsegmentationV02 *seg12=new AliMUONsegmentationV02; |
474 | seg12->SetSegRadii(rseg1); |
475 | seg12->SetPADSIZ(0.75, 2.0); |
476 | seg12->SetDAnod(3.0/3./4); |
477 | seg12->SetPadDivision(nseg1); |
478 | |
479 | MUON->SetSegmentationModel(chamber-1, 2, seg12); |
480 | |
481 | MUON->SetResponseModel(chamber-1, response0); |
482 | |
483 | chamber=2; |
484 | //^^^^^^^^^ |
485 | // |
486 | MUON->SetNsec(chamber-1,2); |
487 | // |
488 | AliMUONsegmentationV01 *seg21=new AliMUONsegmentationV01; |
489 | seg21->SetSegRadii(rseg1); |
490 | seg21->SetPADSIZ(3, 0.5); |
491 | seg21->SetDAnod(3.0/3./4); |
492 | seg21->SetPadDivision(nseg1); |
493 | MUON->SetSegmentationModel(chamber-1, 1, seg21); |
494 | // |
495 | AliMUONsegmentationV02 *seg22=new AliMUONsegmentationV02; |
496 | seg22->SetSegRadii(rseg1); |
497 | seg22->SetPADSIZ(0.75, 2.); |
498 | seg22->SetDAnod(3.0/3./4); |
499 | seg22->SetPadDivision(nseg1); |
500 | MUON->SetSegmentationModel(chamber-1, 2, seg22); |
501 | |
502 | MUON->SetResponseModel(chamber-1, response0); |
503 | // |
504 | //-------------------------------------------------------- |
505 | // Configuration for Chamber TC3/4 ----------------------- |
506 | //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ |
507 | // Float_t rseg2[4]={23.5, 47.1, 87.7, 122.5}; |
508 | Float_t rseg2[4]={21.5, 47.1, 87.7, 122.5}; |
509 | Int_t nseg2[4]={4, 4, 2, 1}; |
510 | // |
511 | chamber=3; |
512 | //^^^^^^^^^ |
513 | MUON->SetNsec(chamber-1,2); |
514 | // |
515 | AliMUONsegmentationV01 *seg31=new AliMUONsegmentationV01; |
516 | seg31->SetSegRadii(rseg2); |
517 | seg31->SetPADSIZ(3, 0.5); |
518 | seg31->SetDAnod(3.0/3./4); |
519 | seg31->SetPadDivision(nseg2); |
520 | MUON->SetSegmentationModel(chamber-1, 1, seg31); |
521 | // |
522 | AliMUONsegmentationV02 *seg32=new AliMUONsegmentationV02; |
523 | seg32->SetSegRadii(rseg2); |
524 | seg32->SetPADSIZ(0.75, 2.); |
525 | seg32->SetPadDivision(nseg2); |
526 | seg32->SetDAnod(3.0/3./4); |
527 | |
528 | MUON->SetSegmentationModel(chamber-1, 2, seg32); |
529 | |
530 | MUON->SetResponseModel(chamber-1, response0); |
531 | |
532 | chamber=4; |
533 | //^^^^^^^^^ |
534 | // |
535 | MUON->SetNsec(chamber-1,2); |
536 | // |
537 | AliMUONsegmentationV01 *seg41=new AliMUONsegmentationV01; |
538 | seg41->SetSegRadii(rseg2); |
539 | seg41->SetPADSIZ(3, 0.5); |
540 | seg41->SetDAnod(3.0/3./4); |
541 | seg41->SetPadDivision(nseg2); |
542 | MUON->SetSegmentationModel(chamber-1, 1, seg41); |
543 | // |
544 | AliMUONsegmentationV02 *seg42=new AliMUONsegmentationV02; |
545 | seg42->SetSegRadii(rseg2); |
546 | seg42->SetPADSIZ(0.75, 2.); |
547 | seg42->SetPadDivision(nseg2); |
548 | seg42->SetDAnod(3.0/3./4); |
549 | |
550 | MUON->SetSegmentationModel(chamber-1, 2, seg42); |
551 | |
552 | MUON->SetResponseModel(chamber-1, response0); |
553 | |
554 | |
555 | //-------------------------------------------------------- |
556 | // Configuration for Chamber TC5/6 ----------------------- |
557 | //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ |
558 | /* |
559 | seg5 = new AliMUONsegmentationV1; |
560 | AliMUONresponseV0* response5 = new AliMUONresponseV0; |
561 | // K3 = 0.62 |
562 | response5->SetSqrtKx3(0.78740079); |
563 | response5->SetKx2(0.95237319); // 0.5 * kPI * (1- 0.5*sqrtky3 ) |
564 | response5->SetKx4(0.37480633); // 0.25/TMath::ATan(sqrtkx3) |
565 | // K3 = 0.55 |
566 | response5->SetSqrtKy3(0.74161985); |
567 | response5->SetKy2(0.98832946); |
568 | response5->SetKy4(0.39177817); |
569 | response5->SetPitch(0.325); |
570 | response5->SetSigmaIntegration(10.); |
571 | response5->SetChargeSlope(50); |
572 | response5->SetChargeSpread(0.4, 0.4); |
573 | response5->SetMaxAdc(4096); |
574 | |
575 | chamber=5; |
576 | MUON->SetNsec(chamber-1,1); |
577 | MUON->SetSegmentationModel(chamber-1, 1, seg5); |
578 | MUON->SetResponseModel(chamber-1, response5); |
579 | |
580 | chamber=6; |
581 | MUON->SetNsec(chamber-1,1); |
582 | MUON->SetSegmentationModel(chamber-1, 1, seg5); |
583 | MUON->SetResponseModel(chamber-1, response5); |
584 | // |
585 | // Station 3 |
586 | station=3; |
587 | MUON->SetPADSIZ(station, 1, 0.975, 0.55); |
588 | */ |
589 | |
590 | chamber=5; |
591 | //^^^^^^^^^ |
592 | MUON->SetNsec(chamber-1,2); |
593 | // |
594 | AliMUONsegmentationV0 *seg51=new AliMUONsegmentationV0; |
595 | seg51->SetPADSIZ(0.75, 0.5); |
596 | seg51->SetDAnod(3.0/3./4); |
597 | MUON->SetSegmentationModel(chamber-1, 1, seg51); |
598 | // |
599 | AliMUONsegmentationV0 *seg52=new AliMUONsegmentationV0; |
600 | seg52->SetPADSIZ(0.5,0.75); |
601 | seg52->SetDAnod(3.0/3./4); |
602 | MUON->SetSegmentationModel(chamber-1, 2, seg52); |
603 | |
604 | MUON->SetResponseModel(chamber-1, response0); |
605 | |
606 | chamber=6; |
607 | //^^^^^^^^^ |
608 | MUON->SetNsec(chamber-1,2); |
609 | // |
610 | AliMUONsegmentationV0 *seg61=new AliMUONsegmentationV0; |
611 | seg61->SetPADSIZ(0.75, 0.5); |
612 | seg61->SetDAnod(3.0/3./4); |
613 | MUON->SetSegmentationModel(chamber-1, 1, seg61); |
614 | // |
615 | AliMUONsegmentationV0 *seg62=new AliMUONsegmentationV0; |
616 | seg62->SetPADSIZ(0.5,0.75); |
617 | seg62->SetDAnod(3.0/3./4); |
618 | MUON->SetSegmentationModel(chamber-1, 2, seg62); |
619 | |
620 | MUON->SetResponseModel(chamber-1, response0); |
621 | |
622 | //-------------------------------------------------------- |
623 | // Configuration for Chamber TC7/8 (Station 4) ---------- |
624 | //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ |
625 | |
626 | Int_t nseg4[4]={4, 4, 2, 1}; |
627 | |
628 | chamber=7; |
629 | //^^^^^^^^^ |
630 | MUON->SetNsec(chamber-1,2); |
631 | // |
632 | AliMUONsegmentationV04 *seg71=new AliMUONsegmentationV04; |
633 | seg71->SetPADSIZ(10.,0.5); |
634 | seg71->SetDAnod(0.25); |
635 | seg71->SetPadDivision(nseg4); |
636 | MUON->SetSegmentationModel(chamber-1, 1, seg71); |
637 | |
638 | AliMUONsegmentationV05 *seg72=new AliMUONsegmentationV05; |
639 | seg72->SetPADSIZ(1,10); |
640 | seg72->SetDAnod(0.25); |
641 | seg72->SetPadDivision(nseg4); |
642 | MUON->SetSegmentationModel(chamber-1, 2, seg72); |
643 | |
644 | MUON->SetResponseModel(chamber-1, response0); |
645 | |
646 | chamber=8; |
647 | //^^^^^^^^^ |
648 | MUON->SetNsec(chamber-1,2); |
649 | AliMUONsegmentationV04 *seg81=new AliMUONsegmentationV04; |
650 | seg81->SetPADSIZ(10., 0.5); |
651 | seg81->SetPadDivision(nseg4); |
652 | seg81->SetDAnod(0.25); |
653 | MUON->SetSegmentationModel(chamber-1, 1, seg81); |
654 | |
655 | AliMUONsegmentationV05 *seg82=new AliMUONsegmentationV05; |
656 | seg82->SetPADSIZ(1, 10); |
657 | seg82->SetPadDivision(nseg4); |
658 | seg82->SetDAnod(0.25); |
659 | MUON->SetSegmentationModel(chamber-1, 2, seg82); |
660 | |
661 | MUON->SetResponseModel(chamber-1, response0); |
662 | //-------------------------------------------------------- |
663 | // Configuration for Chamber TC9/10 (Station 5) --------- |
664 | //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ |
665 | chamber=9; |
666 | //^^^^^^^^^ |
667 | MUON->SetNsec(chamber-1,2); |
668 | // |
669 | AliMUONsegmentationV04 *seg91=new AliMUONsegmentationV04; |
670 | seg91->SetPADSIZ(10.,0.5); |
671 | seg91->SetDAnod(0.25); |
672 | seg91->SetPadDivision(nseg4); |
673 | MUON->SetSegmentationModel(chamber-1, 1, seg91); |
674 | |
675 | AliMUONsegmentationV05 *seg92=new AliMUONsegmentationV05; |
676 | seg92->SetPADSIZ(1,10); |
677 | seg92->SetDAnod(0.25); |
678 | seg92->SetPadDivision(nseg4); |
679 | |
680 | MUON->SetSegmentationModel(chamber-1, 2, seg92); |
681 | |
682 | MUON->SetResponseModel(chamber-1, response0); |
683 | |
684 | chamber=10; |
685 | //^^^^^^^^^ |
686 | MUON->SetNsec(chamber-1,2); |
687 | AliMUONsegmentationV04 *seg101=new AliMUONsegmentationV04; |
688 | seg101->SetPADSIZ(10., 0.5); |
689 | seg101->SetPadDivision(nseg4); |
690 | seg101->SetDAnod(0.25); |
691 | MUON->SetSegmentationModel(chamber-1, 1, seg101); |
692 | |
693 | AliMUONsegmentationV05 *seg102=new AliMUONsegmentationV05; |
694 | seg102->SetPADSIZ(1,10); |
695 | seg102->SetPadDivision(nseg4); |
696 | seg102->SetDAnod(0.25); |
697 | MUON->SetSegmentationModel(chamber-1, 2, seg102); |
698 | |
699 | MUON->SetResponseModel(chamber-1, response0); |
700 | //-------------------------------------------------------- |
701 | // Configuration for Trigger staions --------------------- |
702 | // (not yet used/implemented) ---------------------------- |
703 | //^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^ |
704 | |
705 | chamber=11; |
706 | MUON->SetNsec(chamber-1,1); |
707 | AliMUONsegmentationV0 *seg1112=new AliMUONsegmentationV0; |
708 | seg1112->SetDAnod(0.51/3.); |
709 | |
710 | MUON->SetSegmentationModel(chamber-1, 1, seg1112); |
711 | MUON->SetResponseModel(chamber-1, response0); |
712 | |
713 | chamber=12; |
714 | MUON->SetNsec(chamber-1,1); |
715 | MUON->SetSegmentationModel(chamber-1, 1, seg1112); |
716 | MUON->SetResponseModel(chamber-1, response0); |
717 | // |
718 | // Trigger Station 1 |
719 | station=6; |
720 | MUON->SetPADSIZ(station, 1, 0.75, 0.5); |
721 | |
722 | chamber=13; |
723 | MUON->SetNsec(chamber-1,1); |
724 | AliMUONsegmentationV0 *seg1314=new AliMUONsegmentationV0; |
725 | seg1314->SetDAnod(0.51/3.); |
726 | |
727 | MUON->SetSegmentationModel(chamber-1, 1, seg1314); |
728 | MUON->SetResponseModel(chamber-1, response0); |
729 | |
730 | chamber=14; |
731 | MUON->SetNsec(chamber-1,1); |
732 | MUON->SetSegmentationModel(chamber-1, 1, seg1314); |
733 | MUON->SetResponseModel(chamber-1, response0); |
734 | // |
735 | // Trigger Station 2 |
736 | station=7; |
737 | MUON->SetPADSIZ(station, 1, 0.75, 0.5); |
738 | } |
739 | |
740 | if(iPHOS) { |
916c29ab |
741 | AliPHOS *PHOS = new AliPHOSv1("PHOS","normal PHOS"); |
742 | // * PHOSflags: YES: X<>0 NO: X=0 |
743 | // * PHOSflags(1) : -----X Create branch for TObjArray of AliPHOSCradle |
744 | // * ----X- Create file (ftn03 on HP-UX) with list of SHAKER particles (7Mb/event) |
745 | // * |
746 | PHOS->SetFlags(000001); |
747 | PHOS->SetRadius(460); //Distance from beam to PHOS crystals. |
748 | // (crystal_side_size,crystal_length,wrap_thikness,air_thikness,PIN_size,PIN length) |
749 | PHOS->SetCell(2.2, 18., 0.01, 0.01, 1., 0.1); |
8dfe31df |
750 | PHOS->SetCradleSize(48, 90, 4); // Nz (along beam), Nphi, Ncradles |
916c29ab |
751 | PHOS->SetCradleA(0); //Angle between Cradles |
916c29ab |
752 | // * =============== |
753 | // * PHOS extra parameters (contact Maxim Volkov volkov@mail.cern.ch) |
754 | // * 1. STE_THICK Steel cover thickness |
755 | // * 2. SUP_Y Crystal support height |
756 | // * 3. FTIU_THICK Thermo Insulating outer cover Upper plate thickness |
757 | // * 4. UFP_Y Upper Polystyrene Foam plate thickness |
758 | // * 5. TCB_THICK Thermo insulating Crystal Block wall thickness |
759 | // * 6. UCP_Y Upper Cooling Plate thickness |
760 | // * 7. ASP_Y Al Support Plate thickness |
761 | // * 8. TIP_Y Lower Thermo Insulating Plate thickness |
762 | // * 9. TXP_Y Lower Textolit Plate thickness |
763 | PHOS->SetExtra(0.001, 6.95, 4., 5., 2., 0.06, 10., 3., 1.); |
764 | PHOS->SetTextolitWall(209., 71., 250.); //Textolit Wall box dimentions |
765 | PHOS->SetInnerAir(206., 66., 244.); //Inner AIR volume dimensions |
766 | // * =============================== |
767 | // * 1. FTI_X Foam Thermo Insulating outer cover dimensions |
768 | // * 2. FTI_Y ==//== |
769 | // * 3. FTI_Z ==//== |
770 | // * 4. FTI_R Distance from IP to Foam Thermo Insulating top plate |
771 | PHOS->SetFoam(214.6, 80., 260., 467.); |
772 | // ================================= |
773 | // ******************************************************************************* |
774 | // * KINE 700 - SHAKER generator |
775 | // * KINE 700 x y z NDNDY YLIM PTLIM ChargeFlag |
776 | // * JWEAK=0 |
777 | // * JPI0=JETA=1 |
778 | // * JPIC=JPRO=JKAC=JKA0=JRHO=JOME=JPHI=JPSI=JDRY=ChargeFlag |
779 | // * Int_t JWEI; // Unweighted generation |
780 | // * Int_t NDNDY; // Density of charged particles |
781 | // * Float_t YLIM; // Rapidity Limit |
782 | // * Float_t PTLIM; // Pt limit in GeV/c |
783 | // * Int_t JWEAK; // Disable weak decays |
784 | // * Int_t JPI0; // pi0 generation |
785 | // * Int_t JETA; // eta generation |
786 | // * Int_t JPIC; // pi+/- generation |
787 | // * Int_t JPRO; // proton generation |
788 | // * Int_t JKAC; // K+/- generation |
789 | // * Int_t JKA0; // K0 generation |
790 | // * Int_t JRHO; // rho generation |
791 | // * Int_t JOME; // omega generation |
792 | // * Int_t JPHI; // phi generation |
793 | // * Int_t JPSI; // J/psi generation |
794 | // * Int_t JDRY; // Drell-Yan generation |
795 | // * KINE 700 5. 175. 0. 800. 1.5 5. 1. |
796 | // ******************************************************************************* |
797 | } |
798 | |
8dfe31df |
799 | if(iCPV) { |
800 | //=================== CPV parameters ============================ |
801 | |
802 | printf ("CPV in initializing\n"); |
803 | AliCPV *CPV = new AliCPVv0("CPV","normal CPV"); |
804 | } |
805 | |
916c29ab |
806 | if(iPMD) { |
807 | //=================== PMD parameters ============================ |
808 | |
809 | AliPMD *PMD = new AliPMDv0("PMD","normal PMD"); |
810 | PMD->SetPAR(1., 1., 0.8, 0.02); |
811 | PMD->SetIN(6., 18., -580., 27., 27.); |
812 | PMD->SetGEO(0.0, 0.2, 4.); |
813 | PMD->SetPadSize(0.8, 1.0, 1.0, 1.5); |
814 | |
815 | } |
816 | |
b422f318 |
817 | if(iSTART) { |
818 | //=================== START parameters ============================ |
819 | AliSTART *START = new AliSTARTv0("START","START Detector"); |
820 | } |
821 | |
916c29ab |
822 | } |