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Revision 3.2 - (hide annotations) (download)
Thu Dec 5 10:17:42 2002 UTC (22 years ago) by pamela
Branch: MAIN
CVS Tags: v3r1
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Update CAS and CALO geometries and positions. Makefile updated as well

1 cafagna 3.1 #
2 pamela 3.2 # $Id: v_100.txt,v 3.1.1.1 2002/07/11 16:01:59 cafagna Exp $
3     #
4     # $Log: v_100.txt,v $
5     # Revision 3.1.1.1 2002/07/11 16:01:59 cafagna
6     # First GPAMELA release on CVS
7 cafagna 3.1 #
8     #
9     #CMZ : 3.00/00 11/02/2002 20.05.23 by Unknown
10     #CMZ : 2.03/00 06/11/2000 02.14.56 by Francesco Cafagna
11     #CMZ : 2.02/00 12/10/2000 19.22.54 by Francesco Cafagna
12     #CMZ : 2.01/01 05/04/2000 14.37.24 by Marialuigia Ambriola
13     #CMZU: 2.01/00 05/04/2000 09.51.04 by Unknown
14     #CMZ : 2.00/00 03/03/2000 15.22.27 by Francesco Cafagna
15     #CMZ : 1.02/00 15/02/2000 10.19.51 by Francesco Cafagna
16     #CMZ : 1.01/00 23/05/96 16.59.29 by Francesco Cafagna
17     #CMZ : 1.00/03 30/04/96 12.23.59 by Francesco Cafagna
18     #CMZ : 1.00/02 05/04/96 15.31.25 by Francesco Cafagna
19     #CMZ : 1.00/01 28/11/95 18.51.23 by Francesco Cafagna
20     #-- Author : Francesco Cafagna 28/11/95
21 pamela 3.2
22     4 November 2002, Bari
23    
24     CAS detectors distances modified
25    
26     The distances between the CAS detectors has been modified based on the
27     latest CAD drawings.
28    
29     2 November 2002, Bari
30    
31     CALORIMETER geometry upgrade
32    
33     The volumes CAPD and CAAD have been taken off from the calorimeter.
34     In addition the logical tree has been slightly changed to make the shifts of
35     the silicon planes into the calorimeter box easier, i.e. the CAPL volume,
36     which was made of the CASI, CAKP, CAGL, C10C and CAKA volumes, has
37     been split up in the volumes CANS and CAPL. Now CANS is made of the CAKP,
38     CAGL, C10C and CAKA volumes while CAPL contains the CASI volume, that has to
39     be shifted as a function of the vertical position in the calorimeter. Also the
40     dimensions of some volumes have been upgraded, including the external ones:
41     CALB and CALS. CALS is an aluminum box of dimensions: 48.4*48.4*21.278 cm^3,
42     having side-walls 1 cm thick and a bottom of 1 mm. The real box is more
43     complicated and the configuration of the bottom should be upgraded if we want
44     a reliable description of the event in the S4 scintillator.
45    
46     22 October 2002, Stockholm
47    
48     ANTICOINC. GEOMETRY UPGRADE
49    
50     The AC geometry has been updated. The top AC scintillator (CAT) now
51     consists of 1 single sheet of scintillator with a hole in the middle
52     and the correct geometry(*). The side AC scintillators (CAS) also
53     have the correct shape. The AC scintillators are placed in aluminum
54     boxes with plastic rims inside. For these rims a 'new' material, PLAS,
55     was defined. PLAS has all the characteristics of SCIN but is
56     non-sensitive. No PMTs or PMT holders have been modelled.
57     (*)-The interfaces on CAT where the PMTs should be located are
58     slightly different from the real case.
59    
60 cafagna 3.1 11 February 2002, Bari
61    
62     MACRO CLEAN-UP
63    
64     Before the new release a bit of macro clean-up. Both GPEXE and
65     GPXINT in the $KUMACS directory have been cleaned. Some commented
66     out code has been deleted and the g77 option flags and libraries
67     updated.
68    
69     LIBGARFIELD-7.A ADDED TO THE MACRO
70    
71     The libgarfield-7.a library has been permanently added to the GPEXE
72     and GPXINT macro. So the user doesn't need to pass it through the
73     uslib macro flag.
74    
75     8 February 2002, Bari
76    
77     SUBROUTINE cross.f renamed crossgar.f in the GARFIELD library.
78     To avoid a bad interference between GEANT and GARFIELD due
79     to the same name adopted for two different functions, one in
80     GEANT and the other in GARFIELD, the function cross.f, in the
81     GARFIELD library, named libgarfield-7.a, has been renamed
82     crossgar.f.
83    
84     5 February 2002, Bari
85    
86     HIT and CWN revised for TRD
87     The TRD HIT structure has been extended to include the infos about TR
88     process. The TRD structure is now:
89     # DATA (CHTRD(I),I=1,12)/'XIN ','YIN ','ZIN ','XOUT','YOUT','ZOUT',
90     # + 'EREL','PATH','IPAR','P0 ','ETR ','NTR '/
91     #+SELF,IF=GARFIELD
92     # DATA CHTRD(13),CHTRD(14)/'EGAR','NGAR'/
93     #+SELF.
94     where ETR and NTR are respectively the energy and the number of photons
95     converted in the gas mixture in the straw tube for TR, EREL is now the
96     energy released in the straw for ionization by GEANT, which must be zero
97     when GARFIELD is on.
98     The TRD CWN structure has been modified also:
99     -ELOSTRD is the energy released for ionization by GEANT (EREL in the HIT
100     structure),
101     -ETRTRD is the energy released for TR (ETR in the HIT structure),
102     -NTRTRD is the number of TR photons (NTR in the HIT structure),
103     -ERELTRD is now the the total energy released in a straw (the sum of
104     EGARTRD and ETRTRD).
105    
106     TRANSITION RADIATION PROCESS IMPLEMENTED IN THE GPAMELA CODE
107     A new subroutine, GPXTR (called by GUSTEP), has been written to
108     generate the transition radiation (TR) spectrum in the TRD carbon fibers
109     radiators for charged tracks with a Lorentz factor greater than 100
110     (standard GEANT3.21 does not). The emission of TR spectrum, depending
111     on the atomic number and the velocity of the particle and the length of
112     the track in the radiator, is simulated following analytical formulas
113     (see for example M.L. Cherry et al., Phys. Rev. D10 (1974), 3594).
114     Once a TR spectrum is produced, it is partially absorbed by dead
115     material (radiator itself and kapton walls of the straw tubes) before
116     reaching the Xe-C02 mixture inside the straw tubes where it is partially
117     absorbed and partially transmitted. The absorbed spectrum in Xe-C02
118     is finally converted in a suitable number of TR photons of suitable energy.
119     The model of TR emission is referred to a regular radiator. Also, but not
120     only for this reason, this model of simulation was carefully tuned with TRD
121     test-beam measurements (PS and SPS at CERN).
122    
123     ZEBRA MEMORY PROBLEM SOLVED IN THE JVERTX DATA STRUCTURE
124     To record the initial kinematic of a track and save it till the end
125     of the event, the elements of the vector IFLGK(IG) were put to 1 in
126     GUSTEP, where IG is the particle number in the current step. In this
127     way, the vertixes of all particles, except neutrinos, were stored in
128     the permanent data structure JVERTEX. Due to the limit in the ZEBRA
129     structural links, fixed to 64K links, the data structure JVERTEX was
130     easily exceeded in memory giving a fatal error with a crash of the
131     GPAMELA program. For this reason the IFLGK(IG) is now put to 0 for
132     each secondary particle and the particle is stored only on the
133     temporary stack JSTAK to be transported.
134    
135     14 may 2001, Bari
136    
137     SCALE FACTOR TO PACK THE HIT VALUE OF MOMENTUM IN TRD INCREASED
138     The FHTRD(10) scale factor applied before packing the hit value of
139     momentum in TRD has been increased from 1.E3 to 1.E7 in the GPDHIT
140     data common. With this value an accuracy of 1/10 of keV can be estimated.
141    
142     9 may 2001, Bari
143    
144     IONIZATION IN TRD'S STRAW TUBES SWITCHED OFF IN GEANT
145     The ILOSS,(IMULS) and IDRAY variables have been set to zero in the
146     GPXE routine (variable LOSSXE, DRAYXE (and MULSXE)). In this way the
147     energy loss for ionization in the straw tubes is generated only from
148     GARFIELD. To store the energy loss by GARFIELD in the hit structure
149     of TRD (routine GPUTRD), the IMEC control flag, which controls the
150     presence of the ionization by GEANT, has been eliminate in GPUTRD.
151     To avoid to store photons in the hit structure of the TRD it has
152     been added a control on the charge of the particle.
153    
154     TRACK COMMAND CALLED BY GPGARIN
155     The track command of GARFIELD is now initialized in GPGARIN and
156     passed by user with the GAFI key.
157     With this command the options for the cluster generation can be set.
158    
159     TRD IONIZATION ENERGY LOSS GENERATED NOW BY GARFIELD
160     To generate the ionization in the TRD straw tubes the HEED program
161     interfaced by GARFIELD is used (GEANT does not simulate the ionization
162     in thin layer and in the gas, correctly). The idea is that GEANT tracks
163     the particle in the gas and then passes the coordinates, translated in
164     the DRS, to GARFIELD. The GARFIELD subroutines are called by GPUTRD.
165     The energy loss and the number of clusters in TRD are stored in the
166     variables EGARTRD and NGARTRD of the CWN-tplu.
167    
168     1 May 2001, Bari
169    
170     GPGARIN CALLED BY UGINIT
171     The call to GPGARIN has been added in UGINIT
172    
173     NEW KEY ADDED: GAFI
174    
175     A new key has been added to pass the file name and logical unit to
176     be used by GARFIELD in reading in the &GAS and &CELL definition. To
177     implement the key as usual a 21 words long integer vector has been
178     added to $GPKEY and init in $GPDKEY: NGARFILE.
179    
180     GAFI keyword has been defined in FFKEY routine.
181    
182     As usual in FFUSER routine an action has been defined in case of
183     the *GAFI call. Simply the first word of NGARFILE is passed into
184     LUGAR variable and the remaining words converted to carachter into
185     CHGAR variable. Both LUGAR and CHGAR have been added to the GPUNIT
186     common.
187    
188     GARFIELD COMMONS ADDED: $XINPUT, $INPUT
189     These sequences has been added into the GPGAR patch.
190    
191     GARFIELD FILE READOUT ADDED
192     GPGAIN has been modified to add the file readout. The file logical
193     unit and name are passed to the GARFIELD routine DSNOPN to open
194     it. The LUN variable in the INPUT common is set to the LUGAR value
195     as well.
196    
197     Both GARFIELD, $INPUT, and GPAMELA, $GPUNIT, sequences containing
198     the above variables have been added to the deck.
199    
200     NEW FLAG ADDED: GARFIELD
201     To select all the GARFIELD code the flag GARFIELD must be used !
202    
203     GPEXE AND GPXINT KUMACS UPDATED
204     To enable the use of and user flag and libraries both kumacs have
205     been updated adding the USFLAG and USLIB input variables.
206    
207     ALL GARFIELD COMMONS COPIED to GPGAR
208     All the commons (sequences) from //garfield-7/commons have been
209     copied to the gPGAR patchy.
210    
211     DIMENSIONS SEQUENCE ADDED TO GPGARIN
212     To avoid confusions in the PARAMETER settings, i.s. max value of
213     something, the common DIMENSIONS has been added.
214    
215     30 April 2001, Bari
216    
217     NEW PATCH CREATED: GPGAR
218     A new Patch has been created in the main file: GPGAR. This patch
219     should contain all the subroutines (deck) related to the
220     GPAMELA-GARFIELD (HEED) interface.
221    
222     NEW DECK ADDED: GPGAIN
223     This subroutine (deck) should contain the GARFIELD initialization
224     and the readout of the init file. This file has the same structure
225     of the "macro" file used by garfield.
226     This routine has been adapted from the original GARFIELD main.
227     Several sections (Headers in the GARFIELD jargon) have been skipped.
228    
229     NEW SEQUENCES ADDED: $XPRINTPLOT,$PRINTPLOT
230    
231     These are used ($PRINTPLOT mainly) by GPGAIN. These have been added
232     to the GPGAR patch for the moment. Will see later if an "ad hoc"
233     patch should be created for the GARFIELD commons.
234    
235     6 april 2001, Bari
236    
237     A new common block, GPTOTR, has been created to store the Transition
238     Radiation (TR) informations useful for the user. The variables of this
239     common block are initialized to zero in GPUTRE, filled in the subroutine
240     GPUSTEP and declared in GPHBK for booking in the Ntuple.
241    
242     The definition of the ITRSO detector has been changed in the GPSED routine:
243     NVTRD has been forced to 2 for compatibility with GPDTRD.
244    
245     3 april 2001, Bari
246    
247    
248     28 march 2001, Bari
249    
250     ITRSO has been defined as a sensitive detector in GSTMED routine and it has
251     been assigned as a detector in the JSET data structure by the GSDET routine.
252     It is because the information of the path in the kapton is needed for the
253     the transition radiation simulation. The hit parameters for this
254     detector are not defined and the hit structure is not filled by the routine
255     GPUTRD because it is not of physical interest.
256    
257     20 march 2001, Bari
258    
259     BUG FOUND: ISVOL, FIELDM, TMAXFD, STEMAX, EPSIL, STMIN were declared in
260     two different common blocks: GPMED and GCTMED. These variables have been
261     respectively renamed FIELDMGP, TMAXFDGP, STEMAXGP, EPSILGP, STMINGP in the
262     GPMED common block.
263    
264     23 December 2000, Bari
265    
266     BUG FOUND: Radiation length for nitrogen had the value for nitrogen
267     liquid instead of the nitrogen gas. It has been changed for the
268     nitrogen gas.
269    
270     14 November 2000, Trieste
271    
272     KAOL volume name changed into CAKA
273     GLUE volume name changed into CAGL
274     KAPT volume name changed into CAKP
275     All the subroutines referring to these volumes have been changed
276     accordingly. Now all the calorimeter's name are in the gpamela standard.
277    
278     BUG FOUND: volume CG10C had a name longer than 4 letters and was confused
279     with volume CG10; fixed, CG10C volume name changed into C10C and variable
280     CG10C into C10C, all the subroutines referring to this volume and this
281     variable have been changed accordingly.
282    
283     BUG FOUND: with the data card "SPTM 'W2 '" enabled gpamela crash due memory
284     fault in the case of electrons with energy greater than ~15 GeV.
285     NOT ALREADY FIXED!!! A temporary solution is to disable "SPTM 'W2 '".
286    
287     ANTICOINCIDENCE UPDATED.
288     Dimension of CAS and dimension and shape of CAT changed following
289     Jens indication.
290     Added the aluminum anti-coincidence cradles.
291    
292     NEW VOLUMES ADDED: CSSX, CSSY, CATH, CATF, CATO, CATP.
293     To take account of the cradles and of the new shape of CAT.
294     To allow the correct disposition of CAS two variable (CASXD,CASYD)
295     has been added.
296     The sequences: $GPGEO and $GPDGEO, as well as the routines:
297     GPCASV, GPCATV and GPDAT has been modified to take account of changement.
298     CAS quote is now different from the SPEC one: ZCAS=51.25 (ZSPEC=50.6)
299    
300     6 November 2000, Trieste
301    
302     NEW MACRO ADDED: GPCONDOR.KUMAC
303     The macro condor.kumac has been added to compile a non interactive
304     version of gpamela to be run under condor.
305    
306     SPTM for G10C upgraded.
307     Now it is important to enable ALWAYS the SPTM 'CE ' 'SICA' 'G10C' 'W2 '
308     to obtain the correct data from calorimeter.
309    
310     6 November 2000, LNGS
311     ::::::::> VERSION NUMBER UPDATED <::::::::
312     The version number has been updated to: 2.03/00.
313    
314     NEW DATA CARDS ADDED: CAS, CAT, TOF, TRD, SPE, CAL, S4
315     To allow the simulation of a detector geometry without the physics,
316     i.e. hits, and/or the n-tple, new data cards have been added: CAS,
317     CAT, TOF, TRD, SPE, CAL, S4. All of them work in the same way. The
318     user can define NVOL, NPHY, NHBK for each card. These user options
319     perform:
320     - NVOL, similar to the NDET actions, the whole detector is NOT
321     simulated
322     - NPHY, just the physics is not simulated. SET, DETECTOR
323     and HITS definitions are skipped and the n-tple as well.
324     - NHBK, just the n-tple is disabled
325    
326     The NVOL option does automatically set the other two, while the NPHY
327     option does set the NHBK one. The old NDET card is kept for
328     compatibility but does still have the priority on these cards,
329     i.e. if the user does requires a detector cancellation via NDET the
330     action is considered as the NVOL option and the card content is not
331     even checked. For example:
332     NDET 'TOF '
333     TOF 'NHBK'
334     Is considered as a request for TOF cancellation, the program does
335     not disable just the TOF n-tple.
336    
337     As usual the $GPDKEY, $GPKEY, GPFFR and GPDAT banks and routines
338     have been modified. A new logical variable for each detector has
339     been introduced to control the NPHY action: PCAS, PCAT, PTOF, PTRD,
340     PSPE, PCAL, PS4. These variables are now controlling the definition
341     of SETS, DETECTORS and HITS into GPSED and GPHIT routines. With
342     these also the GUDIGI has been modified and the detector
343     digitization is performed if the Pxxx variable is TRUE for each
344     detector.
345    
346     NOTE: S4 is not jet separated from the TOF !!!!!! So the TOF data
347     card does eliminate S4. S4 data card does nothing
348    
349     30 October 2000, Trieste
350    
351     CHANGED MISURE UNIT FOR CALORIMETER ENERGY
352     The energy is now stored in MIP in the entuple. 1 MIP = 108.5200 KeV obtained
353     from the Landau distribution fo the energy in the strips in the case of a
354     run of muons of 40 GeV.
355     To take account of this change $GPUCAL and $GPDHIT has been modified.
356     IMPORTANT: to obtain the correct energy value for the calorimeter the
357     Special Tracking Parameter "SICA" MUST be enabled!!
358    
359     12 October 2000, LNGS
360     ::::::::> VERSION NUMBER UPDATED <::::::::
361     The version number has been updated to: 2.02/00.
362    
363     NEW VOLUMES ADDED: CAPD, CAAD
364     Actually the calorimeter last plane has been substituted by the
365     read-out cards. So the plane will be replaced by two aluminum
366     support for the g10 electronics cards. So to account for this
367     modification two new volumes have been created: CAPD, CAAD. CAPD is
368     exactly the same as CAPL but it doesn't contain the glue, kapton and
369     silicon sandwich. CAAD is the absorber, CAAB, but with the tungsten
370     replaced by the aluminum.
371    
372     To allow changes in the number of dummy planes the variable NCAPLD
373     has been added, it has the same function of the NCAPL one. So a
374     general loop on the number of this dummy planes has been implemented
375     in GPCALV to position them into CALB.
376    
377     The sequences: $GPGEO and $GPDGEO, as well as the routines: GPDAT,
378     GPCALV, has been modified to account for the dimension calculation,
379     the definition and positioning of these new volumes respectively.
380    
381     NEW DATA CARD ADDED: NCPL
382     To exclude from the simulation any calorimeter silicon plane a new
383     data card has been added: NCPL. This is an array of 44 integer, one
384     for each calorimeter plane. The user can enter the plane number
385     corresponding to the excluded one in any of this 44
386     location. Please note that the original numbering will be kept for
387     compatibility, i.e. the remaining plane will be numbered as there
388     was the full calorimeter simulation. The correspondence between the
389     random 44 data card and the plane to be excluded is done in the
390     GPDAT routine.
391     The sequences $GPKEY and $GPDKEY has been modified, routines:
392     GPDAT, GPFFR, GPCALV as well.
393    
394     NEW DATA CARD ADDED: NCSI
395     To exclude from the simulation any of the 9 silicon detector in any
396     silicon calorimeter plane a new data card has been added: NCSI. It
397     works like the NCPL but having to specify 9 integer instead of
398     44. Also in this case the original numbering in the plane is
399     preserved. The same routines and sequences as for NCPL have been
400     modified
401    
402     NEW DATA CARD ADDED: NCAB
403     To exclude from the simulation any of the 22 calorimeter absorber
404     planes a new data card has been added: NCAB. It works like the
405     previous two but using 22 integers. The original numbering is
406     preserved as well. The same routines and sequences as for NCPL and
407     NCSI have been modified.
408    
409     11 October 2000, LNGS
410    
411     Bug found in $GPMAT
412     The new material number for the detector were declared but not
413     included in the common. Fixed.
414    
415     GPEXE kumac updated
416     Has been dofied to account for the ALPHA UNIX case.
417     libcrypt library has been disabled and the f77 compiler has been used as
418     default one.
419    
420     10 October 2000, LNGS
421    
422     GPXINT kumac updated
423     Some modification done in GPXINT. It does now consider the case ALPHA
424     UNIX and define f77 as compiler and does not use the libcrypt.
425    
426     9 October 2000, Trieste
427    
428     NEW VOLUMES ADDED: KAOL, KAPT, GLUE
429     An upgrade of the calorimeter structure is done; it's introduced the fine
430     structure of the plane with Kaolinita (an insulator), Kapton and Glue.
431     So to account for this modification three new volumes have been created:
432     CAKA, CAKP and CAGL.
433    
434     NEW MIXTURE ADDED: W2, CERA, G10C
435     W2 is the correct tungsten/nichel/copper mixture that compose an absorber
436     plane of the calorimeter
437     CERA is Kaolinite, an electric insulator for the calorimeter
438     G10C is the mixture of the electronic cards of the calorimeter; this
439     mixture is used instead of G10 in the old volume CG10.
440    
441     To implement these cards the following routines and commons have
442     been modified: GPMAT, GPMED.
443    
444     3 NEW DATA CARDS added to tag tracking parameters of these new materials
445    
446     With these cards is now possible to set any of the five tracking
447     parameters: TMAXFD, STEMAX, DEEMAX, EPSIL and STMIN; for each of
448     the new 3 tracking media. Every data card is a real vector of 5
449     elements, that store respectively TMAXFD, STEMAX, DEEMAX, EPSIL and
450     STMIN. These elements are passed to the GSTMED routine call in the
451     GPMED procedure.
452    
453     To implement these cards the following routines and commons have
454     been modified: $GPKEY, $GPDKEY, GPDAT, GPMED, GPFFR. Each data card
455     value is initialized to -1111. in $GPDKEY. These cards are checked
456     for selection in GPMED. If these cards have been set these values
457     override the ones set by the global data cards: TMAX, STMA, DEEM,
458     EPSI, STMI; or the defaults set in GPDAT.
459    
460     CHANGED DIMENSIONS OF VOLUMES FOR CALORIMETER
461     The following routines and data set are changed to take account of the
462     correct dimensions of the calorimeter: GPGEO, GPCALV, GPDAT.
463    
464     6 April 2000, Bari
465     ::::::::> VERSION NUMBER UPDATED <::::::::
466     The version number has been updated to: 2.01/01.
467    
468     5 April 2000, Bari
469     ::::::::> VERSION NUMBER UPDATED <::::::::
470     The version number has been set to: 2.01/00, updating all the decks.
471    
472     5 April 2000, Bari
473     14 NEW DATA CARDS added to tag tracking parameters of each material.
474    
475     With these cards is now possible to set any of the five tracking
476     parameters: TMAXFD, STEMAX, DEEMAX, EPSIL and STMIN; for each of
477     the fourteen tracking media. Every data card is a real vector of 5
478     elements, that store respectively TMAXFD, STEMAX, DEEMAX, EPSIL and
479     STMIN. These elements are passed to the GSTMED routine call in the
480     GPMED procedure.
481    
482     To implement these cards the following routines and commons have
483     been modified: $GPKEY, $GPDKEY, GPDAT, GPMED, GPFFR. Each data card
484     value is initialized to -1111. in $GPDKEY. These cards are checked
485     for selection in GPMED. If these cards have been set these values
486     override the ones set by the global data cards: TMAX, STMA, DEEM,
487     EPSI, STMI; or the defaults set in GPDAT.
488    
489    
490     6 March 2000, Bari
491     PAW MEMORY incremented in GPCDES:
492     The paw memory has been set to 36.65E6 words, because of the
493     incremented maximum number of hits in the TRD (from 100 to 200).
494    
495     TRD hits increased in GPCDES:
496     The maximum number of hits has been set equal to 200 instead of 100.
497     Like calorimeter, for TRD is no more necessary to modify both the
498     maximum number of hits, in sequence $GPPHIT, and the HBNAME call
499     in GPHBK routine. The CWN block is now booked directly using the
500     maximum number of hit found in the $GPPHIT parameters. If the number
501     of hits is greater than 200, the GPDTRD sets the last hit equal to 201
502     and exit. In this way all the CWN variables corresponding to this hit
503     are null for the TRD.
504    
505     3 March 2000, Bari
506     GPXINT macro modified
507     This macro now save gpamela[grap].f code file instead of a simple
508     gpamela.f . This is to avoid conflicts with the GPEXE macro that
509     create the executable to be used in batch mode. Please note that
510     [grap] is tipically, 99.999% of the time, set to X11.
511    
512     1 March 2000, Bari
513     New DATA CARDS PHI and THETA added:
514     These data cards have been introduced to select a range for
515     the zenith (THETA) and the azimuth (PHI).
516     With these cards the user can override the default values: [0,90]
517     and [0.360] degree, respectively for THETA and PHI, choosing its own
518     maximum and minimum values.
519     If these values are equal the generation is performed at a fixed
520     angle for all the events.
521    
522     No more flat generation on cos**2(THETA)
523     The flat generation on cos**2(THETA) has been deleted in GUKINE.
524    
525     29 feb 2000, Bari
526     HBOOK Filename corrected.
527     The HBOOK user filename, passed via *HBFI card, was
528     incorrect. Unwanted character were added at the end of the
529     string. It has been fixed initializing the data card variable to
530     the null string.
531    
532     MEMORY incremented in GPCDES:
533     The memory of paw and geant have been increased to process
534     electrons of 200 GeV, both for interactive and not-interactive
535     case. In particular, the geant memory is set now to 3500000 words
536     and the paw memory to 35.42E6 words. This increment is taking into
537     account the augmented number of hits for the calorimeter (It is now
538     possible to store an hit for each of the 4224 calorimeter
539     channels).
540    
541     Calorimeter hits increased in GPCDES:
542     To store all hits produced in the calorimeter, its maximum number
543     of hits has been set equal to its number of channels (4224). For
544     this detector is no more necessary to modify both the maximum
545     number of hits, in sequence $GPPHIT, and the HBNAME call in GPHBK
546     routine. The CWN block is now booked directly using the maximum
547     number of hit found in the $GPPHIT parameters.
548    
549     Insufficient number of bits for variable CASI in GPSED:
550     The number of bits in which to pack the copy number of volume CASI is
551     now 4 instead of 3.
552    
553     S4 hit structure modified.
554     Because of its position S4 was overwhelmed by particles produced in
555     the calorimeter. This caused an abnormal use of memory, for this
556     detector, having to store a number of hits larger than the
557     maximum. Now S4 hits are stored in a calorimeter-like fashion using
558     the GSCHIT routine instead of the GSAHIT one. This forces the
559     number of hit to one and sums up just the energy released into the
560     scintillator. For this purpose also the position of the energy
561     released variable has been changed placing it at the end of the hit
562     record.
563     24 FEB 2000, BARI
564     Paolo "bachetto" fixed
565     In GPDTRD the "filling" index INDEX has been substituted with I.
566    
567     IRUN and IEVNT increment
568     These variables were not incremented. Now they are set initially in
569     GPDAT; initial value is the one set by RUNG GEANT general data
570     card. IEVNT is then incremented into GUTREV at the beginning of
571     each new event. IRUN is left untouched.
572    
573     23 Feb 2000, Bari
574     New data card GEN enabled.
575     Data card GEN was implemented but not enabled ..... (See 20
576     Mar. 1997 notes) It has been enabled now setting XYZGEN vector to
577     -1111 in the $GPDKEY data declaration sequence for $GPKEY
578     common. In GPDAT it will check if these values have been
579     overwritten by the GEN data card and take appropriate action in
580     GUKINE.
581    
582     15 Feb 2000, Bari
583     ::::::::> VERSION NUMBER UPDATED <::::::::
584     The version number has been updated in its release part: 1.02/00, is the
585     actual version.
586    
587     11 Feb 2000, Bari
588     Changes in TRD geometry. GPTRDV modified.
589    
590     1. Now TRSO is inside TRSI. For this, the external radius of
591     TRSI has been set equal to the external radius of TRSO. Data
592     assignment in GPGEO modified.
593     2. Each TRBS volume (the Trd Boxes for Sraw Tubes) has been shifted
594     to avoid dead spaces between two adjacent modules.
595     For this, the two lateral TRBS boxes of the planes with 3 modules have
596     been shifted of one TRSI radius, the central boxes of the planes with
597     4 modules have been shifted of an half radius while the lateral
598     boxes have been shifted of 3/2 radius.
599    
600     Subroutine GSCHIT modified in GPUCAL
601     There was an error. All the quantities were cumulatively summed up
602     instead of just the energy. This caused a missalignment of the hits.
603     Now just the energy is summed up.
604    
605     19 Gen. 1999, Bari
606     Paolo "bachetto" fixed
607     In GPDSPE the "filling" index INDEX has been substituted with I.
608     31 Dec. 1999, Barletta
609     TRD dimensions reviewed
610     The angular pieces have been reviewed. In the actual design they
611     are "L" shaped. Here they are simulated as square piaces 3.5x3.5 cm^2,
612     2mm thick.
613     The TRD virtual box TRDB has been reviewd as well. It is now tall:
614     10 frames plus 11 angular pieces plus one top piece.
615    
616    
617     30 Dec. 1999, Barletta
618     TRD dimensions reviewed
619     Based on the original Aereostudi drawings the TRFR volume dimenions
620     have been reviewd. The frame is 350mm in length, 380mm width, 4mm
621     tick. The frame itself is 35mm width.
622     The 32 straw module as an overall length of 361mm, for placement
623     easiness 360mm has been used.
624     WARNING: The angle piece is .5mm taller than the module!
625     Once again 2cm has been used instead of 2.05mm, for easiness.
626    
627     5 Nov. 1999, LNGS
628     GPHBK Modified
629     The strip number is now 32 instead of 22, the CWN has been modified
630     accordingly on both long an short version.
631    
632     TRD Frames added.
633     Two new volumes added: TRFR, TRFI. TRFR is the carbon fiber frame,
634     TRFI is the internal volume. These frames have been added into the
635     $GPGEO, $GPDGEO definitions and into GPTRDV routine as well.
636    
637     22 Oct. 1999, Bari
638     NEW magnetic field read-out
639     Instead of a raw binary file the magnetic field has been saved into a
640     CWN-tplu stored in a RZ file. This guarantees portability between
641     different OS. In GPDAT the FIELD is read-out from the CWN.
642    
643     CWN booking and filling reviewd.
644     CWN-tplue structure reviewed. All the variable names have been unified
645     and updated accordingly to the new hit structure.
646     The CWN fill has been reviewed as well.
647    
648     HLON Data card introduced.
649     To select a more detailed, let's say verbose, CWN-tple a new
650     card has been introduced. Setting HLON 1, the long version will be
651     selected.
652    
653     PAOLO flag declared OBSOLETE !!!
654     See the next entry.
655    
656     SPE DIGI structure OBSOLETE !!!
657     The spectrometer DIGI structure has been declared obolete by the author.
658     Dr. Papini forced Dr. Cafagna to move all the routines: GPSPEHD and GPSDINI,
659     from the directory GPSPE to the newly created GPOBSOLETE one.
660     The GPDSPE common has been commented out as well.
661    
662     HIT structure reviewed.
663     Hit structure has been reviewed. For all detectors the volume PAME
664     and the detector container have been deleted. So the detector
665     identifier has been reduced by two numbers.
666     Besides the SPE hit structure has been enlarged adding the IPAR
667     hit, storing the particle number.
668     The CALO hit structure has been reduced eliminating the IPA0 and
669     PA0 hits from the structure.
670     All the routines and commons pertaning to the hit structure has
671     been reviewd and updated.
672    
673     21 Oct. 1999, Bari
674     DZSH data card added
675     A new data card DZSH has been added to adjust the height of the external
676     shel : SHEL.
677    
678     NDET flag changed. SPHE instead of SPHI
679     The data card NDET 'SPHI' is now obsolete.
680     The data card NDET 'SPHE' is now used to select spherical or flat
681     top. Using NDET 'SPHE' one automatically delete the spherical top
682     and substituted it with a flat one.
683     TSHE name changed into TFLA
684     TSHE volume has been named into TFLA. All the subroutines
685     referring to this volume have been changed accordingly.
686    
687     TSHI name changed into TSPH
688     TSHI volume has been named into TSPH. All the subroutines
689     referring to this volume have been changed accordingly.
690    
691     SHEI deleted
692     SHEI is no more created neither positioned inside PAMELA.
693     GPGEO has been modified accordingly, besides the dimensions are
694     left into the $GPGEO common.
695    
696     S4 quote changed
697     S4 is now automatically positioned underneath the calorimeter box.
698     ZS4 is calclulated in GPDAT
699    
700     CAS dimensions and positions modified
701     CAS is now a single counter instead of Five.
702     CAS dimensions modified after PAOLO simulation and Tom design. Here
703     are the new dimensions:
704     DATA CASX/15.25,0.55,5*4.6/
705     DATA CASY/0.55,14.75,5*4.6/
706     CAS position inside PAMELA has been modified accordingly in GPGEO.
707    
708     CAT dimension modified
709     CAT dimensions modified after PAOLO simulation and Tom design. Here
710     are the new dimensions:
711     DATA CATB/22.05,21.05,0.55/
712     DATA CATL/15.75,6.675,0.55/
713     DATA CATT/6.3,14.375,0.55/
714     DATA ZCAT/75.75/
715    
716     SC13/4 name modified in SC21/2
717     SC13/4 name have been changed. So all the occurences of SC13/4 string have
718     been changed accordingly. This means that also the name of the
719     volumes, detectos, hits etc. etc. referring to SC13/4 have been changed
720     in SC21/2
721    
722     SC2n name modified in SC3n
723     SC2n name have been changed. So all the occurences of SC2 string have
724     been changed accordingly. This means that also the name of the
725     volumes, detectos, hits etc. etc. referring to SC2n have been changed
726     in SC2n
727     .
728     S14 name modified in S22
729     S14 name have been changed. So all the occurences of S14 string have
730     been changed accordingly. This means that also the name of the
731     volumes, detectos, hits etc. etc. referring to S14 have been changed
732     to S22.
733    
734     S13 name modified in S21
735     S13 name have been changed. So all the occurences of S13 string have
736     been changed accordingly. This means that also the name of the
737     volumes, detectos, hits etc. etc. referring to S13 have been changed
738     to S21.
739    
740     S2n name modified in S3n
741     S2n name have been changed. So all the occurences of S2 string have
742     been changed accordingly. This means that also the name of the
743     volumes, detectos, hits etc. etc. referring to S2n have been changed
744     to S3n.
745    
746     S3 name modified in S4
747     S3 name have been changed. So all the occurences of S3 string have
748     been changed accordingly. This means that also the name of the
749     volumes, detectos, hits etc. etc. referring to S3 have been changed
750     to S4.
751    
752     CALO modified
753     .....
754     $GPDGEO modified
755     Magnet dimensions where wrong !!!!! Internal not bending half
756     dimension is 6.55cm. External not bending half dimension is
757     11.4cm. So now:
758     DATA MGPL/12.,11.4,4.05/
759     DATA MGPI/8.05,6.55,4.05/
760     GPGEO mod.
761     GPGEO has been modified. The TRD doesn't have an external box
762     anymore. So, volume definitions for TRDS & TRDT have been left in
763     GPTRDV but they are no more placed into PAME mother volume.
764     20 Mar. 1997, Bari
765     GPXINT update
766     Using an UNIX machine I have update GPXINT to create executable on a
767     UNIX machine. To be used on alboot I created the WORK kumac.
768    
769     #GPAMELA updated
770     The pilot patchy, *GPAMELA, was updated inserting the GPHYS patchy.
771    
772     GPDTOFx routien deleted
773     The old digitization routine GPDTOFx, x being 'T' 'M' 'B', has been
774     deleted in the patchy GPTOF.
775    
776     CHERENKOV detector deleted
777     All the GPCHE patchy containing CHERENKOV specific code has been deleted.
778     All the other routines containing code specific for the Cherenkov
779     has been updated and the cherenkov code deleted.
780     Please note that the AEROGEL definitio are still in place.
781    
782     NEW GENERATION SURFACE DEFINITION
783     The generation surface is now definited in GPDAT using the S11
784     dimentions. New variables have been added to the GPGEO common: XGEN,
785     YGEN, ZGEN, XDGEN, YDGEN; representing the origin, quote and
786     dimentions of the generation surface.
787    
788     NEW DATA CARD ADDED GEN
789     With this data card the user can pass all the five above mentioned
790     geneeration surface variables.
791    
792     19 Mar. 1997, Bari
793     CASD and NCAS data card gone.
794     This card are no more needed for the calorimeter.
795    
796     GPDAT UPDATE
797     GPDAT has been updated checking the SSTR new data card to look for
798     new DELTA2 parameter passed.
799    
800     CALO user division removed.
801     It's no more possible to choose between a whole silicon plane or
802     smaller block.
803    
804     18 Mar. 1997, Bari
805     New PATCH added GPHYS
806     A new patch has been added GPHYS to store the PHYSICS related routines.
807    
808     GFLUCT routine copied from GEANT code
809     The GFLUCT routine has been copied from the GEANT code. This routine
810     takes care of the energy fluctuations inside each "physics" routine
811     in GEANT.
812    
813     Gaussian straggling added to the GFLUCT routine
814     The gaussian straggling has been adedd to the GFLUVT routine. This
815     routine has been modified adding at the end the Paolo Paini code to
816     calculate the straggling into the silicons detectors. The DELTA2
817     parameters needed for the calculation has been retrived from the
818     JMATE structure.
819    
820     NEW CMZ flag added: NOGFLUCT
821     This new flag select the place in wich the straggling is
822     calculating. The default is into GFLUCT routine, a GEANT routine
823     miodified for us. Using this flag the straggling will be selected
824     into the GPUSPE and GPUCAL routine. This means that is calulated
825     after each step in a given detector.
826    
827     User words added to JMATE structure
828     The variables needed for the gaussian straggling have been added to
829     the Silicon material definition for both calorimeter and tracking.
830    
831     New data card added: SSTR
832     SSTR data card added. This word controls the gaussian straggling in
833     silicon. The first word is the straggling flag, the other two are
834     the DELTA2 for calorimeter and tracker. See $INFORM for details.
835    
836     17 Mar. 1997, Bari
837     GAUSSIAN straggling added to the calorimeter
838     The gaussian straggling after the ionization losses has been adedd
839     to the calorimeter too. Before saving an hit into GPUCAL the
840     gaussian straggling has been added. This depend on the path in the
841     silicon also, the PATH variable is stored entering the volume and
842     the PATH calculated before adding the straggling.
843    
844    
845     Adjusting the DIGI spectrometer structure
846     The gaussian straggling has been added into the GPUSPE routine when
847     the particle is leaving the detector: IACT = 3.
848    
849     15 Mar. 1997, Bari
850     NEW hits for CAS and CAT
851     CAT and CAS hits are now the same as the TOF.
852     TIME and P0 has been added to the hit structure.
853     All the routine involved, GPDCAS and CAT, GPUCAS and CAT, GPHBK and
854     the commons $GPCAS, $GPCAT have been modified, as well.
855    
856    
857    
858     6-7 Mar. 1997, Bari
859    
860     NEW geometry for TRD
861     TRD geometry has been reviewed. There are no more three different
862     sets of straw tube, depending on the lenght, but just one
863     lenght. Besides the box containing the straws and radiator has been
864     changed. Here is the new geometrical tree:
865    
866     MOTHER SUBVOLUME NAME DESCRIPTION
867     TRDS No subvolume TRD external aluminum shell
868     TRDT No subvolume TRD TOP and BOTTOM aluminum cover
869     TRDB TRD Box, internal gas volume
870     TRBS TRd Box for Sraw, contains the 32
871     straws and a radiator "pillow" on
872     top
873     TRRA TRd RAdiator, just one extra plane
874     on top of the TRD straw pyramid
875     TRBD TRSO TRd Straw Out, external mylar straw
876     tube, 32 volumes placed on two
877     shifted line
878     TRRA TRd RAdiator, placed on top of
879     these two straw layers
880     TRSO TRSI TRd Straw Internal, internal gas
881     volume
882     Please note that the TRBS geometry is now totally changed. The two
883     straw layers aren't placed on the middle of the volume anymore. They are
884     placed on the bottom of the TRBS, this to accomodate more easly a
885     geometry with a double radiator layer on top and no radiator on bottom.
886    
887     Sets and detectors definition have been updated with the new structure.
888    
889     NEW geometry for the MAGNET
890     The magnet geometry has been reviewed diminuishing the internal window.
891    
892     NEW geometry for CALORIMETER
893     The calorimeter structure has been "rationalized". All the different
894     possibilities of having a block or a full plane structure and the
895     division inside each block, have been thrown away. There is now a
896     basic block consituted of a 8x12 cm^2 silicon paddle, divided in 22
897     stripes. This because the three 8x8cm^2 silicon blocks will be bound
898     with stripes having one and an half lenght of the basic block.
899    
900     Besides there are no more X & Y planes but a single plane type that,
901     once rotated and turned over, plays the role of the Y view plane. This
902     configuration is more easy to handle for the PAMELA calorimeter case,
903     where the first plane is just a Y one and the last one a X.
904    
905     In detail, the way in wich the geometry for the calorimeter is
906     calculated and definited:
907     - The box height is subdivided in NPLAN division
908     - This height is reduced by the height of the absorber
909     - The result is divided by two, this represent the height of an active
910     plane: CAPL
911     - The calorimeter silicon paddles, CASI are placed into
912     CAPL.
913     - The calorimeter box is filled with CASI, rotated and flipped
914     for Y view, interleaved with the absorber.
915    
916     NEW hit added for the calorimeter
917     The momemtum module has been added as hit for the calorimeter too.
918     All the routines have been changed consequently.
919    
920     NEW geometry for the TRACKER.
921     The tracker geometry has been changed. In particular the ladder
922     supports are now two carbon fiber rods placed on the left and right
923     sided of each ladder. The roacell and kapton plane have been
924     eliminated.
925    
926     NEW parameter for the TRACKER digitization
927     Paolo updated the tracker DIGIt parameter using the ones calculated on
928     the basis of the PSI test beam.
929     Some small bugs in the digitization routines have been fixed as well.
930    
931     NEW detectors quote.
932     Each detector has now the quote from the mechanical drawings. There is
933     no more autocalculation of these position. In particulare the quotes are:
934     ZS11 =107.8
935     ZS12 =106.8
936     ZS13 =74.9
937     ZS14 =74.1
938     ZS21 =27.1
939     ZS22 =26.3
940     ZS3 =2.3
941     ZCAT =75.75
942     ZTRD =90.55
943     ZSPEC=50.6
944     ZCAL =13.05
945     These are the quote of the MARS of each detectors, means that half
946     detector height has been added to each quote.
947    
948     NEW top shell
949     The top shell is no more a sphere but is a flat cylinidrical plane.
950    
951     NEW variables usefull for the geometry definition
952     In particular the gep between the top shell and the TRD box is user
953     definited in the variable GAPTOP.
954     Is also possible to define the gap between the bottom TRD plane and
955     the TRD box: GAPTRD.
956     To keep into count the dead zone at the edge of the calorimeter paddle
957     is it possible to start subdividing the calorimeter paddle into NCASTR
958     stripes starting from CASIOFF centimeters from the paddle edge.
959     Is it also possible to define the number of calo stripes to be used:
960     NCASTR; and their width:CALSTWID.
961    
962     NEW CAS and CAT geometry
963     The CAT geometry has been reviewed. Just smaller paddle has been used.
964     The CAS are now placed horizontally.
965    
966     NEW Magnetic field map
967     The new magnet definition has also a new magnetic field that Paolo calculated
968    
969     6 Mar. 1997, Bari
970    
971     NEW geometry for TOF
972     The TOF geometry has been updated. The volume name are the same of
973     the proposal. Besides the paddle structure has been considered with the
974     carbon fiber planes that should consitute the mechanical structure
975     of the plane. Each plane but S3 should be composed of N paddle along X
976     or Y and a top and bottom layer of carbon fiber to stiffen the
977     structure. For the name we have used the proposal name for the mother box,
978     the subvolume are named as follow:
979     MOTHER SUBVOLUME NAME
980     S11 S11X , Scint paddle
981     SC11 , Carbon fiber plane
982     S12 S12Y , Scint paddle
983     SC12 , Carbon fiber plane
984     S13 S13X , Scint paddle
985     SC13 , Carbon fiber plane
986     S14 S14Y , Scint paddle
987     SC14 , Carbon fiber plane
988     S21 S21Y , Scint paddle
989     SC21 , Carbon fiber plane
990     S22 S22X , Scint paddle
991     SC22 , Carbon fiber plane
992     S3 No subvolumes
993    
994     Please note that we saved the direction of measurement for the paddle name.
995     The S3 is leaved as a big scint paddle without any segmentation.
996     The number of paddle for each plane has been added into the common. So the
997     variables: NS11X,NS12Y,NS13X,NS14Y,NS21Y,NS22X; contain the number of each
998     Snnd (nn: number, d: direction) detector for each plane.
999     The $GPGEO sequence has been changed accordingly.
1000     Please note that the Snnd volume dimention are automatically calculated
1001     using the Snn, SCnn dimentions and the number of paddle to be positioned
1002     inside the Snn. As usual these calculation are preformed in GPDAT.
1003     The quote for each Snn has been added into the GPGEO common as well.
1004    
1005     HIT and CWN revised for TOF
1006     The time of flight and momentum infos for the tracking particles have
1007     been added. The routine GPUTOF has a new input variable with the
1008     time-of-flight, this quantities has been added as hit no. 8. The module
1009     of the momentum has been added as hit no. 10. This is taken directly
1010     from the VECT array in GPUTOF. The TOF structure is now:
1011     DATA CHTOF/'XAVE','YAVE','ZAVE','XOUT','YOUT','ZOUT',
1012     + 'EREL','TIME','PATH','IPAR','P0 '/
1013    
1014     The CWN booking and filling has been revised as well. In particulare
1015     the CWN variables for TOF block have been merged into a big vector
1016     contining all the TOF hits infos.
1017    
1018     The GPDTOF routine has been created from the previous separated
1019     routine used for TOFT, TOFM, TOFB. This routine is now just filling in
1020     the CWN variables.
1021    
1022     28 May. 1996, Bari
1023     BUG FIXED IN GPUSED
1024     The Paolo's stragling was not activated because the code checked on IFL
1025     variable instead of IMEC one. Fixed.
1026    
1027     27 May. 1996, Bari
1028     ::::::::> VERSION NUMBER UPDATED <::::::::
1029     The version number has been updated in its level part: 1.01/01, is the
1030     actual version.
1031     22 May. 1996, Bari
1032     ::::::::> VERSION NUMBER UPDATED <::::::::
1033     The version number has been updated in its release part: 1.01/00, is the
1034     actual version.
1035     2 May - 22 May 1996, Bari
1036     BUG FIXED IN CREAGPXINT.COM
1037     The CREATE command in this OPEN-VMS command file was used after an IF
1038     statements on a new line, this caused the command to wait for a Ctrl-Z to
1039     exit, hunging up all the procedure.
1040     TWO NEW KUMACS ADDED
1041     To facilitate the GPAMELA executable build up two new MACROS have been
1042     added: GPLIB, GPEXE.
1043     The first one creates a GPLIB.OLB file containing all the GPAMELA routines
1044     but GPMAIN.
1045     The second create a GPAMELA.FOR with GPMAIN and all the routines stored in
1046     the CMZ decklist buffer. If you specify the option USER=Y at the GPEXE
1047     macro it will add all the user's action routines to your buffer. Please note
1048     that this last macro, will create the CREAGP.COM file containing all the dcl
1049     procedures to link GPAMELA, in particular the /INCLUDE option is mandatory in
1050     the link command to avoid the dummy GEANT user routines, i.e. GUKINE, to be
1051     linked instead of the GPAMELA ones.
1052    
1053     CUSTOM STRAGLING ADDED TO GEANT CODE
1054     After a number of test and an "official" confirmation we reach the conclusion
1055     that the GEANT code is not fine tuned for energy stragling in silicon.
1056     Following some references (in particular see: Hall, NIM 220 (1984) 356) Paolo
1057     developed a routine to add ad hoc stragling to the energy released in silicon.
1058     This is at the moment performed in the GPUSPE routine at the hit level.
1059     Before storing the his the routines uses the path length to calculate the
1060     gaussian spread to be used to convolve the usual Landau-like energy loss
1061     distribution.
1062    
1063     SPECTROMETER DIGITIZATION ADDED
1064     Paolo Papini digitization for the spectrometer has been added.
1065     In GPDSPE a call to GPSPEHD performs the digitization of the HIT.
1066     GPSPEHD calculates the charge read out from each strip in both views.
1067     NOTE: Respect to the original Paolo's code the GEANT capability in storing
1068     and retriving the geometrical informations for each detector has been
1069     used. In this way one can change the geometrical definition for the
1070     spectrometer having small or no changes on the digitization code.
1071     You can select the original Paolo's code slecting the option PAOLO.
1072    
1073     GPSTSPE SUBROUTINE UPDATED
1074     For the digitization routine we need to set up special tracking parameters.
1075     The specific routine has been updated with the parameters needed.
1076    
1077     DCUTESITR VARIABLE ADDED TO $GPSITR COMMON
1078     DCUTESITR variable was miss in $GPSITR common added.
1079    
1080     SUBROUTINE GPRHIT UPDATE
1081     GPRHIT routine update to use GPRSHT. The first hit to be red has been added.
1082     All the calls to the GPRHIT routines have been updated as well.
1083    
1084     SUBROUTINE GPRSHT ADDED
1085     This routine allows a hit retrival starting from a specific hit. Basically it
1086     is a modified version of GFHITS with an extra parameter, the first hit to be
1087     started with. It is useful if one needs to retrive the structure hit by hit.
1088    
1089     INTEGER FUNCTION GPNHIT ADDED
1090     An integer function GPNHIT has been added to count the number of hits
1091     stored in the HITS structure for CSET set and CDET detector.
1092    
1093     UGINIT ROUTINE UPDATED
1094     UGINIT routine has been updated to call GPADIGI.
1095    
1096     $GPSPE COMMON AND GPHBK UPDATED
1097     The common /GPSPE/ containing the spectrometer infos passed to the CWN has
1098     been updated with the DIGIT data.
1099     The booking touyine, GPHBK, has been updated as well.
1100    
1101     GPSDINI UPDATED
1102     The GPSDINI routine has been update to use the newly creted commons.
1103     Besides the UDSPE vector contining the digitization user's parameters has
1104     been added, The vector length NUDSPE, i.e. the number of digitzation user's
1105     parameters, has been added as parameter in $GPPDIGI sequence.
1106    
1107     COMMONS $GPDIGI, $GPDDIGI, $GPPDIGI, $GPDSPE, $GPDDSPE, ADDED
1108     The commons $GPDIGI, $GPDDIGI, $GPPDIGI, $GPDSPE, $GPDDSPE have been added.
1109     They contains the DIGI definition and bit length, for each instruments (only
1110     spectrometer filled at the moment), the DATA statements for the GPDIGI
1111     common, the parameters for the DIGI part, the DIGI parameters and quantities
1112     for the spectrometer, the DATA statements for the GPDSPE common.
1113    
1114     USER'S PARAMETERS STORED IN DIGI STRUCTURE
1115     At the moment the following 19 user's parameter have been stored in the DIGI
1116     structure, please note that the conversion factors are store at first, in
1117     this way you can retrive them more easily with GFDETU:
1118     ADCX , Conversion factor charge to ADC channels for X view
1119     ADCY , Conversion factor charge to ADC channels for X view
1120     PIEDX , Pedestal for X view, in ADC channels
1121     PIEDY , Pedestal for Y view, in ADC channels
1122     ENOISX, Noise for X view, in electrons
1123     ENOISY, Noise for Y view, in electrons
1124     NPCHXY, Number of point along X and Y for integeration
1125     NPCHZ , Number of point along Z for integeration
1126     WXSTR , Strip width in X view
1127     WYSTR , Strip width in Y view
1128     D , Silicon height
1129     TVX , Diffusion temperature (Volt), X view
1130     TVY , Diffusion temperature (Volt), Y view
1131     UD , Volt (junction)
1132     UU , Volt (external)
1133     PX1 , C1-x
1134     PX2 , C2-X
1135     PY1 , C1-Y
1136     PY2 , C2-Y
1137    
1138     NEW SUBROUTINE GPSDINI ADDED
1139     GPSDINI routine calculates all the qunatities needed for the spectrometer
1140     digitization routines. It calculates the capacitive coupling integrals and
1141     stores all the digitization constant, 19 at the moment, in the user reserved
1142     bank area in JSET bank.
1143    
1144     NEW SUBROUTINE GPUDIGI ADDED
1145     To manage the user's action in GPADIGI the GPUDIGI subroutine has been
1146     created. It's called at the end of GPADIGI.
1147    
1148     NEW SUBROUTINE GPADIGI ADDED
1149     To manage the DIGI definition for each instrument a new subroutine GPADIGI
1150     has been added. It is similar to GPHIT.
1151     Please note that the name is anomalus, it started with GPA, this is because a
1152     GPDIGI routine is used in GEANT code.
1153    
1154     NEW FUNCTION GPGAUS ADDED
1155     A new real function GPGAUS have been added to generate normal distributed
1156     random number, with unitary standard deviation and centered on zero.
1157    
1158     2 May. 1996, Bari
1159     GPFIL CALL MOVED IN UGINIT SUBROUTINE AND GPDUNIT ADDED
1160     To enable the user file name and LUNIT to be used opening the HBOOK file, the
1161     GPFIL call has been moved after the GFFGO one.
1162     To avoid the user filename to be overwritten, the sequence GPDUNIT has been
1163     moved from GPDAT to UGINIT.
1164    
1165     NEW DATA CARD ADDED. TO MANAGE HBOOK FILE NAME
1166     To define a user HBOOK file name a new data card has been added: HBFI.
1167     The card must be used with an '*' preceding it. The user must specifies the
1168     Logical Unit number to be used.
1169     Please note that the max string length for file name is 80 characters.
1170     This card overwrites the default GPAMELA.HIS name on LUNIT=34. See $INFORM
1171     for card usage.
1172    
1173     30 Apr. 1996, Bari
1174     BUG FIXED IN GUFLD
1175     A bug in GUFLD cause the magnetic filed to be interbolated with steps of 0.5
1176     cm instead of 2cm, along the Z axis. Fixed.
1177    
1178     30 Apr. 1996, Bari
1179     ::::::::> VERSION NUMBER UPDATED <::::::::
1180     The version number has been updated in its level part: 1.00/03, is the actual
1181     version.
1182    
1183     30 Apr. 1996, Bari
1184     USER ACTION IN SOME ROUTINES
1185     A user action has been enabled in several routine via user's dummy routines.
1186     The new routines added are: GPUDAT, GPUFFR, GPUFIL, GPUGEO, GPUHBK, GPUHIT,
1187     GPUINI, GPUKIN, GPULAS, GPUMAT, GPUMED, GPUOUT, GPUSED, GPUSTEP, GPUTRA,
1188     GPUTRE.
1189     The control is passed from the following routines: GPDAT, GPFFR, GPFIL,
1190     GPGEO, GPHBK, GPHIT, UGINIT, GUKINE, UGLAST, GPMAT, GPMED, GUOUT, GPSED,
1191     GUSTEP, GUTRAK, GUTREV.
1192     Routines: GPUKIN, GPUSTEP, GPUTRA, GPUTRE, are called twice in the main
1193     routine. A flag is passed with value 1 or 2 depending on the call sequence.
1194     More detailes in the routines' comment.
1195    
1196     29 Apr. 1996, Bari
1197     GSCIN ROUTINE RENAMED
1198     The GSCIN routine, to set the special tracking parameter for scintilators,
1199     has the same name of an inner GEANT routine, not reported in the manual (!).
1200     This routine has been renamed to GPSCINT now.
1201    
1202     BUG FIXED IN GUSTEP
1203     Sometimes a particle is stopped by GEANT having an energy released in the
1204     step. In GUSTEP the mechanisms LOSS and STOP were looked for in a
1205     complementary way causing mainly a delta ray stopped having an energy release
1206     to not be counted in the hit.
1207     Now a particle is considered for the hit filling if:
1208     1. Ionization present
1209     2. Particle stopped for Electrons (Delta)
1210     3. Ionization present and particle stopped for Electrons (Delta).
1211    
1212     BUG FIXED IN GPHBK
1213     The IMTPAR and IBTPAR were mistyped in defining TOFM and TOFB blocks.
1214    
1215     BUG FIXED IN GPMED
1216     The tracking parameters were not backuped for each material separately.
1217     So if a parameter was changed once the changed one was used in the folowing
1218     calls to GPMED.
1219     Now each parameter has is own tracking parameter set.
1220    
1221     MODS IN GPMED
1222     Now only parameters selected with the AUTM data cards are passed as negative.
1223    
1224     NEW DATA CARDS ADDED
1225     To manage the tracking parameter 6 new data cards have been added:
1226     AUTM, TMAX, STMA, DEMA, EPDI, STMI.
1227     With AUTM is possible to tag tracking parameter for automatic calculation in
1228     GEANT regardless of AUTO value, i.e. they are passed negative to GSTMED.
1229     With the cards TMAX, STMAX, DEMA, EPDI, STMI is possible to pass the value
1230     for the respective tracking parameter: TMAXFD, STEMAX, DEEMAX, EPSIL, STMIN.
1231     (See GEANT manual at CONS200-1).
1232     See $INFO patchy for usage examples.
1233     15 Apr. 1996, Bari
1234     ::::::::> VERSION NUMBER UPDATED <::::::::
1235     The version number has been updated in its level part: 1.00/02, is the actual
1236     version.
1237    
1238     5 Apr. 1996, Bari
1239    
1240     NEW DATA CARD ADDED: HPAK
1241     To select a specific hadronic intercation program a new data card ha been
1242     added: HPAK. Specifing: HPAK 'FLUK'; in your .FFR file, you will select the
1243     FLUKA package for the hadronic interaction.
1244    
1245     USER HADRONIC ROUTINES ADDED
1246     The routines: GUPHAD, GUHADR; have been added into /GPAMELA directory.
1247     These routine are called every time there is an hadronic intercation. Action
1248     to control hadronic process can be performed in these routines.
1249    
1250     BUGS FIXED IN GUKINE
1251     The two +SELF statement required to select the non interactive or debug state
1252     had a bad logic. Fixed.
1253    
1254     BUG FIXED IN GPDCAL
1255     The NUMD1 and NUMV1 vectors, required in case of the NO stripes division,
1256     were declared REAL instead of INTEGER.
1257    
1258     4 Apr. 1996, Bari
1259    
1260     GPDAT UPDATED
1261     The GPDAT routines has been upadate to use the GPLOOK function and the
1262     routines to manage the special tracking parameters. I hope is more clean now.
1263    
1264     NEW SUBROUTINES ADDED.
1265     The following desks have been added: GPAMELA/GPAL,GPAMELA/GPN2G,GPCAL/GPG10,
1266     GPCAL/GPW,GPCAL/GPSICA,GPSPE/GPFE,GPSPE/GPKAP,GPSPE/GPROA,GPSPE/GPCP,
1267     GPSPE/GPSITR,GPTRD/GPTRAD,GPTRD/GPXE,GPTOF/GPSCIN,GPCHE/GPAER.
1268     These to manage the Special tracking parameter for each detector. The user
1269     have to change the parameter in these routines now.
1270    
1271     NEW FUNCTION GPLOOK ADDED
1272     This function is TRUE if a 4 letter string is found into an integer
1273     vector. Is a mask on GLOOK.
1274    
1275     NEW HIT ADDED, PARTICLE NUMBER
1276     To help in studing the interaction inside the TOF, the anticoincidence
1277     detectors and the delta rays productions inside the TRD a new word in the
1278     HITS structures for this detector. It is the particle number.
1279     It is added at the end of the structure. No compression have been requested.
1280    
1281     GPUxxx AND GPDxxx ROUTINES REVIEWED
1282     To accomodate the enlarged hit structure for some detectros the GPUxxx
1283     routines are now called with and extra input word. The CALL sequnece and
1284     the SUBROUTINEs definition have been changed. The change being implemented
1285     on all the GPUxxx routines foreseeing a possible use of the particle numbers
1286     for the other detectors.
1287     Just the GPDxxx routines corresponding to the detector with the new hits
1288     structure have been changerd.
1289    
1290     GPHBK ROUTINE AND $GPTOF, $GPTRD, $GPCAS AND $GPCAT COMMONS UPDATED
1291     The CWN structure has been updated including the id number of the particle
1292     producing the hit. This has been done for TOF, CAT, CAS and TRD detectors.
1293     The common storing the CWN variables have been updated as well.
1294    
1295     3 Apr. 1996, Bari
1296     NEW VOLUME CONTROL ADDED TO NDET DATA CARD
1297     With NDET data card is now possible to eliminate the inner shell, SHEI.
1298     As usual NDET 'SHEI', will cancel the SHEI and TSHI volumes from the
1299     simulation. The $INFORM patchy has been updated as well.
1300    
1301     INNER SHELL ADDED
1302     To simulate the inner shell, to vent PAMELA, proposed by russian guys two
1303     volumes have been added: TSHI, SHEI.
1304     The latter being a tube, having the same height of the external one but
1305     a radius 2cm smaller. The former being a dome sector having the same radius
1306     of the external one but the lower opening angle of just 5degree.
1307     The shells thickness have been set to 0.1cm. As for TSHE case the maximum
1308     theta angle of the spherical sector and its position inside PAME is
1309     calculated on the base of SHEI dimention.
1310    
1311     GEOMETRY REVIEWED
1312     The shell thickness was 1cm, corrected to 0.1cm.
1313     The CAS X&Y positions were calculated on the base of CATB dimentions; they
1314     are now calculated on the base of the CAS dimentions. In this way the
1315     anticoincidence counters are placed around the spectrometer and there is no
1316     uncovered space between them.
1317     The quote of the top tof is now calculated not counting the cherenkov if
1318     this ddetector is not requested.
1319    
1320     2 Apr. 1996, Bari
1321     NEW VOLUME ADDED
1322     The TSHE volume has been added. It's the satellite dome.
1323     At the moment the radius is 130mm. The opening angle is calculated on the
1324     base of SHEL volume dimentions.
1325    
1326     UPDATED GDRAWS ROUTINE ADDED
1327     To draw a spherical sector an updated GDRAWS routine to draw SPHE volume have
1328     been added into /GPAMELA directory. Respect to the standard routine is able
1329     to draw spherical segment.
1330    
1331     28 Mar. 1996, Bari
1332     BUG FIXED IN GPSED
1333     In defining the TRD detectors the TRSn volume mane were used instead of the
1334     actual TBSn to specify the TrdBoxStraw
1335    
1336     BUGS FIXED IN GPDTOFx
1337     In these routines the NTHTPADx variables have been substituted by NTHTOFx.
1338     The latter being the actual variables use to book the CWN-tple.
1339    
1340     BUGS FIXED IN GPHBK
1341     The ERCAT & ERCAS variables where mistyped in ERRCAT & ERRCAS. Bugs fixed.
1342    
1343     BUG FIXED IN GPSED
1344     The bin to be used to store the detector number CASI and CSNW were calculate
1345     from the NCASIX*NCASIY number. The actual number is twice the latter because
1346     we have X & Y view. Now the number of bins is calculated from 2*NCASIX*NCASIY
1347    
1348     27 Mar. 1996, Bari
1349     BUGS FIXED IN GPDxxx
1350     In the GPD routines referring to set zith multiple detector a bug was
1351     found. The hits were read shifted by the number of hits of the previous
1352     detector. This end-up with an abnormal number of zeros, and to the absence
1353     of certain detector numbers.
1354    
1355     25 Mar. 1996, Bari
1356     BUG FIXED IN GUFLD
1357     The GUFLD routine calculate the magnetic field in a volume with all the
1358     coordinates positive, then calculate the actual field mirroing the field
1359     component. To actual position is compared to a grid of not decimal value.
1360     This comparison were made using the actual position value not the absolute
1361     value. This have been fixed now.
1362    
1363     WARNING PRINTOUT IN GPDxxx AND GPRHIT
1364     The warning printouts have been update adding the run and event number, in
1365     the GPDxxx and GPRHIT routine.
1366    
1367     20 Mar. 1996, Bari
1368     COMPILATION WARNING REDUCED
1369     The GPDxxx routine have been modified to avoid IF acting on parameter.
1370     The IF is used to check a remote error on SET and DET definition.
1371     The IF acts on two integer now. This will avoid the compilation warnings.
1372     LINK WARNING REDUCED
1373     More dummy routine added in CRAGPXINT to simulate some MULTINET routines.
1374     The errors now are reducet to one warning linking the no-MULTINET case.
1375    
1376     19 Mar. 1996, Bari
1377     LINK WARNING REDUCED
1378     The CREAGPXINT VMS script has been modified.
1379     The CERNLIB command parameter sequence has been modified and the undefined
1380     symbols errors on PACKLIB reduced to 1 for MULTINET case, and to the MULTINET
1381     related routine to the non multinet one.
1382    
1383     BUG FIND IN GUSTEP IN LOOKING FOR THE MECHANISM ACTIVE
1384     The NAMEC vector in GCTRAK common doesn't contain the "list of the mechanism
1385     name for the current step", as they say, besides just the list of the names.
1386     So you need to look at LMEC vector to have the correct mechanisms active in
1387     the step.
1388    
1389     MANAGMENT OF DELTA RAYS IN GUSTEP
1390     The delta ray were not collected in GUSTE. This because in GUSTEP we look for
1391     an ioniwation only. The energy of the delta is so low that they survive for
1392     justr a couple of step. The first one being a NULL one ( just entering the
1393     volume), in the second one the particle energy falling below threshold so
1394     having just the STOP mechanism active.
1395     Now if there is an electron and a positron and the STOP mechanism is present
1396     the IN varible is set to 2 to force the hit storage.
1397    
1398     BUGS FOUND IN GPDCAL & GPUCAL
1399     In GPDCAL the last hit was retrived from the seventhn word of the vector VHIT
1400     Instead of the fourth.
1401     In GPUCAL the GSCHIT was called with 4 as latest hits to be summed up. This
1402     caused all the 4 hits to be summed up, the correct value for this is 1.
1403    
1404     NEW MATERIAL DEFINITED: SILICON CA
1405     Due to the fact that we can select special parameter in GEANT for each
1406     tracking media, more tracking media cannot refer to the same material.
1407     Infact GEANT will append the special parameter to the material structure. Due
1408     to this two materials have been definited for the tracker and the calorimeter
1409     silicon: SILICON CA, SILICON TR.
1410     The SILICON TR has the number 21 and 22 the other. The tracking media
1411     corresponding to this materials now point to each material separately.
1412     The new material numbers are:
1413     17. Plast. sci: H 50%, C 50% , Rho=1.032 g/cm**3 from P.D.Book
1414     18. G10 : SiO2 60%, Epoxy 40%, Rho=1.7 g/cm**3 from P.D.Book
1415     Epoxy from CRC handbook (Raw estimation)
1416     19. N2 (Gas) : A=14.01, Z=7, Rho=1.25 g/l
1417     20. Silicon TR: A=28.09, Z=14,Rho=2.33 g/cm**3, X0=9.36 from P.D.Book
1418     21. Silicon CA: A=28.09, Z=14,Rho=2.33 g/cm**3, X0=9.36 from P.D.Book
1419     22. Xenon : A=131.29, Z=54,Rho=5.858 g/l, X0=1447.6cm from P.D.Book
1420     23. TRD rad. : Carbon fiber with density 0.060 g/cm**3, used in TS93
1421     24. Aerogel : A=96.11, Z=54 (Comp. n(SiO2)+2n(H2O)), Rho=.2g/cm**3 (Ave.),
1422     X0=150 cm, from P.D.Book
1423    
1424     CALO HITS STRUCTURE CHANGED AGAIN
1425     The calorimeter set 'CAL ' have been definited and two detector in it:
1426     'CAST', 'CASN'. Corresponding to the strip in the plane with and without
1427     tungsten respectively.
1428     The routine GPSED, GPHIT, GUSTEP, GPDCAL have been updated.
1429    
1430     TRD GEOMETRY UPDATED
1431     The TRD has a new geometry. There are three different straw lenghts.
1432     Besides the 32 straws set are 6x4, 5x4, 4x4, starting from the top.
1433     So the volume TRBS, TRSO, TRSI, TRRA have been deleted and the TBSx, TSOx,
1434     TSIx, TRAx (x being 1,2,3 respectively) have been created.
1435     The set structure has been revised as well. The set 'TRD ' has been left
1436     but tree detector have been definited for this set.
1437     The corresponding identifier in /GPSED/ common have been created.
1438     The routines GPTRDV, GPDTRD, GPSED, GPHIT have been updated to the new
1439     geometry.
1440    
1441     14 Mar. 1996, Bari
1442     TRACKING MEDIA PARAMETER UPDATED FOR SICA, W AND G10 MEDIA
1443     The tracking media parameter STEMAX has been set to .5 for SICA and .15 for W
1444     and G10 following the M. Masini & M.P. De PAscale suggestion.
1445    
1446     CHANGES IN GPTMED ROUTINE
1447     To allow the automatic calculation of non critical parameters for tracking
1448     media, the tracking media default value, initialized in GPDAT, have been
1449     turned to negative value. In this way they are automatically calculated by
1450     GEANT also if you select AUTO 0.
1451    
1452     DATA CARD SPTM ADDED TO MANAGE SPECIAL TRACKING PARAMETER
1453     To manage the special tracking parameter definition the SPTM card have been
1454     added. As usual specifying a tracking material as data card argument will
1455     force an action in GPDAT. Here the SPTM data words are scanned and the
1456     parameter for the selected medium are changed.
1457     SPTM option are: 'AL ', 'G10 ', 'N2G ', 'W ', 'FE ', 'KAP ', 'TRAD',
1458     'ROA ', 'CP ', 'SCIN', 'SICA', 'SITR', 'XE ', 'AER '.
1459     NOTE: The parameter must been CHARACTER*4
1460    
1461     SPECIAL TRACKING PARAMETER MANAGEMENT
1462     To manage different settings of tracking parameter specialized for each
1463     tracking media a routine has been added: GPSPTM; and a common as
1464     well:/GPSPTM/. (In //GPAMELA/GPAMELA and //GPAMELA/GPCDES respectivelly)
1465     In the sequence $GPDSPTM all the available GEANT tracking media parameter are
1466     initializated to -111., for all the 14 media definited in GPAMELA.
1467     In GPDAT these parameter are changed. In GPSPTM the GSTPAR GEANT routine is
1468     called only if the corrisponding parameter to be changed is different from
1469     -111.
1470     For the moment only the SICA and W media has been changed following M. Masini
1471     & M.P. De Pascale suggestions.
1472    
1473     13 Mar. 1996, Bari
1474     HOUSEKEEPING OF CALO ROUTINES
1475     Some bugs were found into GPCALV. The Y view plane is now rotated,
1476     wasn't before.
1477    
1478     CHERENKOV DETECTOR MOVED
1479     The CHE variable has been forced to FALSE in GPDAT. This will cause
1480     the skiping of all the CHE definition.
1481    
1482     MAX NUMBER OF HITS CHANGED
1483     The max number of hits to be retrived for each detector is changed.
1484     It's no more the same but the calorimeter, now the GPPHIT sequence
1485     contains the NHMxxx parameter, xxx being the detector name. Thie paremeter
1486     is used in the corresponding GPDxxx routine and stored into the generic NHM
1487     variable.
1488     The CWN definition in GPHBK routine has been changed accordingly.
1489    
1490     CALO HITS STRUCTURE CHANGED
1491     GEANT doesn't understand if two detector with the same name depend from
1492     sets. It just doesn't consider them detectors. This is the case for CASI or
1493     CAST in CAL and CANW.
1494     Now a new detector has been introduced CANW to describe the NO tungsten
1495     calorimeter plane case.
1496    
1497     12 Mar. 1996, Bari
1498     HCNW DATA CARD ADDED
1499     A data card to control the CWN booking and filling has been added.
1500     HCWN 1
1501     will enable the CWN booking and filling of the group corresponding to the
1502     detector in use.
1503     This measn that the CWN will not be enable for the detector deleted with the
1504     NDET card.
1505     The DATA card check is performed in GPDAT. The UGINIT, GPHB, GUOUT, UGLAST
1506     routines has been updated considering this new data card.
1507    
1508     THE NCWN PARAMETER ADDED.
1509     The CWN number is now passed into a parameter filled up in the sequence
1510     GPPNTP. This sequence contains the record size and the number of the standard
1511     n-tple. The routine the n-tpla is called from are been updated as well, i.e.
1512     GPHBK, GPOUT.
1513    
1514     SPETCROMETER DIMENTIONS CHANGED
1515     Following Paolo I have changed some magnet and tracker ladders dimentions.
1516     Here follow the changes:
1517     SPEB/12.1,11.6,0./,MGPL/12.1,11.6,4./,MGPI/8.1,7.1,4./,TRPB/12.1,11.6,0.4/
1518     TRPL/8.,7.,0.4/,TRSL/0.,7.,0./,TSPA/0.,3.5,0.015/,TSKP/2.6666,7.,0.0025/
1519     TRCP/8.,7.,0.015/,TRRP/8.,7.,0.25/,NTRSL/3/
1520    
1521     11 Mar. 1996, Bari
1522     HITS STRUCTURE FILL UP CHANGED
1523     The HIT structure is now filled only if there is an ionization loss into the
1524     corresponding detector.
1525     The SAVE logical ha been added to all the GPUxxx routines. This is switched
1526     TRUE if an ionization has been encountered.
1527     This action to avoid the gamma to be counted.
1528    
1529     MAGNET DIMENTIONS UPDATED
1530     The magnet dimentions have been updated following Paolo Papini update.
1531     Here are the new dimentions: SPEB/12.1,11.6,0./,MGPL/12.1,11.6,4./,
1532     MGPI/8.1,7.1,4./,TRPB/12.1,11.6,0.35/
1533    
1534     28 Feb. 1996, Bari-Rome
1535     REVIEW OF THE HITS RETRIVAL PROCEDURE
1536     The GIUDIGI routine has been created. There is a call for each instrument.
1537     The corresponding routines are named GPDxxx, xxx being the detector name.
1538     Each routine simply call GPRHIT, a genral pourpuse routine that retrives the
1539     hit structure corresponding to the IS-th and ID-th set and detector.
1540     Each routine needs the GPRHIT sequence containing the arrays to be passed to
1541     the GPRHIT routine.
1542     The GPPHIT sequence has been updated adding new parameter to fiw the maximum
1543     number of hits to be read for each detector.
1544     The GPHBK routine has been changed accordingly.
1545    
1546     21 Feb. 1996, Bari
1547     CHANGE IN CAL HIT STRUCTURE
1548     After the GPAMELA meeting in Bari, the CAL hist structure have been reduced.
1549     Due to the great number of tracks we will be deling with following an e.m.
1550     shower, is it convinient to have just the XYZ coordinates of the origin of
1551     the detector, i.e. the strip, instead of the IN and OUT coord.
1552     The Path lenght is meaningless as well.
1553    
1554     GPHBK UPDATES & HBOOK CWN SEQUENCE ADDED
1555     The GPTOFT, GPTOFM, GPTOFB, GPCHE, GPTRD, GPCAT, GPCAS, GPSPE, GPCAL
1556     sequences have been added. These commons conting the variable to be stored
1557     into the standard CWN ntple filled by GPAMELA.
1558     The GPHBK routine have been updated accordling, both INTER and -INTER cases
1559     have been considered.
1560    
1561     20 Feb. 1996, Bari
1562     NEW SEQUENCES ADDED.
1563     THE GPCDES/$GPUNIT & $GPDUNIT, have been added.
1564     The commons contining the logical unit numbers and the file name for all the
1565     files open from GPAMELA have been stored.
1566    
1567     16 Feb. 1996, Bari
1568     MAGNETIC FIELD ADDED
1569     The GPFIELD patchy has been added. The GUFLD routine as well.
1570     This routine call FIN3 to interpolated the mangetic field value red from the
1571     GPFIELD.MAP. This file is red into GPDAT routine, it's opened into GPFIL and
1572     closed in GULAST.
1573    
1574     13 Feb. 1996, Bari
1575     CALO DIVISION AND CONTROL CARD ADDED
1576     To create calorimeter divisions a DATA CARD word is checked. Using:
1577     GEOM 'DCAL'
1578     will force the CALDIV variable in /GPKEY/ to TRUE and the CASI detector,
1579     CAlorimeter SIlicon paddle, will be divided into NCALSTR division along X
1580     axis.
1581     The new volume will be called CAST, CAlorimeter STrip.
1582    
1583     12 Feb. 1996, Bari
1584     NEW VOLUME ADDED
1585     To correctly simulate the aluminium shell the SHEL volume has been added with
1586     the previous PAME dimention. The PAME volume is now a full tube filled uo
1587     with nitrogen.
1588    
1589     8 Feb. 1996, Bari
1590     NEW CALORIMETER GEOMETRY
1591     After the PAMELA week in Dec. 95 the calorimeter geometry has been changend.
1592     No more two silicon layer glued back to back and place into a ceramic support
1593     but a sandwich of two G10 planes interleaved with a radiator, tungsten, plate
1594     supports two planes of silicon "chips". The Y view is place on the top of
1595     this layer and the X on the back. This simplifies the calorimeter geometry
1596     gratly. It is now definited just one volume, CASI, for the silicon 6x6 cm^2
1597     chip. These volumes are place on the top and back sandwich plane into che
1598     CAPL volume that simulate a clorimeter plane.
1599     Due to the still indefined number of chips for each plane two variable, NCISX
1600     and NCISY, have been definited to fix the number of si chips along X and Y
1601     dimentions respectively. The CAPL, CALB volume dimentions are calculate
1602     accordling. Besides the variable DCASIX & DCASIY have been introduced to take
1603     care of the distance between two chip along X and Y view.
1604    
1605     CAS VARIABLE NAME CHANGED
1606     The name of the vector with the side anticoincidence counters, CAS, have been
1607     changed from CAS to CASP
1608    
1609     NEW ROUTINES FOR CAS AND CAT GEOMETRY DEFINITION
1610     The CAT and CAS, anticoincidence counters, volume definition have been moved
1611     from GPTOFV routine to GPCATV and GPCASV, brand new routines. In this way is
1612     much more easy to exclude these detectors from the simulation (see NEW KEY
1613     "NDET" DEFINITED note).
1614    
1615     NEW KEY "NDET" DEFINITED
1616     A new user data card has been definited: NDET.
1617     Its action is to exclude single detector from the simulation.
1618     It has 7 values: TOF, CHE, TRD, CAT, CAS, SPE, CAL.
1619     NOTE. This has to be character*4 !!!!!!
1620     Usage:
1621     NDET 'TOF ' 'SPE '
1622     the previous line in the DATA CAD file, will exclude from the simulation the
1623     TOF, TOP, MIDDLE and BOTTOM ones, and the whole spectrometer, i.e. silicon
1624     ladders and magnet planes.
1625     Please note, for the SPE case the magnetic field is not excluded, the MAGN
1626     data card is responsible for switching on or off the magnetic field.
1627    
1628     7 Feb. 1996, Bari
1629     MATERIAL AND TRACKING MEDIA ADDENDUM
1630     More material definited and tracking media correspondly.
1631     For general comment see the 6th of Feb. HISTORY.
1632     Please note, for the moment the KAPTON, ROACELL and CARBON FIBER materials
1633     are substituted by scintillator.
1634     Here follows the updated list:
1635    
1636     17. Plast. sci: H 50%, C 50% , Rho=1.032 g/cm**3 from P.D.Book
1637     18. G10 : SiO2 60%, Epoxy 40%, Rho=1.7 g/cm**3 from P.D.Book
1638     Epoxy from CRC handbook (Raw estimation)
1639     19. N2 (Gas) : A=14.01, Z=7, Rho=1.25 g/l
1640     20. Silicon : A=28.09, Z=14,Rho=2.33 g/cm**3, X0=9.36 from P.D.Book
1641     21. Xenon : A=131.29, Z=54,Rho=5.858 g/l, X0=1447.6cm from P.D.Book
1642     22. TRD rad. : Carbon fiber with density 0.060 g/cm**3, used in TS93
1643     23. Aerogel : A=96.11, Z=54 (Comp. n(SiO2)+2n(H2O)), Rho=.2g/cm**3 (Ave.),
1644     X0=150 cm, from P.D.Book
1645    
1646     The left numbers are the materiale namber has declared to GEANT.
1647    
1648     Tracking media:
1649     Not sensitive:
1650     1. ALUMINIUM
1651     2. G10
1652     3. N2 GAS
1653     4. TUNGSTEN
1654     5. IRON
1655     6. KAPTON
1656     7. TRD RADIATOR
1657     8. ROACELL
1658     9. CARBON FIBER
1659    
1660     Sensitive:
1661     10. SCINTILLATOR
1662     11. SICALO
1663     12. SITRACKER
1664     13. XENON
1665     14. AEROGEL
1666    
1667     6 Feb. 1996, Bari
1668     NEW GEOMETRY DEFINITION
1669     After the PAMELA week the geometrical structure of the tracker has been
1670     modified. Is now possible to select the number of silicon paddle to be placed
1671     into a silicon ladder. The dimentions are scaled accordling. Change the
1672     NTRSL variable initialization into the deck //GPAMELA/GPCDES/GPDGEO,
1673     containing DATA statement for the geometry.
1674    
1675     MATERIAL AND TRACKING MEDIA DEFINITION
1676     Some material has been definited, namely:
1677    
1678     17. Plast. sci: H 50%, C 50% , Rho=1.032 g/cm**3 from P.D.Book
1679     18. G10 : SiO2 60%, Epoxy 40%, Rho=1.7 g/cm**3 from P.D.Book
1680     Epoxy from CRC handbook (Raw estimation)
1681     19. N2 (Gas) : A=14.01, Z=7, Rho=1.25 g/l
1682     20. Silicon : A=28.09, Z=14,Rho=2.33 g/cm**3, X0=9.36 from P.D.Book
1683     21. Xenon : A=131.29, Z=54,Rho=5.858 g/l, X0=1447.6cm from P.D.Book
1684    
1685     The left numbers are the materiale namber has declared to GEANT.
1686     Tracking media have been definited as well:
1687     Not sensitive:
1688     1. ALUMINIUM
1689     2. G10
1690     3. N2 GAS
1691     4. TUNGSTEN
1692     5. IRON
1693     Sensitive:
1694     6. SCINTILLATOR
1695     7. SICALO
1696     8. SITRACKER
1697     9. XENON
1698    
1699     The numbers are the tracking media ones.
1700     The tracking media parameter has been initialized into GPDAT routine but
1701     EPSIL. This is a critical parameter and define the tracking precision. M.
1702     Boezio suggested to set it as 1% of the volume thickness. This is way this
1703     parameter is set directly into GPMED routine, where the tracking media are
1704     definited. Please note that for the aluminium the value of 10 microns have
1705     been used.
1706     Here there are the tracking parameter used as user default:
1707     FIELDM = 40.
1708     TMAXFD = 1.
1709     STEMAX = 100.
1710     DEEMAX = 0.05
1711     STMIN = 0.0005
1712     The FFIELD variable, switching ON or OFF the magnetic field, is definited via
1713     the DATA card MAGN
1714    
1715     28 Nov. 1995, Gran Sasso
1716     FILE ORGANIZATION
1717     The CMZ file GPAMELA has been created. The overall structure of $HISTORY,
1718     $INFORM, $VERSION and the pilot patchy *GPAMELA has been created.

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