| 1 | SUBROUTINE PARNUM( INUMFL )
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| 2 |
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| 3 | C-----------------------------------------------------------------------
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| 4 | C PART(ICLE TYPE) NUM(BERS)
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| 5 | C
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| 6 | C DETERMINES THE NUMBERS OF SECONDARY PARTICLES FOR EACH TYPE
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| 7 | C THIS SUBROUTINE IS CALLED FROM HDPM
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| 8 | C ARGUMENT
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| 9 | C INUMFL = 0 CORRECT DETERMINATION OF PARTICLE NUMBERS
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| 10 | C = 1 SOMETHING WENT WRONG WITH NEUTRAL PARTICLE NUMBERS
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| 11 | C-----------------------------------------------------------------------
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| 12 |
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| 13 | IMPLICIT DOUBLE PRECISION (A-H,O-Z)
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| 14 | *KEEP,CONST.
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| 15 | COMMON /CONST/ PI,PI2,OB3,TB3,ENEPER
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| 16 | DOUBLE PRECISION PI,PI2,OB3,TB3,ENEPER
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| 17 | *KEEP,EDECAY.
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| 18 | COMMON /EDECAY/ CETA
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| 19 | DOUBLE PRECISION CETA(5)
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| 20 | *KEEP,INDICE.
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| 21 | COMMON /INDICE/ NNUCN,NKA0,NHYPN,NETA,NETAS,NPIZER,
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| 22 | * NNC,NKC,NHC,NPC,NCH,NNN,NKN,NHN,NET,NPN
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| 23 | INTEGER NNUCN(2:3),NKA0(2:3),NHYPN(2:3),NETA(2:3,1:4),
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| 24 | * NETAS(2:3),NPIZER(2:3),
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| 25 | * NNC,NKC,NHC,NPC,NCH,NNN,NKN,NHN,NET,NPN
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| 26 | *KEEP,INTER.
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| 27 | COMMON /INTER/ AVCH,AVCH3,DC0,DLOG,DMLOG,ECMDIF,ECMDPM,ELAB,
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| 28 | * FNEUT,FNEUT2,GNU,PLAB,POSC2,POSC3,POSN2,POSN3,
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| 29 | * RC3TO2,S,SEUGF,SEUGP,SLOG,SLOGSQ,SMLOG,
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| 30 | * WIDC2,WIDC3,WIDN2,WIDN3,YCM,YY0,ZN,
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| 31 | * IDIF,ITAR
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| 32 | DOUBLE PRECISION AVCH,AVCH3,DC0,DLOG,DMLOG,ECMDIF,ECMDPM,ELAB,
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| 33 | * FNEUT,FNEUT2,GNU,PLAB,POSC2,POSC3,POSN2,POSN3,
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| 34 | * RC3TO2,S,SEUGF,SEUGP,SLOG,SLOGSQ,SMLOG,
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| 35 | * WIDC2,WIDC3,WIDN2,WIDN3,YCM,YY0,ZN
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| 36 | INTEGER IDIF,ITAR
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| 37 | *KEEP,LEPAR.
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| 38 | COMMON /LEPAR/ LEPAR1,LEPAR2,LASTPI,NRESPC,NRESPN,NCPLUS
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| 39 | INTEGER LEPAR1,LEPAR2,LASTPI,NRESPC,NRESPN,NCPLUS
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| 40 | *KEEP,RANDPA.
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| 41 | COMMON /RANDPA/ FAC,U1,U2,RD,NSEQ,ISEED,KNOR
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| 42 | DOUBLE PRECISION FAC,U1,U2
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| 43 | REAL RD(3000)
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| 44 | INTEGER ISEED(103,10),NSEQ
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| 45 | LOGICAL KNOR
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| 46 | *KEEP,RATIOS.
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| 47 | COMMON /RATIOS/ RPI0R,RPIER,RPEKR,RPEKNR,PPICH,PPINCH,PPNKCH,
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| 48 | * ISEL,NEUTOT,NTOTEM
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| 49 | DOUBLE PRECISION RPI0R,RPIER,RPEKR,RPEKNR,PPICH,PPINCH,PPNKCH
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| 50 | INTEGER ISEL,NEUTOT,NTOTEM
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| 51 | *KEEP,RUNPAR.
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| 52 | COMMON /RUNPAR/ FIXHEI,THICK0,HILOECM,HILOELB,
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| 53 | * STEPFC,NRRUN,NSHOW,PATAPE,MONIIN,
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| 54 | * MONIOU,MDEBUG,NUCNUC,
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| 55 | * CETAPE,
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| 56 | * SHOWNO,ISHW,NOPART,NRECS,NBLKS,MAXPRT,NDEBDL,
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| 57 | * N1STTR,MDBASE,
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| 58 | * DEBDEL,DEBUG,FDECAY,FEGS,FIRSTI,FIXINC,FIXTAR,
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| 59 | * FIX1I,FMUADD,FNKG,FPRINT,FDBASE
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| 60 | * ,GHEISH,GHESIG
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| 61 | COMMON /RUNPAC/ DSN,HOST,USER
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| 62 | DOUBLE PRECISION FIXHEI,THICK0,HILOECM,HILOELB
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| 63 | REAL STEPFC
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| 64 | INTEGER NRRUN,NSHOW,PATAPE,MONIIN,MONIOU,MDEBUG,NUCNUC,
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| 65 | * SHOWNO,ISHW,NOPART,NRECS,NBLKS,MAXPRT,NDEBDL,
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| 66 | * N1STTR,MDBASE
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| 67 | INTEGER CETAPE
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| 68 | CHARACTER*79 DSN
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| 69 | CHARACTER*20 HOST,USER
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| 70 |
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| 71 | LOGICAL DEBDEL,DEBUG,FDECAY,FEGS,FIRSTI,FIXINC,FIXTAR,
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| 72 | * FIX1I,FMUADD,FNKG,FPRINT,FDBASE
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| 73 | * ,GHEISH,GHESIG
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| 74 | *KEND.
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| 75 |
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| 76 | REAL RDETA
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| 77 | C-----------------------------------------------------------------------
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| 78 |
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| 79 | IF ( DEBUG ) WRITE(MDEBUG,*) 'PARNUM: NCH,NEUTOT,NTOTEM=',
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| 80 | * NCH,NEUTOT,NTOTEM
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| 81 |
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| 82 | INUMFL = 0
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| 83 | C RESET PARTICLE NUMBERS
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| 84 | NNC = 0
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| 85 | NKC = 0
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| 86 | NHC = 0
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| 87 | NPC = 0
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| 88 | C ISEL IS 1 MEANS VERY LOW MULTIPLICITY
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| 89 | C CREATE ONLY PIONS (TO RISKY TO CREATE OTHER PARTICLES)
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| 90 | IF ( ISEL .EQ. 1 ) THEN
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| 91 | NNN = 0
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| 92 | NKN = 0
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| 93 | NET = 0
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| 94 | NHN = 0
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| 95 | NPN = 0
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| 96 | NETAS(2) = 0
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| 97 | NETAS(3) = 0
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| 98 | C CREATE RANDOM NUMBERS
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| 99 | CALL RMMAR( RD,NTOTEM,1 )
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| 100 | DO 1000 I = 1,NTOTEM
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| 101 | IF ( RD(I) .LE. TB3 ) THEN
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| 102 | NPC = NPC + 1
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| 103 | ELSE
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| 104 | NPN = NPN + 1
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| 105 | ENDIF
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| 106 | 1000 CONTINUE
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| 107 | C NO NEUTRAL PARTICLES FOR THE 3RD STRING EXCEPT EVENTUALLY PI(0)
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| 108 | NNUCN(3) = 0
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| 109 | NKA0(3) = 0
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| 110 | NHYPN(3) = 0
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| 111 | NETAS(3) = 0
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| 112 | NPIZER(3) = MAX( 0, NINT(RC3TO2/(1.D0+RC3TO2)*DBLE(NPN)) )
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| 113 | IF ( DEBUG ) WRITE(MDEBUG,*) ' ISEL=1, NTOTEM=',NTOTEM
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| 114 |
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| 115 | ELSE
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| 116 |
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| 117 | C - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
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| 118 | C NOW THE CASE OF HAVING ENOUGH PARTICLES TO BE ABLE TO CREATE
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| 119 | C KAONS, NUCLEONS, AND HYPERONS TOO.
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| 120 |
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| 121 | C ...FOR NEUTRALS
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| 122 | NCOUNT = 0
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| 123 | C BEGIN OF REJECT LOOP
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| 124 | 1002 K = 1
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| 125 | CALL RMMAR( RD,NEUTOT+3,1 )
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| 126 | C DETERMINE NUMBER OF PI(0), ETA, K0S/K0 PAIRS, NEUTRON/ANTINEUTRON
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| 127 | C PAIRS, AND NEUTRAL HYPERON PAIRS AND SUM UP THE GAMMAS
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| 128 | C FOR 1ST + 2ND STRING: J IS 2; FOR 3RD STRING: J IS 3
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| 129 | SGAMMA = 0.D0
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| 130 | DO 1010 J = 2,3
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| 131 | NNUCN(J) = 0
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| 132 | NKA0(J) = 0
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| 133 | NHYPN(J) = 0
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| 134 | NETA(J,1) = 0
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| 135 | NETA(J,2) = 0
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| 136 | NETA(J,3) = 0
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| 137 | NETA(J,4) = 0
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| 138 | NPIZER(J) = 0
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| 139 | IF ( J .EQ. 2 ) THEN
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| 140 | C SET BOUNDARY FOR GAMMA SUM
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| 141 | GABOU = SEUGF
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| 142 | NNTOT = INT(FNEUT2)
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| 143 | C CALCULATE BOUNDARY NNTOT OF PARTICLE LOOP RATHER AT RANDOM THAN BY
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| 144 | C ROUNDING OF FNEUT2 TO AVOID DIGITIZING EFFECTS ON THE NEUTRAL
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| 145 | C PARTICLE COMPOSITION AT COLLISIONS WITH LOW MULTIPLICITY
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| 146 | IF ( NNTOT+RD(NEUTOT+2) .GE. FNEUT2 ) NNTOT = NNTOT+1
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| 147 | ELSE
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| 148 | IF ( RC3TO2 .LE. 0.D0 ) GOTO 1010
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| 149 | GABOU = GABOU + SEUGF* RC3TO2
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| 150 | NNTOT = INT(FNEUT)
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| 151 | IF ( NNTOT+RD(NEUTOT+3) .GE. FNEUT ) NNTOT = NNTOT+1
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| 152 | ENDIF
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| 153 | IF ( DEBUG ) WRITE(MDEBUG,*) ' J,NNTOT=',J,NNTOT
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| 154 | C START NEUTRAL PARTICLE PRODUCTION LOOP
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| 155 | 1003 CONTINUE
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| 156 | IF ( K .LT. NNTOT ) THEN
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| 157 | RNDM = RD(K)
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| 158 | ELSEIF ( K .EQ. NNTOT ) THEN
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| 159 | C RENORMALIZE THE RANDOM NUMBER, THAT ONLY PI(0) OR ETA IS PRODUCED
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| 160 | C BUT PAIR PRODUCTION BECOMES IMPOSSIBLE
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| 161 | RNDM = RD(K) * RPIER
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| 162 | ELSEIF ( K .GT. NNTOT ) THEN
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| 163 | GOTO 1010
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| 164 | ENDIF
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| 165 | IF ( RNDM .LE. RPI0R ) THEN
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| 166 | C PI(0)
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| 167 | SGAMMA = SGAMMA + 2.D0
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| 168 | NPIZER(J) = NPIZER(J) + 1
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| 169 | K = K + 1
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| 170 |
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| 171 | ELSEIF ( RNDM .LE. RPIER ) THEN
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| 172 | C ETA
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| 173 | CALL RMMAR( RDETA,1,1 )
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| 174 | IF ( RDETA .LE. CETA(1) ) THEN
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| 175 | SGAMMA = SGAMMA + 2.D0
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| 176 | NETA(J,1) = NETA(J,1) + 1
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| 177 | ELSEIF ( RDETA .LE. CETA(2) ) THEN
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| 178 | SGAMMA = SGAMMA + 6.D0
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| 179 | NETA(J,2) = NETA(J,2) + 1
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| 180 | ELSEIF ( RDETA .LE. CETA(3) ) THEN
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| 181 | SGAMMA = SGAMMA + 2.D0
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| 182 | NETA(J,3) = NETA(J,3) + 1
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| 183 | ELSE
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| 184 | SGAMMA = SGAMMA + 1.D0
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| 185 | NETA(J,4) = NETA(J,4) + 1
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| 186 | ENDIF
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| 187 | K = K + 1
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| 188 |
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| 189 | ELSEIF ( RNDM .LE. RPEKR ) THEN
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| 190 | C K0S/K0L PAIR; RPEKR IS NORMALIZED FOR K0 PAIR FORMATION
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| 191 | C THE UA5 GAMMA YIELD DOES NOT INCLUDE GAMMAS FROM K DECAY !!!
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| 192 | C SEE: ANSORGE ET AL., Z. PHYS. C43 (1989) 75
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| 193 | NKA0(J) = NKA0(J) + 1
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| 194 | K = K + 2
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| 195 | ELSEIF ( RNDM .LE. RPEKNR ) THEN
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| 196 | C NEUTRON-ANTINEUTRON PAIR
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| 197 | NNUCN(J) = NNUCN(J) + 1
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| 198 | K = K + 2
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| 199 | ELSE
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| 200 | C HYPERON-ANTIHYPERON PAIR
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| 201 | C AVERAGE NEUTRAL HYPERON PAIR L0 --> .357*2 GAMMAS = 0.714 GAMMAS
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| 202 | C S0 --> L0 + 1 GAMMA = 1.714 GAMMAS
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| 203 | C THEY ARE INCLUDED IN UA5 GAMMA MULTIPLICITIES, THEREFORE COUNT
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| 204 | SGAMMA = SGAMMA + 2.428D0
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| 205 | NHYPN(J) = NHYPN(J) + 1
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| 206 | K = K + 2
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| 207 | ENDIF
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| 208 | GOTO 1003
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| 209 | 1010 CONTINUE
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| 210 | IF ( DEBUG ) WRITE(MDEBUG,1020) ( 2*NNUCN(J),2*NKA0(J),
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| 211 | * 2*NHYPN(J),NETA(J,1),NETA(J,2),NETA(J,3),NETA(J,4),
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| 212 | * NPIZER(J),J=2,3 ), NNTOT,GABOU,SGAMMA,SGAMMA/GABOU
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| 213 | 1020 FORMAT(' PARNUM: NEUTRALS (1.,2.STRING)=',8I5,/
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| 214 | * ' NEUTRALS (3. STRING) =',8I5,/
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| 215 | * ' NNTOT,SEUGF2+3,SGAMMA,RATIO=',I6,3(2X,F10.5))
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| 216 | C REJECT ALL NEUTRALS, IF SUM OF GAMMAS DEVIATES BY MORE THAN SIGMA
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| 217 | IF ( (SGAMMA - GABOU)**2 .GT. GABOU ) THEN
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| 218 | NCOUNT = NCOUNT + 1
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| 219 | C AFTER 20 TRIES SET FLAG INUMFL TO 1 AND RETURN
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| 220 | IF ( NCOUNT .LE. 20 ) GOTO 1002
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| 221 | INUMFL = 1
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| 222 | RETURN
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| 223 | ENDIF
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| 224 | C ALL NEUTRALS
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| 225 | NNN = NNUCN(2) + NNUCN(3)
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| 226 | NKN = NKA0(2) + NKA0(3)
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| 227 | NHN = NHYPN(2) + NHYPN(3)
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| 228 | NETAS(2) = NETA(2,1) + NETA(2,2) + NETA(2,3) + NETA(2,4)
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| 229 | NETAS(3) = NETA(3,1) + NETA(3,2) + NETA(3,3) + NETA(3,4)
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| 230 | NET = NETAS(2) + NETAS(3)
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| 231 | NPN = NPIZER(2) + NPIZER(3)
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| 232 |
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| 233 | C ...FOR CHARGED
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| 234 | I = 1
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| 235 | CALL RMMAR( RD,NCH-1,1 )
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| 236 | C START CHARGED PARTICLE PRODUCTION LOOP
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| 237 | 1101 CONTINUE
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| 238 | RNDM = RD(I)
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| 239 | IF ( RNDM .LT. PPICH ) THEN
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| 240 | C PI(+-)
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| 241 | NPC = NPC + 1
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| 242 | I = I + 1
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| 243 | ELSEIF ( RNDM .LT. PPINCH ) THEN
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| 244 | C PROTON/ANTIPROTON PAIR
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| 245 | NNC = NNC + 1
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| 246 | I = I + 2
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| 247 | ELSEIF ( RNDM .LT. PPNKCH ) THEN
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| 248 | C KAON(+,-) PAIR
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| 249 | NKC = NKC + 1
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| 250 | I = I + 2
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| 251 | ELSE
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| 252 | C CHARGED HYPERON/ANTIHYPERON PAIR
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| 253 | NHC = NHC + 1
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| 254 | I = I + 2
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| 255 | ENDIF
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| 256 | IF ( I .LT. NCH ) THEN
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| 257 | GOTO 1101
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| 258 | ELSEIF ( I .EQ. NCH ) THEN
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| 259 | C ONLY 1 CHARGED PARTICLE TO BE PRODUCED WHICH IS PI(+-)
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| 260 | NPC = NPC + 1
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| 261 | ENDIF
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| 262 | C CORRECT CHARGED PION NUMBER FOR DECAY OF ETA'S
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| 263 | NCORR = 2 * ( NETA(2,3) + NETA(2,4) + NETA(3,3) + NETA(3,4) )
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| 264 | NPC = MAX( 0, NPC - NCORR )
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| 265 | IF ( DEBUG ) WRITE(MDEBUG,*) ' NPC,NPN,NCORR,LASTPI=',
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| 266 | * NPC,NPN,NCORR,LASTPI
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| 267 | ENDIF
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| 268 | C CORRECT NUMBER OF CHARGED AND NEUTRAL PIONS FOR RESONANCE DECAY
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| 269 | C (NRESPC, NRESPN)
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| 270 | NPC = MAX( 0, NPC - NRESPC + LASTPI )
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| 271 | C INCREASE NPN ADDITIONALLY BY 1 TO MEET UA5 DATA, WHICH REPRODUCE ON
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| 272 | C AVERAGE ONE EXCHANGED CHARGE (LASTPI = +1).
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| 273 | NPN = MAX( 0, NPN - NRESPN - LASTPI + 1 )
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| 274 | C TOTAL NUMBER OF CHARGED PARTICLES
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| 275 | NCH = (NNC + NKC + NHC) * 2 + NPC
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| 276 | C NOW ALL PARTICLES ARE DETERMINED
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| 277 | IF ( DEBUG ) WRITE(MDEBUG,*)
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| 278 | * 'PARNUM: TOT.CHARGED=',2*NNC,2*NKC,2*NHC,NPC,
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| 279 | * 'PARNUM: TOT.NEUTRAL=',2*NNN,2*NKN,2*NHN,NET,NPN
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| 280 |
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| 281 | RETURN
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| 282 | END
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