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ZGOUBI USERS' GUIDE - HEP

ZGOUBI USERS' GUIDE - HEP

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Keywords and input data formatting 203{ 1¢·@@@îR \\ , îwPOLARMES2-D polar mesh magnetic field mapmid-plane symmetry is assumed¤ ², ¤;¨ ¤ ²—q ": print the map 0-2, 0-2 2*I: print field and coordinates along trajectories¤÷¨ BNORM, AN,RN Field and A-,R-coordinate normalization coeffs. 3*no dim. 3*Eq "TIT Title (begin with “FLIP” to get field map A-flipped) A80¤¦´ ,Number of angular and radial nodes of the mesh@ \\2*IFNAME 1 Filename (e.g., spes2.map) A80q , 2*no dim., I,3*E: as for CARTEMES cm [,2*no dim., [,3*E,etc.]cm, etc.], , , Integration boundary. Ineffective when ¤ O †\. Ž¤`O ´, ¡ ¡ , ² ) ² -1, 1 or Ž) [´ ) ¤`O,etc., ¤`O Ž@ Aif) ¡ )IORDRE Degree of interpolation polynomial 2, 4 or 25 I(see DIPOLE-M)XPAS Integration step cm E1|¢ O¥KPOS as for DIPOLE-M. Normally 2. 1-2 IIf KPOS = 2, , ,cm, rad, cm, rad 4*EIf KPOS = 1no dim. E1 FNAME contains the field data. These must be formatted according to the following FORTRAN sequence:OPEN (UNIT = NL, FILE = FNAME, STATUS = ‘OLD’ [,FORM=’UNFORMATTED’])IF (BINARY) THENREAD(NL) (Y(J), J=1, JY)ELSEREAD(NL,100) (Y(J), J=1, JY)ENDIF100 FORMAT(10 F8.2)DO 1 I = 1,IXIF (BINARY) THENREAD (NL) X(I), (BMES(I,J), J=1, JY)ELSEREAD(NL,101) X(I), (BMES(I,J), J=1, JY)101 FORMAT(10 F8.1)ENDIF1 CONTINUEwhere ›éQí and Ié(í are the longitudinal and transverse coordinates and BMES is the field component at a node é(íof the mesh. For binary files, FNAME must begin with B .‘Binary’ will then automatically be set to ‘.TRUE.’

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