256 REFERENCES[25] M.W. Garrett, Calculation of fields [...] by elliptic integrals, J. Appl. Phys., 34, 9, sept. 1963.[26] P.F. Byrd and M.D. Friedman, Handbook of elliptic integrals for engineers and scientists, pp. 282-283, Springer-Verlag, Berlin, 1954.[27] A. Tkatchenko, Computer program UNIPOT, SATURNE, CEA Saclay, 1982.[28] J.L. Chuma, PLOTDATA, TRIUMF Design Note TRI-CO-87-03a.[29] J.L. Hamel, mini graphic library LIBMINIGRAF, CEA-DSM, Saclay, 1996.[30] E. Grorud, J.L. Laclare, G. Leleux, Résonances de dépolarisation dans SATURNE 2, Int. report GOC-GERMA75-48/TP-28, CEA Saclay (1975), and Home Computer Codes POLAR and POPOL, IRF/LNS/GT, CEA Saclay(1975).[31] M. Froissart et R. Stora, Dépolarisation d’un faisceau de protons polarisés dans un synchrotron, NIM 7 (1960)297-305.[32] J. Thirion et P. Birien, Le spectromètre II, Internal Report DPh-N/ME, CEA Saclay, 23 Déc. 1975;H. Catz, Le spectromètre II, Internal Report DPh-N/ME, CEA Saclay, 1980.[33] P. Pile, I-H. Chiang, K. K. Li, C. J. Kost, J. Doornbos, F. Méot et als., A two-stage separated 800-MeV/c Kaonbeamline, TRIUMF and BNL Preprint (1997).[34] F. Méot, The raytracing code Zgoubi, CERN SL/94-82 (AP) (1994), 3rd Intern. Workshop on Optimization andInverse Problems in Electromagnetism, CERN, Geneva, Switzerland, 19-21 Sept. 1994.[35] W. H. Press et als., Numerical recipes, Cambridge Univ. Press (1987).[36] V. O. Kostroun, Simple numerical evaluation of modified Bessel functions and integrals [...], NIM 172 (1980) 371-374.
Indexacceleration, 56, 58, 74, 155, 208, 210AIMANT, 46, 64, 83, 145ALE, 133AUTOREF, 69, 149backward ray-tracing, 132BEND, 19, 70, 150BINARY, 44, 151BORO, 158, 190, 194,¡ ! 1 !196, 36, 39, 42, 74BREVOL, 18, 71, 152CARTEMES, 18, 71, 72, 96, 100, 101, 106, 107, 115,132, 153, 220, 254CAVITE, 58, 74, 75, 133, 155CHAMBR, 56, 76, 76, 156, 209CHANGREF, 53, 69, 76, 77, 78, 157checking field, 132checking trajectories, 132CIBLE, 52, 78, 158COLLIMA, 56, 79, 159, 209constraint (FIT), 46, 48, 179Cromaticity, 126, 126, 131, 188DECAPOLE, 54, 80, 160, 207DIPOLE, 46, 70, 76, 81, 85, 133, 161, 231DIPOLE-M, 64, 66, 83, 107, 135, 162, 202DIPOLES, 85, 164DODECAPO, 19, 54, 88, 166, 207DRIFT, 89, 167EBMULT, 19, 26, 46, 54, 90, 168EL2TUB, 26, 91, 170ELMIR, 92, 171ELMIRC, 93, 172ELMULT, 26, 46, 54, 90, 94, 173ELREVOL, 25, 96, 132, 174END, 43, 45, 178ESL, 53, 89, 167FAISCEAU, 123, 175FAISCNL, 123, 133, 175, 254FAISTORE, 123, 133, 175, 254FFAG magnet, radial, 85, 97, 176FFAG magnet, spiral, 99, 177FIN, 45, 178FIT, 41, 43, 46, 46, 48, 179FLIP, 153, 184, 185, 220FOCALE, 124, 180FOCALEZ, 124, 180fringe fieldsoverlapping, 85GASCAT, 51, 181HISTO, 36, 37, 53, 79, 125, 125, 135, 182, 209², 132 ¤ID, 72, 153IDMAX , 39, 39IEX, 22, 39, 40, 63, 72, 76, 79, 123, 129, 135, 132 ¤÷¨IMAGE, 69, 124, 124, 183IMAGES, 39, 124, 124, 183IMAGESZ, 124, 183IMAGEZ, 124, 183IMAX , 36, 39, 40, 42, 53, 56, 60, 74, 75, 129, 133, 135INTEG, 209integration step size, 135coded, 135negative, 53, 132IORDRE, 19, 21, 54, 68, 72, 82, 84, 87, 115KPOS, 133¡W¢¨ , 58, 102, 123, 127, 133, 175, 186, 200, 254¨¦´MAP2D, 19, 100, 115, 184MAP2D-E, 19, 101, 185maps, summing, 152MARKER, 102, 186, 254MATPROD, 103, 187MATRIX, 41, 46, 48, 69, 103, 126, 126, 149, 188, 195MCDESINT, 36, 37, 39, 43, 52, 53, 56, 125, 189, 209,231MCOBJET, 36, 37, 48, 56, 57, 135, 190, 208Misalignement, 133Monte Carlo, 36, 42, 52, 56, 135, 190, 196multiparticle, 56, 135, 208MULTIPOL, 19, 46, 54, 58, 90, 94, 104, 193, 207multiturn, 35, 58, 74, 133, 208, 231, 244, 254multiturn tracking, 56negative charge, 36, 39, 135, 190, 194negative momentum, 36, 39, 135, 190, 194negative rigidity, 135NPASS, 56, 74, 123, 125, 129, 133, 135, 175, 208, 215OBJET, 39, 48, 52, 57, 69, 74, 76, 124, 131, 133, 135,179, 194OBJETA, 42, 56, 196OCTUPOLE, 54, 105, 197, 207ORDRE, 54, 198outpoi.lis, 106PARTICUL, 52, 55, 60, 62, 63, 79, 90–94, 96, 112, 118,120, 189, 199257
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CEA DSM DAPNIA-02-395 (2002)ZGOUBI
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Table of contentsPART A Description
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PART ADescription of software conte
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8¤¥ PARTICUL Particle characteris
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10ELECTROMAGNETIC ELEMENTSDecapoleD
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!!%" && 131 NUMERICAL CALCULATION
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1.2 Integration of the Lorentz Equa
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1.2 Integration of the Lorentz Equa
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4Ž ^ ˜ ¡§ ^"- ^ ˜ ¡ ^¡wTGT
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in fourth order. The coefficients
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4 ´ ´""4§> ´4 >4>1.4 Calculati
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A cylindrically symmetric field can
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Introducing also ¡The derivatives
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30 3 SYNCHROTRON RADIATION¾ÍôVT
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32 3 SYNCHROTRON RADIATIONÉ Éwher
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354 DESCRIPTION OF THE AVAILABLE PR
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4.2 Definition of an Object 37where
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4.2 Definition of an Object 39\Pqî
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4.2 Definition of an Object 41¹q
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4.3 Declaration of options 43\P4.3
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4.3 Declaration of options 45END or
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4.3 Declaration of options 47· £
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4.3 Declaration of options 49{ww{{q
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4.3 Declaration of options 51GASCAT
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4.3 Declaration of options 55PARTIC
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4.3 Declaration of options 57RESET:
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4.3 Declaration of options 59if qî
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4.3 Declaration of options 61P4©@4
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4.3 Declaration of options 63:£¨
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u2 >04.4 Optical Elements and relat
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4.5 Output Procedures 123¨ ¢ < ¤
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4.5 Output Procedures 1254·444"4HI
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4.5 Output Procedures 127PICKUPS: B
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4.5 Output Procedures 129wSPNPRNL,
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4.5 Output Procedures 131TWISS: Cal
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4.6 Complementary Features 133U@©@
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4.6 Complementary Features 135¢ww@
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Keywords and input data formatting
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Keywords and input data formatting
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146 Keywords and input data formatt
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148 Keywords and input data formatt
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