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ZGOUBI USERS' GUIDE - HEP

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237zgoubi data file.800 MeV/c KAON BEAM LINE. CALCULATION OF TRANSFER COEFFICIENTS.’OBJET’ 12668.5100 AUTOMATIC GENERATION OF6 AN OBJECT FOR CALCULATION.1 .1 .1 .1 0. .001 OF THE FIRST ORDER TRANSFER0. 0. 0. 0. 0. 1. COEFFICIENTS WITH ’MATRIX’’PARTICUL’ 2493.646 1.60217733E-19 0. 0. 0. KAON M & Q, FOR USE IN WIEN FILTER’DRIFT’ 335.00000’QUADRUPO’ Q1 4076.2 15.24 13.630. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 525.00000’QUADRUPOLE’ Q2 6045.72 15.24 -11.35730. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 7-1.898’TOSCA’ 3-D MAP THE OF FIRST 80 0 BENDING MAGNET1.0313E-3 1. 1. 1. B, X, Y, Z normalization coefficients1D map at z=0, from TOSCA59 39 1bw6_0.map0 0. 0. 0.21.11 0 0 0’CHANGREF’ 90. -70.78 -43.8’FAISCEAU’ 10’DRIFT’ 11-49.38’OCTUPOLE’ 12010. 15.24 .60. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0.0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0..41 0. 0. 0.’SEXTUPOL’ SX1, COMPENSATION 130 OF THE Theta.Phi ABERRATION10. 15.24 2.4 AT VF10. 0. 0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0.0. 0. 0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0..41 0. 0. 0.’DRIFT’ 1450.0’WIENFILT’ FIRST VERTICAL WIEN FILTER 1502.16 55.E5 -.0215576 220. 10. 10.0.2401 1.8639 -0.5572 0.3904 0. 0.0.2401 1.8639 -0.5572 0.3904 0. 0.20. 10. 10.0.2401 1.8639 -0.5572 0.3904 0. 0.0.2401 1.8639 -0.5572 0.3904 0. 0.1.1. 0. 0. 0.’DRIFT’ 1630.’QUADRUPO’ Q3 17045.72 15.24 -6.3430. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 1810.0’MULTIPOL’ SX2 + OCTU, COMPENSATION 190 OF THE D.Phi AND D2.Phi10. 15.24 0. 0. -8. 1.2 0. 0. 0. 0. 0. 0. ABERRATIONS AT VF10. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0.0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0.0. 0. 0. 0. 0. 0. 0. 0. 0. 0..41 0. 0. 0.’DRIFT’ 2090.0’MATRIX’ TRANSFER COEFFICIENTS 212 0’COLLIMA’ FIRST VERTICAL FOCUS, 222 MASS SLIT2 14.6 .15E10 0. 0.’DRIFT’ 2320.0’QUADRUPO’ Q5 24045.72 15.24 10.9330. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 2510.0’MULTIPOL’ COMPENSATION OF 260 ABERRATIONS AT VF210. 15.24 0. 0. 0. 1. 0. 0. 0. 0. 0. 0.0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0.0. 0. 0. 0. 0. 0. 0. 0. 0. 0. 0.4 0.2490 5.3630 -2.4100 0.9870 0. 0.0. 0. 0. 0. 0. 0. 0. 0. 0. 0..41 0. 0. 0.’DRIFT’ 2710.0’QUADRUPO’ Q6 28045.72 15.24 -11.1830. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 2950.0’WIENFILT’ SECOND VERTICAL WIEN FILTER 3002.16 -55.E5 .0215576 220. 10. 10.0.2401 1.8639 -0.5572 0.3904 0. 0.0.2401 1.8639 -0.5572 0.3904 0. 0.20. 10. 10.0.2401 1.8639 -0.5572 0.3904 0. 0.0.2401 1.8639 -0.5572 0.3904 0. 0.1.1. 0. 0. 0.’DRIFT’ 3130.0’QUADRUPO’ Q7 32045.72 15.24 -6.4430. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 3325.00000’QUADRUPO’ Q8 34045.72 15.24 8.08530. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 30.4 0.2490 5.3630 -2.4100 0.9870 0. 0.1.11 0. 0. 0.’DRIFT’ 3540.0’COLLIMA’ SECOND VERTICAL FOCUS, 362 MASS SLIT1 17. .2E10 0. 0.’MATRIX’ TRANSFER COEFFICIENTS 372 0’DRIFT’ 38-25.0’DIPOLE’ SIMULATION OF THE MAP 392 0 0 OF THE SECOND BENDING MAGNET150 60 (upgraded version of keyword ’AIMANT’)18.999 0. 0. 0.79.3329 17.7656 140.4480 110. 170.15. -1.4 .1455 2.2670 -.6395 1.1558 0. 0. 0.0.00 21.90 1.E6 -1.E6 1.E6 1.E615. -1.4 .1455 2.2670 -.6395 1.1558 0. 0. 0.-43.80 -21.90 -1.E6 -1.E6 1.E6 -1.E6022.52147.48099 -0.31007 147.48099 0.31007’DRIFT’ 40-15.00000’QUADRUPO’ Q9 41035.56 12.7 -13.69 -13.9130. 25.44 0.2490 5.3630 -2.4100 0.9870 0. 0.30. 25.44 0.2490 5.3630 -2.4100 0.9870 0. 0..51 0. 0. 0.

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