2005Digest of the Fifth Biennial IEEE Conference on Electromagnetic Field ComputationRequires access

Field Computations of Sextupole Magnets for Particle Accelerators

L.R. Tumer, L. Kethunen

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Abstract

Summary from only given, as follows. Sextupole magnets are required in particle accelerators, but their design and computation involve particular difficulties. The characteristic 3-fold rotation symmetry of a sextupole is ill-matched to the 2-fold and 4-fold symmetries often desired for the mechanical location and support of magnets. Also, the quadratic variation of the field within the bore region does not lend itself to computation with first- and second-order finite elements as typically found in computer codes. Computation of sextupole magnets for the Advanced Photon Source (APS) at Argonne National Laboratory (ANL) is described.

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What this paper is about

Summary from only given, as follows. Sextupole magnets are required in particle accelerators, but their design and computation involve particular difficulties. The characteristic 3-fold rotation symmetry of a sextupole is ill-matched to the 2-fold and 4-fold symmetries often desired for the mechanical location and support of magnets. Also, the quadratic variation of the field within the bore region does not lend itself to computation with first- and second-order finite elements as typically found in computer codes. Computation of sextupole magnets for the Advanced Photon Source (APS) at Argonne National Laboratory (ANL) is described.

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Available abstract

Summary from only given, as follows. Sextupole magnets are required in particle accelerators, but their design and computation involve particular difficulties. The characteristic 3-fold rotation symmetry of a sextupole is ill-matched to the 2-fold and 4-fold symmetries often desired for the mechanical location and support of magnets. Also, the quadratic variation of the field within the bore region does not lend itself to computation with first- and second-order finite elements as typically found in computer codes. Computation of sextupole magnets for the Advanced Photon Source (APS) at Argonne National Laboratory (ANL) is described.

Key concepts: Computation, Magnet, Physics, Particle accelerator, Rotation (mathematics), Field (mathematics), Advanced Photon Source, Computer science

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