The 3D Vector Potential, Magnetic Field and Stored Energy in a Thin cos2 theta Coil Array

S. Caspi
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Abstract

The vector potential and the magnetic field have been derived for an arrays of quadrupole magnets with thin Cos(2{theta}) current sheet placed at r = R.{sup bc}. The field strength of each coil within the array, varies purely as a Fourier sinusoidal series of the longidutinal coordinate z in proportion to {omega}{sub m}z, where {omega}{sub m} = (2m-1){pi}/L, L denotes the half-period, and m = 1,2,3 etc. The analysis is based on the expansion of the vector potential in the region external to the windings of a linear 3D quad, and a revision of that expansion by the application of the 'Addition Theorem' from that around the coil center to that around any arbitrary point in space.
薄cos2 theta线圈阵列中的三维矢量电位、磁场和存储能量
本文推导了四极磁体阵列的矢量势和磁场,四极磁体阵列的细Cos(2{theta})电流片放置在r = r {sup bc}处。阵列内每个线圈的场强纯粹以与{omega}{sub m}z成比例的纵向坐标z的傅立叶正弦级数变化,其中{omega}{sub m} = (2m-1){pi}/L, L表示半衰期,m = 1,2,3等。该分析是基于线性三维四边形绕组外部区域的矢量势的扩展,以及通过应用“加法定理”从线圈中心周围的扩展到空间中任意点周围的扩展的修正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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