发射度增长校正的多级束压缩中基于八极子的电流喇叭抑制

N. Sudar, Y. Nosochkov, K. Bane, Z. Zhang, Y. Ding
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引用次数: 6

摘要

高亮度线性加速器通常产生的电子束在电流剖面的头部和/或尾部有峰值。由于纵向相空间的非线性相关和压缩器的高阶光学特性,这些电流角在压缩后形成。有人建议,这种高阶压缩可以通过在束式压缩机的中心附近插入一个八极磁铁来纠正。然而,这种方案提供了一个相关的横向冲击,导致预测发射度的增长。我们提出了一种方法,其中八极磁铁插入到两个连续束压缩机。通过调整两个八极子之间的$\pi$位进,来自第一个八极子的相关横向冲击可以被第二个八极子纠正,同时提供高阶压缩的累积调整。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Octupole based current horn suppression in multistage bunch compression with emittance growth correction
High brightness linear accelerators typically produce electron beams with peaks in the head and/or tail of the current profile. These current horns are formed after bunch compression due to non-linear correlations in the longitudinal phase space and the higher order optics of the compressor. It has been suggested that this higher order compression can be corrected by inserting an octupole magnet near the center of a bunch compressor. However, this scheme provides a correlated transverse kick leading to growth of the projected emittance. We present here a method whereby octupole magnets are inserted into two sequential bunch compressors. By tuning a $\pi$ betatron phase advance between the two octupoles, the correlated transverse kick from the first octupole can be corrected by the second, while providing a cummulative adjustment of the higher order compression.
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