Localized chromaticity correction of low-beta insertions in storage rings

Lawrence Berkeley Laboratory, M. Donald, R. Helm, J. Irwin, H. Moshammer, É. Forest, D. Robin, A. Zholents, M. Sullivan, H. Irwin, Moshammer
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引用次数: 13

Abstract

The correction of the chromaticity of low-beta insertions in the storage rings is usually made with sextupole lenses in the ring's arcs. When decreasing the beta functions at the insertion point (IP), this technique becomes fairly ineffective, since it fails to properly correct the higher order chromatic aberrations. Here we consider the approach where the chromatic effects of the quadrupole lenses generating low beta functions at the IP are corrected locally with two families of sextupoles, one family for each plane. Each family has two pairs of sextupoles which are located symmetrically on both sides of the IP. The sextupole-like aberrations of individual sextupoles are eliminated by utilizing optics forming a -I transformation between sextupoles in the pair. The optics also includes bending magnets which preserve equal dispersion functions at the two sextupoles in each pair. At sextupoles in one family, the vertical beta function is made large and the horizontal is made small. The situation is reversed in the sextupoles of the other family. The betatron phase advances from the IP to the sextupoles are chosen to eliminate a second order chromatic aberration. The application of the localized chromatic correction is demonstrated using as an example the lattice design for the Low Energy Ring of the SLAC/LBL/LLNL PEP-II B Factory.<>
储存环中低β插入物的局部色度校正
存储环中低β插入物的色度校正通常用环弧中的六极透镜进行。当降低插入点(IP)的beta函数时,这种技术变得相当无效,因为它不能正确地纠正高阶色差。在这里,我们考虑的方法是,四极透镜的色度效应产生低β函数在IP是局部校正与两族的六极,每个平面一个族。每个家族都有两对六极,对称地位于IP的两侧。通过利用光学在对中的六极之间形成-I变换,消除了单个六极的类六极像差。光学系统还包括弯曲磁体,在每对磁体的两个六极保持相同的色散功能。在一个家族的六极上,垂直的beta函数变大,水平的变小。另一个家庭的情况正好相反。选择从IP到六极的betatron相位推进来消除二阶色差。以SLAC/LBL/LLNL PEP-II B工厂低能环的晶格设计为例,说明了局域色差校正的应用。
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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