论文标题

耦合的Betatron运动参数化和应用到强耦合晶格的应用

Review of coupled betatron motion parametrizations and applications to strongly coupled lattices

论文作者

Vanwelde, Marion, Hernalsteens, Cédric, Bogacz, S. Alex, Machida, Shinji, Pauly, Nicolas

论文摘要

横向运动的耦合是粒子加速器中的自然发生,要么是由不完美的残留耦合形式出现的,要么是由强大的系统耦合场设计起来的。虽然第一个可以扰动地处理,但后者需要适合强耦合光学器件的可靠方法,并且必须执行线性光学的参数化,以探索此类特殊晶格中的光束动力学。本文回顾了通常提出的主要概念来描述耦合的光学,并阐明了拟议的参数化形式主义。不同方法使用的广义二十个参数之间的链接已正式证明,并突出了它们的物理解释。分析方法已在参考Python软件包中实现,并与射线追踪代码连接,以探索具有复杂3D字段的强烈耦合晶格。详细讨论了多个示例,以突出晶格的参数化和特征的关键物理解释。

The coupling of transverse motion is a natural occurrence in particle accelerators, either in the form of a residual coupling arising from imperfections or originating by design from strong systematic coupling fields. While the first can be treated perturbatively, the latter requires a robust approach adapted to strongly coupled optics and a parametrization of the linear optics must be performed to explore beam dynamics in such peculiar lattices. This paper reviews the main concepts commonly put forth to describe coupled optics and clarifies the proposed parametrization formalisms. The links between the generalized Twiss parameters used by the different approaches are formally proven, and their physical interpretations are highlighted. The analytical methods have been implemented in a reference Python package and connected with a ray-tracing code to explore strongly coupled lattices featuring complex 3D fields. Multiple examples are discussed in detail to highlight the key physical interpretations of the parametrizations and characteristics of the lattices.

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