Fast Dynamic Aperture Optimization with Reversal Integration

Yongjun Li, Y. Hao, K. Hwang, R. Rainer, A. He, Ao Liu
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引用次数: 3

Abstract

A fast method for dynamic aperture (DA) optimization of storage rings has been developed through the use of reversal integration. While chaotic dynamical systems have exact time-reversal symmetry, numerical forward integration differs from its reversal due to scaled cumulative round-off errors. The difference, intrinsically associated with the Lyapunov exponent, is a generic indicator of chaos because it represents the sensitivity of chaotic motion to an initial condition. A chaos indicator of the charged particle motion is then obtained by comparing the forward integrations of particle trajectories with corresponding reversals, a.k.a. "backward integrations." The indicator was confirmed to be observable through short-term particle tracking simulations. Therefore, adopting it as an objective function could speed up optimization. The DA of the National Synchrotron Light Source II storage ring, and another test diffraction-limited light source ring, were optimized using this method for the purpose of demonstration.
基于反转积分的快速动态孔径优化
提出了一种利用反演积分快速优化存储环动态孔径的方法。混沌动力系统具有精确的时间反转对称性,但由于按比例累积舍入误差,其数值正积分与其反转不同。与李雅普诺夫指数内在相关的差值是混沌的一般指标,因为它表示混沌运动对初始条件的敏感性。然后,通过比较粒子轨迹的正向积分与相应的反向积分,即反向积分,获得带电粒子运动的混沌指示器。“向后集成。”通过短期粒子跟踪模拟证实了该指标的可观测性。因此,将其作为目标函数可以加快优化速度。利用该方法对国家同步加速器II型光源存储环的DA和另一个测试限衍射光源环进行了优化,并进行了论证。
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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