Strategy for achieving true sub-micron orbit stabilization at the Advanced Photon Source

G. Decker, O. Singh
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引用次数: 3

Abstract

The Advanced Photon Source was commissioned in March 1995 to provide high-brightness ultrastable X-ray photon beams to its user community. The original beam stability specifications were that the source points not move more than 4.5 microns RMS vertically and 17 microns RMS horizontally. Reductions in coupling, together with planned reductions in emittance and increasing beamline user sophistication, are pushing the envelope of presently achievable beam stabilization methods. While beam stability below the 2-micron RMS level is achieved routinely in the band from 0.016 Hz to 30 Hz in both the vertical and horizontal planes, much remains to be done to reduce this level below 1 micron RMS. An additional challenge is to maintain the beam stability for longer time periods, i.e., days to weeks. This paper discusses progress to date on these issues and suggests methodologies for further improvements.
在先进光子源上实现真正亚微米轨道稳定的策略
先进光子源于1995年3月投入使用,为其用户社区提供高亮度超稳定x射线光子光束。最初的波束稳定性规范是,源点垂直移动不超过4.5微米RMS,水平移动不超过17微米RMS。耦合的减少,以及计划中的发射度的降低和波束线用户复杂性的提高,正在推动目前可实现的波束稳定方法的发展。虽然在垂直和水平面上,在0.016 Hz到30 Hz的波段内,通常可以实现低于2微米RMS水平的波束稳定性,但要将该水平降低到1微米RMS以下,还有很多工作要做。另一个挑战是在更长的时间内保持光束的稳定性,即几天到几周。本文讨论了迄今为止在这些问题上的进展,并提出了进一步改进的方法。
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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