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Model-independent and fast determination of optical functions in storage rings via multiturn and closed-orbit data

机译:通过多圈和闭轨数据,与模型无关并快速确定存储环中的光学功能

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Multiturn (or turn-by-turn) data acquisition has proven to be a new source of direct measurements for Twiss parameters in storage rings. On the other hand, closed-orbit measurements are a long-known tool for analyzing closed-orbit perturbations with conventional beam position monitor (BPM) systems and are necessarily available at every storage ring. This paper aims at combining the advantages of multiturn measurements and closed-orbit data. We show that only two multiturn BPMs and four correctors in one localized drift space in the storage ring (diagnostic drift) are sufficient for model-independent and absolute measuring of $ensuremath{eta}$ and $ensuremath{arphi}$ functions at all BPMs, including the conventional ones, instead of requiring all BPMs being equipped with multiturn electronics.
机译:事实证明,多圈(或逐圈)数据采集是直接测量存储环中Twiss参数的新来源。另一方面,闭轨测量是用于使用常规波束位置监控器(BPM)系统分析闭轨扰动的众所周知的工具,并且在每个存储环上都必不可少。本文旨在结合多圈测量和封闭轨道数据的优势。我们显示,在存储环的一个局部漂移空间中(诊断漂移)仅两个多匝BPM和四个校正器就足以独立于模型并绝对地测量$ ensuremath { beta} $和$ ensuremath { varphi} $在所有BPM(包括传统BPM)上都可以发挥功能,而不是要求所有BPM都配备多匝电子设备。

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