Demonstration of Autonomous Emittance Characterization at the Argonne Wakefield Accelerator

Q3 Physics and Astronomy
Ryan Roussel, Dylan Kennedy, Auralee Edelen, Seongyeol Kim, Eric Wisniewski, John Power
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引用次数: 0

Abstract

Transverse beam emittance plays a key role in the performance of high-brightness accelerators. Characterizing beam emittance is often carried out using a quadrupole scan, which fits beam matrix elements to experimental measurements using first-order beam dynamics. Despite its simplicity at face value, this procedure is difficult to automate due to practical limitations. Key issues that must be addressed include maintaining beam size measurement validity by keeping beams within the radius of diagnostic screens, ensuring that measurement fitting produces physically valid results, and accurately characterizing emittance uncertainty. We describe a demonstration of the Bayesian exploration technique towards solving this problem at the Argonne Wakefield Accelerator, enabling a turn-key, autonomous quadrupole scan tool that can be used to quickly measure beam emittances at various locations in accelerators with limited operator input.
在Argonne Wakefield加速器上的自主发射度表征演示
横向光束发射度是影响高亮度加速器性能的关键因素。表征光束发射度通常使用四极扫描进行,该扫描将光束矩阵元素与使用一阶光束动力学的实验测量相匹配。尽管表面上看起来很简单,但由于实际的限制,这个过程很难自动化。必须解决的关键问题包括通过将光束保持在诊断屏幕的半径内来保持光束尺寸测量的有效性,确保测量拟合产生物理有效的结果,并准确表征发射度的不确定性。我们描述了在Argonne Wakefield加速器上解决这一问题的贝叶斯勘探技术的演示,实现了一个交钥匙、自主的四极扫描工具,可用于在操作员输入有限的情况下快速测量加速器中不同位置的光束发射。
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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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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