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使用聚束压缩器监测器对自由电子激光器中的电子束团长度进行绝对和非侵入式测定。

Absolute and non-invasive determination of the electron bunch length in a free electron laser using a bunch compressor monitor.

作者信息

Orlandi Gian Luca

机构信息

Paul Scherrer Institut, Forschungsstrasse 111, Villigen PSI, 5232, Switzerland.

出版信息

Sci Rep. 2024 Mar 15;14(1):6319. doi: 10.1038/s41598-024-56586-1.

Abstract

In a linac driven Free Electron Laser (FEL), the shot-to-shot and non-invasive monitoring of the electron bunch length is normally ensured by Bunch Compressor Monitors (BCMs). The bunch-length dependent signal of a BCM results from the detection and integration-over a given frequency band-of the temporal coherent enhancement of the radiation spectral energy emitted by the electron beam while experiencing a longitudinal compression. In this work, we present a method that permits to express the relative variation of the bunch length as a function of the relative statistical fluctuations of the BCM and charge signals. Furthermore, in the case of a BCM equipped with two detectors simultaneously operating in two distinct wavelength bands, the method permits an absolute determination of the electron bunch length. The proposed method is beneficial to a FEL. Thanks to it, the machine compression feedback can be tuned against the absolute measurement of the bunch length rather than a bunch-length dependent signal. In a CW-superconducting-linac driven FEL, it can offer the precious opportunity to implement a fully non-invasive and absolute diagnostics of the bunch length.

摘要

在直线加速器驱动的自由电子激光(FEL)中,电子束团长度的逐次和非侵入式监测通常由束团压缩监测器(BCM)来确保。BCM的与束团长度相关的信号源于对电子束在经历纵向压缩时所发射辐射光谱能量的时间相干增强在给定频带上的检测和积分。在这项工作中,我们提出了一种方法,该方法能够将束团长度的相对变化表示为BCM和电荷信号相对统计波动的函数。此外,在配备有两个同时在两个不同波长带工作的探测器的BCM的情况下,该方法允许对电子束团长度进行绝对测定。所提出的方法对自由电子激光有益。借助该方法,机器压缩反馈可以根据束团长度的绝对测量值而非与束团长度相关的信号进行调整。在连续波超导直线加速器驱动的自由电子激光中,它可以提供实现对束团长度进行完全非侵入式和绝对诊断的宝贵机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/343c/10943132/14150b02b650/41598_2024_56586_Fig1_HTML.jpg

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