用于自由电子激光器的3.9GHz加速腔场检测硬件

J. Piekarski, M. Zukocinski, K. Czuba, M. Hoffmann, F. Ludwig, H. Schlarb
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引用次数: 2

摘要

在汉堡自由电子激光加速器的注入器中安装了三次谐波系统,可以实现具有更高峰值电流的超短电子束,这将高亮度激光产生的极限推到了所谓的水窗。三谐波系统工作在3.9GHz,需要非常精确地控制加速场的相位和幅度,低于10fs,这是由低电平射频系统完成的。其中一个关键部件是射频场检测器,它将检测到的腔场信号转换为中频进行数字采样。本文介绍了该系统的总体情况,特别是低相位噪声基准发生器、本振和多通道下变频器。演示了系统方案和性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
3.9GHz accelerating cavity field detection hardware for the free-electron laser
The 3rd harmonic system installed in the injector at FLASH (Free-Electron Laser at Hamburg) accelerator allows to achieve ultra short electron bunches with higher peak current, which pushed the limits of high brilliance laser light generation into the so-called water window. The 3rd harmonic system operates at 3.9GHz and requires a very precise phase and amplitude control of the accelerating field below 10fs, which is done by the Low-Level RF system. One of the key component is the RF field detector that converts the detected cavity field signal to an intermediate frequency for digital sampling. The paper presents an overview of the system, particularly the low phase noise reference generator, local oscillator and multichannel down-converter. System scheme and performance are demonstrated.
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