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Generation of ultra-short, high brightness electron beams for single-spike SASE FEL operation

机译:生成超短,高亮度电子束,用于单脉冲SASE FEL操作

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摘要

In this paper, we study the production of low charge-in the 1 pC range-high brightness, ultra-short electron bunches, with a length shorter than 1 micromn, to produce sub-femtosecond pulses in an X-ray FEL. We show that the electron bunches have a brightness one or two orders of magnitude larger than the current photoinjectors run in their design regime. The ultra-short bunches can be used to drive a high gain SASE X-ray FEL with a small gain length, to produce femtosecond to attosecond X-ray pulses. This method to produce such short X-ray pulses has the advantage over other proposed methods in that it can be free from longer pulse duration background radiation. We also show, using nascent SPARX SASE FEL as an example, that the electron bunch thus produced can be shorter than the cooperation length of the X-ray FEL, leading to the production of a single spike, fully coherent, X-ray pulse. The proposed system for the production of ultra-short bunches uses the same injector hardware configuration of X-ray FELs like SPARX or the LCLS, operated with a different set of parameters, and does not require any new technical development in the injector and compressor systems.
机译:在本文中,我们研究了在1 pC范围内产生低电荷的高亮度超短电子束(其长度小于1微米),从而在X射线FEL中产生亚飞秒脉冲。我们表明,电子束的亮度比当前在其设计方案中运行的光电注入器大一到两个数量级。超短束可用于驱动增益长度较小的高增益SASE X射线FEL,以产生飞秒至阿秒级的X射线脉冲。这种产生这种短X射线脉冲的方法具有优于其他建议方法的优点,因为它可以避免较长的脉冲持续时间背景辐射。我们还以新生的SPARX SASE FEL为例,表明由此产生的电子束可以比X射线FEL的协同长度更短,从而产生单个尖峰,完全相干的X射线脉冲。提议的用于生产超短束的系统使用与SPARX或LCLS等X射线FEL相同的喷射器硬件配置,并以不同的参数集进行操作,并且不需要在喷射器和压缩机系统中进行任何新的技术开发。

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