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High-Gain Thompson-Scattering X-Ray Free-Electron Laser by Time-Synchronic Laterally Tilted Optical Wave

机译:时间同步横向倾斜光波的高增益汤普森散射X射线自由电子激光器

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摘要

A novel approach to generating coherent x rays with 10~9-10~(10) photons and femtoseconds duration per laser pulse is proposed. This high intensity x-ray source is realized first by the pulse front tilt of a lateral fed laser to extend the electron-laser synchronic interaction time by several orders, which accomplishes the high-gain free-electron-laser-type exponential growth process and coherent emission with highly microbunched electron beam. Second, two methods are presented to enhance the effective optical undulator strength parameter. One is to invoke lenses to focus two counterpropagating lasers that are at normal incidence to the electron beam as a transverse standing wave; the other is to invent a periodic microstructure that can significantly enhance the center electromagnetic field realized by a resonant standing wave and the quadrupole waveguides. The energy coupling efficiency between the electron beam and laser is therefore greatly improved to generate the high brightness x rays, which is demonstrated by analytical and simulation results.
机译:提出了一种新的产生相干X射线的方法,该相干X射线具有每个激光脉冲10〜9-10〜(10)个光子和飞秒的持续时间。这种高强度X射线源首先是通过横向馈电激光器的脉冲前倾斜将电子-激光同步相互作用时间延长几个数量级来实现的,从而完成了高增益自由电子-激光类型的指数增长过程,并且高束电子束的相干发射。其次,提出了两种方法来增强有效的光学起伏器强度参数。一种是调用透镜来聚焦与电子束垂直入射的两个反向传播的激光,作为横向驻波。另一种是发明一种周期性的微结构,可以显着增强由谐振驻波和四极波导所实现的中心电磁场。因此,分析和仿真结果证明,电子束和激光之间的能量耦合效率得到了极大提高,以产生高亮度X射线。

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