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Demonstration Scheme for a Laser-Plasma-Driven Free-Electron Laser

机译:激光等离子驱动自由电子激光器的演示方案

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Laser-plasma accelerators are prominent candidates for driving next-generation compact light sources, promising high-brightness, few-femtosecond x-ray pulses intrinsically synchronized to an optical laser, and thus are ideally suited for pump-probe experiments with femtosecond resolution. So far, the large spectral width of laser-plasma-driven beams has been preventing a successful free-electron laser (FEL) demonstration using such sources. In this paper, we study the application of an optimized undulator design and bunch decompression to large-energy-spread beams in order to permit FEL amplification. Numerically, we show a proof-of-principle scenario to demonstrate FEL gain in the vacuum ultraviolet range with electron beams from laser-plasma accelerators as currently available in experiments.
机译:激光等离子加速器是驱动下一代紧凑型光源的重要候选产品,它们具有与光学激光器固有同步的高亮度,飞秒级的X射线脉冲,因此非常适合于飞秒分辨率的泵浦探针实验。到目前为止,激光等离子驱动光束的大光谱宽度一直在阻止使用此类光源成功进行自由电子激光(FEL)演示。在本文中,我们研究了优化的起伏器设计和束解压缩在大能量扩展束中的应用,以允许FEL放大。从数值上讲,我们展示了一个原理证明场景,以实验中当前可用的激光等离子加速器的电子束证明真空紫外范围内的FEL增益。

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