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Chirped pulse amplification in an extreme-ultraviolet free-electron laser

机译:极紫外自由电子激光器中的脉冲放大

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摘要

Chirped pulse amplification in optical lasers is a revolutionary technique, which allows the generation of extremely powerful femtosecond pulses in the infrared and visible spectral ranges. Such pulses are nowadays an indispensable tool for a myriad of applications, both in fundamental and applied research. In recent years, a strong need emerged for light sources producing ultra-short and intense laser-like X-ray pulses, to be used for experiments in a variety of disciplines, ranging from physics and chemistry to biology and material sciences. This demand was satisfied by the advent of short-wavelength free-electron lasers. However, for any given free-electron laser setup, a limit presently exists in the generation of ultra-short pulses carrying substantial energy. Here we present the experimental implementation of chirped pulse amplification on a seeded free-electron laser in the extreme-ultraviolet, paving the way to the generation of fully coherent sub-femtosecond gigawatt pulses in the water window (2.3–4.4 nm).
机译:光学激光器中的脉冲放大是一项革命性的技术,它可以在红外和可见光谱范围内产生极其强大的飞秒脉冲。如今,这样的脉冲是基础研究和应用研究中无数应用的必不可少的工具。近年来,强烈需要产生超短且强烈的类似激光的X射线脉冲的光源,这些光源可用于从物理和化学到生物学和材料科学的各个学科的实验。短波长自由电子激光器的出现满足了这一需求。然而,对于任何给定的自由电子激光器装置,目前在携带大量能量的超短脉冲的产生中存在限制。在这里,我们介绍在极紫外光下的种子自由电子激光器上chi脉冲放大的实验实现,为在水窗(2.3–4.4?nm)中产生完全相干的亚飞秒千兆瓦脉冲的产生铺平了道路。

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