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X-ray laser interferometry for probing high-density plasmas

机译:X射线激光干涉测量探测高密度等离子体

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Collisionally pumped soft x-ray lasers now operate over a wavelength range extending from 4 - 40 nm. With the recent advances in the development of multilayer mirrors and beamsplitters in the soft x-ray regime, we can utilize the unique properties of x-ray lasers to study large, rapidly evolving laser-driven plasmas with high electron densities. Using a neon-like yttrium x-ray laser which operates at a wavelength of 15.5 nm, we have performed a series of x-ray laser interferometry experiments to characterize plasmas relevant to inertial confinement fusion. In this paper we describe experiments using a soft x-ray laser interferometer, operated in the Mach-Zehnder configuration, to study CH plasmas and exploding foil targets commonly used for x-ray laser targets. The two-dimensional density profiles obtained from the interferograms allow us to validate and benchmark our numerical models used to study the physics of laser-plasma interactions.
机译:禁区泵浦的软X射线激光器现在在从4-40nm延伸的波长范围内操作。随着最近在软X射线制度中开发多层镜子和光束分布器的进步,我们可以利用X射线激光器的独特性能来研究具有高电子密度的大型快速发展的激光驱动的等离子体。使用在波长为15.5nm的波长的霓虹灯钇X射线激光器,我们已经进行了一系列X射线激光干涉测量实验,以表征与惯性监禁融合相关的等离子体。在本文中,我们描述了使用在Mach-Zehnder配置中操作的软X射线激光干涉仪的实验,以研究CH等离子体和爆炸箔靶,通常用于X射线激光靶标。从干扰图获得的二维密度分布允许我们验证和基准我们的数值模型,用于研究激光等离子体相互作用的物理学。

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