On the feasibility of X-ray nonlinear resonant effects in plasma

P. Shkolnikov, A. Kaplan
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Abstract

Recent developments in x-ray laser research resulted in the experimental observation of laser amplification at many wavelengths in soft x-ray domain [1] ranging from λ=280 Å to λ = 42 Å. There is no doubts that within next few years powerful sources of coherent x-ray laser radiation at those wavelengths will also be available. This sets a stage for the research on the interaction of intense coherent x-ray radiation with a matter, in particular on x-ray nonlinear optics. The first obvious choice of the environment and frequency for the nonlinear effects to occur and to be experimentally observed, is the same plasma of ionized atoms that gives rise to the laser action itself, with the nonlinear interaction occurring at the frequency of lasing transition. The nonlinear effects in such a situation are essentially expected to be the same as in any other resonantly-enhanced nonlinear interaction of light with matter in a visible optical domain and could approximately be evaluated using basically two (or three) level model. In order to demonstrate the feasibility of this kind of nonlinear effects both in active and passive x-ray laser medium, we present here evaluations of the characteristic parameters pertinent to the resonant nonlinearity: the saturation driving intensity and nonlinear change of refractive index. We use simple and yet realistic model based on the neonlike Mo XXXIII plasma; observation of soft X-ray amplification in such a system has recently been reported [2].
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论等离子体中x射线非线性共振效应的可行性
x射线激光研究的最新进展导致了软x射线域内多个波长激光放大的实验观察[1],范围从λ=280 Å到λ= 42 Å。毫无疑问,在未来几年内,这些波长的强大的相干x射线激光辐射源也将可用。这为强相干x射线辐射与物质相互作用的研究,特别是x射线非线性光学的研究奠定了基础。非线性效应发生和实验观察的环境和频率的第一个明显选择,是产生激光作用本身的电离原子等离子体,非线性相互作用发生在激光跃迁的频率上。在这种情况下的非线性效应基本上与可见光域中任何其他共振增强的光与物质的非线性相互作用相同,并且可以使用基本的两(或三)级模型进行近似评估。为了证明这种非线性效应在主动和被动x射线激光介质中的可行性,我们给出了与共振非线性相关的特征参数:饱和驱动强度和折射率的非线性变化。我们采用简单而又真实的模型,以新烟碱样Mo XXXIII等离子体为基础;最近报道了在这种系统中观察到的软x射线放大[2]。
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Achieving Uniform Multilayer Coatings on Figured Optics Differential Phase Contrast Imaging in the Scanning Transmission X-ray Microscope X-ray Production Efficiency at 130 Å from Laser-Produced Plasmas Design and Analysis of Multi-Mirror Soft X-Ray Projection Lithography Systems On the feasibility of X-ray nonlinear resonant effects in plasma
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