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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >In-depth study of intra-Stark spectroscopy in the x-ray range in relativistic laser-plasma interactions
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In-depth study of intra-Stark spectroscopy in the x-ray range in relativistic laser-plasma interactions

机译:在相对论激光等离子体相互作用中的X射线范围内的X射线范围内的深入研究

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摘要

Intra-Stark spectroscopy (ISS) is the spectroscopy within the quasistatic Stark profile of a spectral line. The present paper advances the ISS-based study of the relativistic laser-plasma interaction from our previous paper (Oks et al 2017 Opt. Express 25 1958). By improving the experimental conditions and the diagnostics, it provides an in-depth spectroscopic study of the simultaneous production of the Langmuir waves and of the ion acoustic turbulence at the surface of the relativistic critical density. It demonstrates a reliable reproducibility of the Langmuir-wave-induced dips at the same locations in the experimental profiles of Si XIV Ly-beta line, as well as of the deduced parameters (fields) of the Langmuir waves and ion acoustic turbulence in several individual 1 ps laser pulses and of the peak irradiances of 1-3. x. 10(20) W cm(-2). Besides, this study employs for the first time the most rigorous condition of the dynamic resonance, on which the ISS phenomenon is based, compared to all previous studies in all kinds of plasmas in a wide range of electron densities. It shows how different interplays between the Langmuir wave field and the field of the ion acoustic turbulence lead to distinct spectral line profiles, including the disappearance of the Langmuir-wave-induced dips.
机译:Strak-Stark光谱(ISS)是光谱线的Quasistatic Stark轮廓内的光谱。本文提出了基于ISS - 基于ISS的研究来自我们之前的论文的相对论激光 - 血浆相互作用(OKS等,2017年选择Opt。Express 25 1958)。通过改善实验条件和诊断,它提供了一种深入的光谱研究,其同时生产Langmuir波和离子声学湍流在相对论临界密度的表面上。它展示了在SIXIV LY-BETA线的实验配置文件中的同一位置的Langmuir波诱导的倾角的可靠再现性,以及几个个体中Langmuir波和离子声湍流的推导参数(田地) 1 PS激光脉冲和1-3的峰值斑点。 X。 10(20)W cm(-2)。此外,该研究首次采用了动态共振的最严格的条件,其中有基于ISS现象是基于各种等离子体中所有各种等离子的所有研究。它显示了Langmuir波场与离子声湍流的场之间的不同相互作用导致不同的光谱线轮廓,包括Langmuir波引起的倾角的消失。

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