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利用紫外汤姆逊散射对双等离子体衰变共同等离子体波进行直接观测。

Direct observation of the two-plasmon-decay common plasma wave using ultraviolet Thomson scattering.

作者信息

Follett R K, Edgell D H, Henchen R J, Hu S X, Katz J, Michel D T, Myatt J F, Shaw J, Froula D H

机构信息

Laboratory for Laser Energetics, University of Rochester, 250 East River Road, Rochester, New York 14623, USA.

Department of Physics and Astronomy, University of Rochester, Rochester, New York 14623, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Mar;91(3):031104. doi: 10.1103/PhysRevE.91.031104. Epub 2015 Mar 26.

Abstract

A 263-nm Thomson-scattering beam was used to directly probe two-plasmon-decay (TPD) excited electron plasma waves (EPWs) driven by between two and five 351-nm beams on the OMEGA Laser System. The amplitude of these waves was nearly independent of the number of drive beams at constant overlapped intensity, showing that the observed EPWs are common to the multiple beams. In an experimental configuration where the Thomson-scattering diagnostic was not wave matched to the common TPD EPWs, a broad spectrum of TPD-driven EPWs was observed, indicative of nonlinear effects associated with TPD saturation. Electron plasma waves corresponding to Langmuir decay of TPD EPWs were observed in both Thomson-scattering spectra, suggesting the Langmuir decay instability as a TPD saturation mechanism. Simulated Thomson-scattering spectra from three-dimensional numerical solutions of the extended Zakharov equations of TPD are in excellent agreement with the experimental spectra and verify the presence of the Langmuir decay instability.

摘要

一束263纳米的汤姆逊散射光束被用于直接探测由欧米茄激光系统上两到五束351纳米光束驱动的双等离子体衰变(TPD)激发的电子等离子体波(EPW)。在恒定重叠强度下,这些波的振幅几乎与驱动光束的数量无关,这表明观测到的电子等离子体波是多束光束共有的。在一种实验配置中,汤姆逊散射诊断与常见的TPD电子等离子体波不满足波匹配条件,观测到了TPD驱动的电子等离子体波的宽频谱,这表明存在与TPD饱和相关的非线性效应。在两个汤姆逊散射光谱中均观测到了与TPD电子等离子体波的朗缪尔衰变相对应的电子等离子体波,这表明朗缪尔衰变不稳定性是一种TPD饱和机制。TPD扩展扎哈罗夫方程三维数值解的模拟汤姆逊散射光谱与实验光谱高度吻合,并验证了朗缪尔衰变不稳定性的存在。

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