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来自非对称互穿等离子体流的汤姆逊散射测量。

Thomson scattering measurements from asymmetric interpenetrating plasma flows.

作者信息

Ross J S, Moody J D, Fiuza F, Ryutov D, Divol L, Huntington C M, Park H-S

机构信息

Lawrence Livermore National Laboratory, P.O. Box 808, Livermore, California 94551, USA.

出版信息

Rev Sci Instrum. 2014 Nov;85(11):11E613. doi: 10.1063/1.4891974.

Abstract

Imaging Thomson scattering measurements of collective ion-acoustic fluctuations have been utilized to determine ion temperature and density from laser produced counter-streaming asymmetric flows. Two foils are heated with 8 laser beams each, 500 J per beam, at the Omega Laser facility. Measurements are made 4 mm from the foil surface using a 60 J 2ω probe laser with a 200 ps pulse length. Measuring the electron density and temperature from the electron-plasma fluctuations constrains the fit of the multi-ion species, asymmetric flows theoretical form factor for the ion feature such that the ion temperatures, ion densities, and flow velocities for each plasma flow are determined.

摘要

利用集体离子声波涨落的成像汤姆逊散射测量技术,从激光产生的反向不对称流中确定离子温度和密度。在欧米茄激光装置中,用8束激光加热两片箔片,每束激光能量为500焦耳。使用脉冲长度为200皮秒、能量为60焦耳的2ω探测激光,在距箔片表面4毫米处进行测量。通过测量电子等离子体涨落中的电子密度和温度,限制了多离子种类的拟合,即离子特征的不对称流理论形状因子,从而确定了每个等离子体流的离子温度、离子密度和流速。

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