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具有连续角分辨率的汤姆逊散射光谱测量(特邀报告)。

Measurement of Thomson-scattering spectra with continuous angular resolution (invited).

作者信息

Katz J, Boni R, Milder A L, Nelson D, Daub K, Froula D H

机构信息

Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623-1299, USA.

出版信息

Rev Sci Instrum. 2024 Sep 1;95(9). doi: 10.1063/5.0219182.

Abstract

A novel Thomson-scattering diagnostic with continuous angular resolution over a span of 120° was developed for the characterization of plasmas produced at the Omega Laser Facility. Spectrally resolving light scattered from electron plasma wave features as a function of emission angle provides a means to efficiently probe a large range of plasma frequencies and k vectors. Together, these spectra contain critical constraints on the plasma-physics models used to interpret the data and enable experimental measurements of the electron-velocity distribution function over several orders of magnitude without assumptions about its mathematical form. Major components of the instrument include (1) a reflective collection objective that gathers light over a range of 120° × 12°; (2) a spatial-filter image relay for measurement localization; (3) cylindrical optics for producing a line image of the collection aperture; (4) a transmission grating spectrometer; and (5) a time-gated, image-intensified camera. Thomson-scattered light collected from an ∼50 - μm3 volume of plasma is recorded with 0.8-nm spectral and 1° angular resolution. Initial experiments examined the properties of the electron-velocity distribution in gas-jet-produced plasmas in the presence of heating via inverse bremsstrahlung absorption.

摘要

为了表征欧米茄激光装置产生的等离子体,开发了一种新型汤姆逊散射诊断方法,该方法在120°的跨度内具有连续的角分辨率。将从电子等离子体波特征散射的光作为发射角的函数进行光谱分辨,提供了一种有效探测大范围等离子体频率和波矢的方法。这些光谱共同对用于解释数据的等离子体物理模型施加了关键约束,并能够在不假设电子速度分布函数数学形式的情况下,对其在几个数量级上进行实验测量。该仪器的主要组件包括:(1)一个反射式收集物镜,可在120°×12°的范围内收集光;(2)一个用于测量定位的空间滤波图像中继;(3)用于产生收集孔径线图像的柱面光学器件;(4)一个透射光栅光谱仪;(5)一个时间选通、图像增强相机。从约50μm³的等离子体体积收集的汤姆逊散射光以0.8nm的光谱分辨率和1°的角分辨率进行记录。初步实验研究了在通过逆轫致吸收加热的情况下,气体喷射产生的等离子体中电子速度分布的特性。

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