Determination of gas-discharge plasma parameters in powerful metal halide vapor lasers

K. Temelkov, S. I. Slaveeva, Yu I Fedchenko
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引用次数: 1

Abstract

Powerful metal halide vapor lasers are excited with nanosecond pulsed longitudinal discharge in complex multicomponent gas mixtures. Using a new method, thermal conductivity of various 5- and 6-component gas mixtures is obtained under gas-discharge conditions, which are optimal for laser operation on the corresponding metal atom and ion transitions. Assuming that the gas temperature varies only in the radial direction and using the calculated thermal conductivities, an analytical solution of the steady-state heat conduction equation is found for uniform and radially nonuniform power input in various laser tube constructions. Using the results obtained for time-resolved electron temperature by measurement of electrical discharge characteristics and analytically solving steady-state heat conduction equation for electrons as well, radial distribution of electron temperature is also obtained for the discharge period.
强金属卤化物蒸气激光器气体放电等离子体参数的测定
用纳秒脉冲纵向放电在复杂的多组分气体混合物中激发强大的金属卤化物蒸汽激光器。利用一种新的方法,在气体放电条件下,获得了各种5组分和6组分气体混合物的热导率,这些热导率最适合激光对相应金属原子和离子跃迁进行操作。假设气体温度只在径向上变化,利用计算得到的热导率,得到了各种激光管结构中均匀和径向非均匀输入功率的稳态热传导方程的解析解。利用测量放电特性得到的时间分辨电子温度,并解析求解电子稳态热传导方程,得到了放电周期内电子温度的径向分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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