化学活性气体分散介质中激光诱导的光子支链反应

R. Letfullin, T. George, G. Duree
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引用次数: 0

摘要

利用两相活性介质(即含有激光工作气体和超分散钝化金属粒子的介质)中引发的光子支链反应,是开发高能脉冲化学HF/DF激光器和放大器的一个有前途的途径。这些粒子在红外激光辐射的作用下蒸发,导致自由原子的出现,它们扩散到气体中,并形成光子分支链过程,其中光子既是反应物又是生成物。这里的主要障碍是形成相对较大体积(超过103cm 3)的稳定活性介质,并在短时间内均匀地填充具有特定特性的亚微米单分散金属气溶胶。本文介绍了在气体分散的h2 - f2介质中激光引发光子支链反应的广泛研究结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Laser-Induced Photon-Branched Chain Reactionin a Chemically-Active Gas-Dispersed Medium
A promising avenue in the development of high-energy pulsed chemical HF/DF lasers and amplifiers is the utilization of a photon-branched chain reaction initiated in a two-phase active medium, that is, a medium containing a laser working gas and ultradispersed passivated metal particles. These particles are evaporated under the action of IR laser radiation which results in the appearance of free atoms, their diffusion into the gas, and the development of a photon-branching chain process, which involves photons as both reactants and products. The key obstacle here is the formation of a relatively large volume (in excess of 10 3 cm 3 ) of the stable active medium and filling this volume homogeneously for a short time with a submicron monodisperse metal aerosol, which has specified properties. In this paper, results are presented for an extensive study of laser initiation of a photon-branched chain reaction in a gas-dispersed H 2 – F 2 medium.
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