Advances in chemical lasers

Joseph Miller
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Abstract

High power chemical lasers present a fascinating array of special environments and associated technology development subjects. Included are: processes to produce the source reactants; supersonic mixing and reacting flow fields; the production and dissipation of multiple vibrational–rotational molecular states; optical gain extraction in complex geometries; media inhomogeneity effects, and waste energy and reaction products removal. Some configurations desire wavelength selectivity, special optical components, and coherent cavity or beam combining. Progress has been made in these areas in recent years in behalf of cw and repetitively pulsed hydrogen fluoride and deuterium fluoride lasers, subsonic and supersonic oxygen-iodine lasers, and potential shorter wavelength chemical lasers based on chemically excited higher electronic states. This paper presents a brief review of the technical approach in some of the technology areas and the status in achieving practical, integrated high power chemical lasers.
化学激光器的研究进展
高功率化学激光器呈现出一系列令人着迷的特殊环境和相关的技术发展课题。包括:生产源反应物的过程;超声速混合与反应流场;多振动-旋转分子态的产生与耗散;复杂几何光学增益提取;介质不均匀性的影响,以及废能量和反应产物的去除。一些配置需要波长选择性、特殊光学元件和相干腔或光束组合。近年来,连续波和重复脉冲氟化氢和氟化氘激光器、亚音速和超音速氧碘激光器以及基于化学激发高电子态的潜在短波化学激光器在这些领域取得了进展。本文简要介绍了一些技术领域的技术途径以及实现实用化、集成化高功率化学激光器的现状。
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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