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Solar-pumped gas laser development

机译:太阳能泵浦气体激光器的开发

摘要

A survey of gas properties through detailed kinetic models led to the identification of critical gas parameters for use in choosing appropriate gas combinations for solar pumped lasers. Broadband photoabsorption in the visible or near UV range is required to excite large volumes of gas and to insure good solar absorption efficiency. The photoexcitation density is independent of the absorption bandwidth. The state excited must be a metastable state which is not quenched by the parent gas. The emission bandwidth must be less than 10 A to insure lasing threshold over reasonable gain lengths. The system should show a high degree of chemical reversibility and an insensitivity to increasing temperature. Other properties such as good quantum efficiency and kinetic efficiency are also implied. Although photoexcitation of electronic vibrational transitions is considered as a possible system if the emission bands sufficiently narrow, it appears that photodissociation into atomic metastables is more likely to result in a successful solar pumped laser system.
机译:通过详细的动力学模型对气体特性进行的调查导致确定了关键的气体参数,这些参数可用于为太阳能泵浦激光器选择合适的气体组合。为了激发大量气体并确保良好的太阳吸收效率,需要在可见光或近紫外线范围内进行宽带光吸收。光激发密度与吸收带宽无关。激发态必须是不被母体气体淬灭的亚稳态。发射带宽必须小于10 A,以确保在合理的增益长度内具有发射阈值。该系统应显示出高度的化学可逆性,并且对温度升高不敏感。还暗示了其他性质,例如良好的量子效率和动力学效率。尽管如果发射带足够窄,则电子振动跃迁的光激发被认为是可能的系统,但看来光解离为原子亚稳态的光更有可能导致成功的太阳能泵浦激光系统。

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  • 作者

    Wilson J. W.;

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  • 年度 1980
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