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Backscatter laser depolarization studies of simulated stratospheric aerosols: Crystallized sulfuric acid droplets

机译:模拟平流层气溶胶的反向散射激光去极化研究:结晶的硫酸液滴

摘要

The optical depolarizing properties of simulated stratospheric aerosols were studied in laboratory laser (0.633 micrometer) backscattering experiments for application to polarization lidar observations. Clouds composed of sulfuric acid solution droplets, some treated with ammonia gas, were observed during evaporation. The results indicate that the formation of minute ammonium sulfate particles from the evaporation of acid droplets produces linear depolarization ratios of beta equivalent to 0.02, but beta equivalent to 0.10 to 0.15 are generated from aged acid cloud aerosols and acid droplet crystallization effects following the introduction of ammonia gas into the chamber. It is concluded that partially crystallized sulfuric acid droplets are a likely candidate for explaining the lidar beta equivalent to 0.10 values that have been observed in the lower stratosphere in the absence of the relatively strong backscattering from homogeneous sulfuric acid droplet (beta equivalent to 0) or ice crystal (beta equivalent to 0.5) clouds.
机译:在实验室激光(0.633微米)反向散射实验中研究了模拟平流层气溶胶的光学去偏振特性,并将其应用于偏振激光雷达观测。在蒸发过程中观察到了由硫酸溶液滴组成的云,有些经氨气处理过。结果表明,从酸滴的蒸发中形成微小的硫酸铵颗粒会产生线性的去极化比,β等于0.02,但是老化的酸云气溶胶和引入的酸滴结晶作用会产生β等于0.10至0.15的β。氨气进入腔室。结论是,部分结晶的硫酸滴可能是解释激光雷达β等于0.10值的可能候选者,在均匀平流硫酸滴(β等于0)没有相对较强的反向散射的情况下,在平流层较低层观察到的该值等于0.10或冰晶(β等于0.5)云。

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