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Spontaneous Rayleigh-Brillouin scattering of ultraviolet light in nitrogen, dry air, and moist air

机译:氮气,干燥空气和潮湿空气中紫外线的自发瑞利-布里渊散射

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摘要

Atmospheric lidar techniques for the measurement of wind, temperature, and optical properties of aerosols rely on the exact knowledge of the spectral line shape of the scattered laser light on molecules. We report on spontaneous Rayleigh-Brillouin scattering measurements in the ultraviolet at a scattering angle of 90 deg on N_(2) and on dry and moist air. The measured line shapes are compared to the Tenti S6 model, which is shown to describe the scattering line shapes in air at atmospheric pressures with small but significant deviations. We demonstrate that the line profiles of N_(2) and air under equal pressure and temperature conditions differ significantly, and that this difference can be described by the S6 model. Moreover, we show that even a high water vapor content in air up to a volume fraction of 3.6 vol.percent has no influence on the line shape of the scattered light. The results are of relevance for the future spaceborne lidars on ADM-Aeolus (Atmospheric Dynamics Mission) and EarthCARE (Earth Clouds, Aerosols, and Radiation Explorer).
机译:用于测量气溶胶的风,温度和光学特性的大气激光雷达技术依赖于分子上散射激光的光谱线形状的确切知识。我们报告了在N_(2)上以及在干燥潮湿的空气中以90度散射角在紫外线下自发进行的Rayleigh-Brillouin散射测量。将测得的线形与Tenti S6模型进行比较,该模型显示出在大气压力下空气中的散射线形具有很小但很明显的偏差。我们证明了在相同的压力和温度条件下,N_(2)和空气的线轮廓存在显着差异,并且这种差异可以用S6模型来描述。此外,我们表明,即使空气中的高水蒸气含量高达3.6%(体积),也不会影响散射光的线形。这些结果与未来的ADM-Aeolus(大气动力学任务)和EarthCARE(地球云,气溶胶和辐射探测器)上的星载激光雷达相关。

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