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Development of a High-Spectral-Resolution Lidar for Accurate Profiling of the Urban Aerosol Spatial Variations

机译:开发高光谱分辨率的激光雷达,用于准确剖析城市气溶胶空间变化

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A high-spectral-resolution lidar system at a wavelength of 355nm has been developed to accurately profiling of spatial variations of optical properties of aerosols, particularly for urban aerosols, Asiandust and cirrus clouds, at Xi'an, China. Rayleigh-and Mie-scattering components by atmospheric molecule and aerosol respectively are separated by use of a high-resolution Fabry-Perot etalon. A vibration Raman line of water vapor at 407.5nm is filtered by a highresolution grating for measurement of water vapor density. The solar background is blocked by using the grating and narrowband filter. As a result, the water vapor density and the main aerosol optical properties, such as the extinction coefficient, backscatter ratio/coefficient and optical depth, are obtained accurately without needs of assumption condition. Preliminary experiment shows that the system has the capability of making measurement up to a height of 15km for aerosol optical properties.
机译:已经开发了波长355nm波长的高光谱分辨率激光雷达系统,以便精确地剖析气溶胶的光学性质的空间变化,特别是在西安,中国的城市气溶胶,亚当和卷云云。通过使用高分辨率法布里 - 珀罗标准龙分别通过大气分子和气溶胶进行瑞利和MIE散射组分。通过高耗能光栅过滤407.5nm的振动拉曼水蒸气线,用于测量水蒸气密度。通过使用光栅和窄带过滤器阻止了太阳能背景。结果,精确地获得了水蒸气密度和主要气溶胶光学性质,例如消光系数,反向散射比/系数和光学深度,而不需要假设条件。初步实验表明,该系统的能力使测量高达15km的气溶胶光学性能。

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