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Passive remote sensing of aerosol layer height using near-UV multi-angle polarization measurements

机译:使用近紫外多角度偏振测量技术对气溶胶层高度进行被动遥感

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摘要

We demonstrate that multi-angle polarization measurements in the near-UV and blue part of the spectrum are very well suited for passive remote sensing of aerosol layer height. For this purpose we use simulated measurements with different set-ups (different wavelength ranges, with and without polarization, different polarimetric accuracies) as well as airborne measurements from the Research Scanning Polarimeter (RSP) obtained over the continental USA. We find good agreement of the retrieved aerosol layer height from RSP with measurements from the Cloud Physics Lidar (CPL) showing a mean absolute difference of less than 1 km. Furthermore, we found that the information on aerosol layer height is provided for large part by the multi-angle polarization measurements with high accuracy rather than the multi-angle intensity measurements. The information on aerosol layer height is significantly decreased when the shortest RSP wavelength (410 nm) is excluded from the retrieval and is virtually absent when 550 nm is used as shortest wavelength.
机译:我们证明了在光谱的近紫外线和蓝色部分中的多角度偏振测量非常适合用于气溶胶层高度的被动遥感。为此,我们使用具有不同设置(不同波长范围,带和不带偏振,具有不同的偏振精度)的模拟测量值,以及通过美国大陆上的研究型扫描偏振仪(RSP)进行的机载测量值。我们发现从RSP检索到的气溶胶层高度与云物理激光雷达(CPL)的测量值吻合得很好,显示出平均绝对差小于1 km。此外,我们发现有关气溶胶层高度的信息大部分是通过高精度的多角度偏振测量而不是多角度强度测量提供的。当从检索中排除最短的RSP波长(410 nm)时,有关气溶胶层高度的信息将大大减少,而当使用550 nm作为最短波长时,实际上不存在。

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