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Remote Sensing of Cirrus Cloud Particle Size and Optical Depth Using Polarimetric Sensor Measurements

机译:利用偏振传感器测量遥感卷云粒径和光学深度

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This paper presents a conceptual approach toward the remote sensing of cirrus cloud particle size and optical depth using the degree of polarization and polarized reflectance associated with the first three Stokes parameters I, Q, and U for the 0.865 and 2.25 μm wavelengths. A vector line-by-line equivalent radiative transfer program including the full Stokes parameters based on the adding method was developed. The retrieval algorithm employs the steepest descent method in the form of a series of numerical iteration procedures to search for the simulated polarization parameters that best match the measured polarization parameters. Sensitivity studies were performed to investigate the behavior of phase matrix elements as functions of scattering angles for three ice crystal size-shape combinations. Overall, each phase matrix element shows some sensitivity toward ice crystal shape, size, and surface roughness due to the various optical effects. Synthetic retrievals reveal that the retrieval algorithm itself is highly accurate, while polarimetric and radiometric error sources cause very small retrieval errors. Finally, an illustrative example of applying the retrieval algorithm to airborne POLDER data during EUCREX is presented.
机译:本文使用与0.865和2.25μm波长的前三个斯托克斯参数I,Q和U相关的偏振度和偏振反射率,提出了一种用于卷云粒度和光学深度遥感的概念方法。开发了基于加法的包括完整斯托克斯参数的矢量逐行等效辐射传递程序。检索算法采用一系列数字迭代过程形式的最速下降法来搜索与测量的偏振参数最匹配的模拟偏振参数。进行了敏感性研究,以研究三种冰晶尺寸形状组合的相矩阵元素随散射角的变化。总的来说,由于各种光学效应,每个相矩阵元素对冰晶的形状,大小和表面粗糙度都表现出一定的敏感性。综合检索表明,检索算法本身是高度准确的,而极化和辐射误差源会导致很小的检索误差。最后,给出了在EUCREX期间将检索算法应用于机载POLDER数据的说明性示例。

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