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Effect of multiple scattering on depolarization measurements with spaceborne lidars

机译:多次散射对空星式缘亮度去极化测量的影响

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An analytical model based on the integration of the scattering-angle and light-path manifold has been developed to quantify the effect of multiple scattering on cirrus measurements obtained with elastic polarization lidars from space. Light scattering by molecules and by a horizontally homogeneous cloud is taken into account. Lidar parameters, including laser beam divergence, can be freely chosen. Up to 3 orders of scattering are calculated. Furthermore, an inversion technique for the retrieval of cloud extinction profiles from measurements with elastic-backscatter lidars is proposed that explicitly takes multiple scattering into account. It is found that for typical lidar system parameters such as those of the Cloud-Aerosol Lidar and Infrared Pathfinder Satellite Observations (CALIPSO) instrument multiple scattering does not significantly affect depolarization-ratio measurements in cirrus clouds with small to moderate optical depths. For all simulated clouds, the absolute value of the difference between measured and single-scattering volume depolarization ratio is <0.006. The particle depolarization ratio can be calculated from the measured volume depolarization ratio and the retrieved backscatter ratio without degradation of accuracy; thus characterization of the various cirrus categories in terms of the particle depolarization ratio and retrieval of cloud microphysical properties is feasible from space. The results of this study apply to polar stratospheric clouds as well. (C) 2003 Optical Society of America. [References: 46]
机译:已经开发了一种基于散射角和光歧管的集成的分析模型,以量化来自空间的弹性偏振楣在的螺旋测量对多次散射测量的影响。考虑分子和水平均匀云的光散射。 LIDAR参数,包括激光束发散,可以自由选择。计算最多3个散射令。此外,提出了一种从利用弹性反向散射Liidars的测量检索云灭射分布的反演技术,以考虑到考虑到散射的多次散射。发现,对于诸如云 - 气溶胶激光雷达和红外探测器卫星观测(CALIPSO)仪器的典型激光雷达系统参数(CALIPSO)仪器多次散射不会显着影响卷云云中的去极化比测量,而是小于中等光学深度。对于所有模拟云,测量和单散射体积去极化比之间的差异的绝对值<0.006。颗粒去极化比可以根据测量的体积去极化比率和检索的反向散射比来计算,而不会降低精度;因此,根据颗粒去极化比和云微动物性质的检索的各种卷曲类别的表征是可行的。本研究结果也适用于极地平流层云。 (c)2003年光学学会。 [参考:46]

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