Peculiarities of calculating a database of light backscattering matrices on hexagonal ice particles of cirrus clouds larger than 100 µm by the physical optics method

I. Tkachev, A. Konoshonkin, V. Shishko, D. N. Timofeev, N. Kustova
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Abstract

A technique is proposed that makes it possible to significantly accelerate the solution of the problem of light scattering in the exact backscattering direction on particles larger than 100 microns within the framework of the physical optics method. The peculiarities of this technique is that the solution is constructed within the vicinity of a small number of nodal points. Then, in the resulting solution, one complete period of interference oscillations is allocated and the light scattering matrix is averaged in this range. The average value is entered into the database. In this way, it was possible to build a complete database of backscattering matrices for atmospheric ice particles with sizes from 10 to 1000 microns for wavelengths of 0.355, 0.532, 1.064, 1.55, 2 and 2.15 microns. The results obtained make it possible to improve the algorithms for interpreting the data of laser sensing of cirrus clouds.
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用物理光学方法计算大于100µm的卷云六边形冰粒光后向散射矩阵数据库的特点
提出了一种在物理光学方法的框架内,可以显著加快求解大于100微米粒子的精确后向散射问题的技术。这种技术的特点是解是在少量节点的附近构造的。然后,在得到的解中,分配一个完整的干涉振荡周期,并在此范围内平均光散射矩阵。将平均值输入数据库。通过这种方法,可以建立波长为0.355、0.532、1.064、1.55、2和2.15微米的10 ~ 1000微米大气冰粒后向散射矩阵的完整数据库。所得结果为改进激光卷云遥感数据的解译算法提供了可能。
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