Numerical results for polarized light scattering in a spherical atmosphere

散射 瑞利散射 辐射传输 物理 计算物理学 光学 极化(电化学) 大气(单位) 光散射 漫射天空辐射 化学 气象学 物理化学
作者
Sergey Korkin,Edward S. Yang,Robert Spurr,Claudia Emde,Peng-Wang Zhai,Nickolay A. Krotkov,Alexander Vasilkov,Alexei Lyapustin
出处
期刊:Journal of Quantitative Spectroscopy & Radiative Transfer [Elsevier BV]
卷期号:287: 108194-108194 被引量:2
标识
DOI:10.1016/j.jqsrt.2022.108194
摘要

• We report numerical results for light reflection from the top of a Rayleigh scattering spherical atmosphere over a dark surface. • We account for polarization of light and height-dependent single scattering albedo. • We report single and multiple scattering data separately to support validation and development of RT codes for spherical atmospheres. We report numerical results for polarized light reflection from the top of a Rayleigh scattering spherical atmosphere with height-dependent single scattering albedo over a dark surface. Michael Mishchenko considered this scenario back in the 1990’s, for a plane-parallel atmosphere of unit optical thickness (OT = 1), for which radiance errors arising from neglecting polarization reaches their highest values. To further extend Mishchenko's results, we consider a value of OT = 0.25, for which the effect of atmospheric curvature is pronounced. New results are generated using three state-of-the art radiative transfer (RT) codes. These are: the MYSTIC and MCSSA models, which simulate light scattering in a true-spherical atmosphere using Monte Carlo methods; and the discrete ordinate code VLIDORT, operating with a new multiple-scatter spherical correction designed to deliver reasonable approximations to spherical-medium scattering. In this work, we report results for both single and multiple scattering; this will help to support the validation of existing and future polarized spherical RT codes, especially those using approximative methods to deal with sphericity.
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