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Polarized light scattering by inhomogeneous hexagonal monocrystals. Validation with ADEOS-POLDER measurements

机译:偏振光被不均匀的六角形单晶散射。使用ADEOS-POLDER测量进行验证

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摘要

Various in situ measurements of the light-scattering diagram in ice clouds were performed with a new nephelometer during several airborne campaigns. These measurements were favorably compared with a theoretical scattering model called Inhomogeneous Hexagonal Monocrystal (IHM) model. This model consists in computing the scattering of light by an ensemble of randomly oriented hexagonal ice crystals containing spherical impurities of soot and air bubbles. It is achieved by using a combination of ray tracing, Mie theory, and Monte Carlo techniques and enables to retrieve the six independent elements of the scattering matrix. This good agreement between nephelometer measurements and IHM model provides an opportunity to use this model in order to analyze ADEOS-POLDER total and polarized reflectance measurements over ice clouds. POLDER uses an original concept to observe ice cloud properties, enabling to measure reflectances and polarized reflectances, for a given scene, under several (up to 14) viewing directions. A first analysis of ice cloud spherical albedoes over the terrestrial globe for November 10, 1996, and April 23, 1997, shows a rather good agreement between measurements and modeling. Moreover, polarized reflectances are also calculated and show a satisfactory agreement with measurements.
机译:在几次空降战役中,使用新的浊度计对冰云中的光散射图进行了各种原位测量。这些测量与理论上称为非均质六角单晶(IHM)模型的散射模型进行了比较。该模型包括计算由烟灰和气泡的球形杂质组成的随机定向的六角形冰晶的合束的光散射。它是通过结合光线追踪,Mie理论和蒙特卡洛技术来实现的,并且能够检索散射矩阵的六个独立元素。浊度计测量值与IHM模型之间的良好协议为使用该模型分析冰层上的ADEOS-POLDER总和偏振反射率测量提供了机会。 POLDER使用原始概念来观察冰云特性,从而能够在多个(最多14个)观察方向下测量给定场景的反射率和偏振反射率。对1996年11月10日和1997年4月23日地球上冰云球形反照率的首次分析表明,测量和建模之间的一致性相当好。此外,还可以计算出偏振反射率,并与测量值显示令人满意的一致性。

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