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Radiative transfer model for contaminated rough slabs

机译:污染的毛坯板的辐射传递模型

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We present a semi-analytical model to simulate the bidirectional reflectance distribution function (BRDF) of a rough slab layer containing impurities. This model has been optimized for fast computation in order to analyze massive hyperspectral data by a Bayesian approach. We designed it for planetary surface ice studies but it could be used for other purposes. It estimates the bidirectional reflectance of a rough slab of material containing inclusions, overlaying an optically thick media (semi-infinite media or stratified media, for instance granular material). The inclusions are assumed to be close to spherical and constituted of any type of material other than the ice matrix. It can be any other type of ice, mineral, or even bubbles defined by their optical constants. We assume a low roughness and we consider the geometrical optics conditions. This model is thus applicable for inclusions larger than the considered wavelength. The scattering on the inclusions is assumed to be isotropic. This model has a fast computation implementation and thus is suitable for high-resolution hyperspectral data analysis. (C) 2015 Optical Society of America
机译:我们提出了一个半分析模型来模拟包含杂质的粗糙平板层的双向反射率分布函数(BRDF)。该模型已针对快速计算进行了优化,以便通过贝叶斯方法分析大量的高光谱数据。我们将其设计用于行星表面冰研究,但也可以用于其他目的。它估计了包含夹杂物的粗糙平板材料在光学厚介质(半无限介质或分层介质,例如粒状材料)上的双向反射率。假定夹杂物接近球形并且由除冰基质以外的任何类型的材料构成。它可以是由其光学常数定义的任何其他类型的冰,矿物甚至气泡。我们假设粗糙度较低,并考虑了几何光学条件。因此,该模型适用于大于考虑波长的夹杂物。假设夹杂物上的散射是各向同性的。该模型具有快速的计算实现,因此适用于高分辨率高光谱数据分析。 (C)2015年美国眼镜学会

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