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Determination of the droplet effective size and optical depth of cloudy media from polarimetric measurements: theory

机译:从偏振测量法确定浑浊介质的液滴有效尺寸和光学深度:理论

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We present the development of a semi-analytical algorithm for optical particle sizing in disperse media. The algorithm is applied to the specific case of water clouds. However, it can be extended with minor modifications to other types of light-scattering medium. It is assumed that the optical thickness tau of the medium is large and the probability of photon absorption beta is small. Thus the optical particle-sizing problem is studied in the regime of highly developed multiple light scattering. It was found that the degree of polarization in visible and near-infrared channels provides us with information both on the effective size of droplets and on the optical thickness tau. (C) 2002 Optical Society of America. [References: 29]
机译:我们提出了一种在分散介质中光学颗粒尺寸测定的半分析算法。该算法适用于水云的具体情况。但是,可以通过对其他类型的光散射介质进行较小的修改来扩展它。假定介质的光学厚度tau较大,并且光子吸收β的可能性较小。因此,在高度发展的多重光散射机制中研究了光学颗粒尺寸的问题。发现在可见光和近红外通道中的偏振度为我们提供了有关液滴有效尺寸和光学厚度tau的信息。 (C)2002年美国眼镜学会。 [参考:29]

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