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来自混浊介质的各向异性反射率。I. 理论。

Anisotropic reflectance from turbid media. I. Theory.

作者信息

Neuman Magnus, Edström Per

机构信息

Department of Natural Sciences, Engineering and Mathematics, Mid Sweden University, SE-87188 Härnösand, Sweden.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2010 May 1;27(5):1032-9. doi: 10.1364/JOSAA.27.001032.

Abstract

It is shown that the intensity of light reflected from plane-parallel turbid media is anisotropic in all situations encountered in practice. The anisotropy, in the form of higher intensity at large polar angles, increases when the amount of near-surface bulk scattering is increased, which dominates in optically thin and highly absorbing media. The only situation with isotropic intensity is when a non-absorbing infinitely thick medium is illuminated diffusely. This is the only case where the Kubelka-Munk model gives exact results and there exists an exact translation between Kubelka-Munk and general radiative transfer. This also means that a bulk scattering perfect diffusor does not exist. Angle-resolved models are thus crucial for a correct understanding of light scattering in turbid media. The results are derived using simulations and analytical calculations. It is also shown that there exists an optimal angle for directional detection that minimizes the error introduced when using the Kubelka-Munk model to interpret reflectance measurements with diffuse illumination.

摘要

结果表明,在实际遇到的所有情况下,从平面平行浑浊介质反射的光强度都是各向异性的。当近表面体散射量增加时,以大极角处更高强度形式出现的各向异性会增加,这在光学薄且高吸收性介质中占主导。唯一具有各向同性强度的情况是当非吸收性无限厚介质受到漫射照明时。这是库贝尔卡 - 蒙克模型给出精确结果的唯一情况,并且在库贝尔卡 - 蒙克模型和一般辐射传输之间存在精确的转换关系。这也意味着不存在体散射完美漫射器。因此,角度分辨模型对于正确理解浑浊介质中的光散射至关重要。结果是通过模拟和解析计算得出的。还表明,存在一个用于定向检测的最佳角度,该角度可使在使用库贝尔卡 - 蒙克模型解释漫射照明下的反射率测量时引入的误差最小化。

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