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浸没在吸收性介质中的无限长圆柱体的光散射。

Light scattering by an infinite circular cylinder immersed in an absorbing medium.

作者信息

Sun Wenbo, Loeb Norman G, Lin Bing

机构信息

Center for Atmospheric Sciences, 21 Langley Boulevard, Mail Stop 420, Hampton University, Hampton, Virginia 23668, USA.

出版信息

Appl Opt. 2005 Apr 20;44(12):2338-42. doi: 10.1364/ao.44.002338.

Abstract

Analytic solutions are developed for the single-scattering properties of an infinite dielectric cylinder embedded in an absorbing medium with normal incidence, which include extinction, scattering and absorption efficiencies, the scattering phase function, and the asymmetry factor. The extinction and scattering efficiencies are derived by the near-field solutions at the surface of the particle. The normalized scattering phase function is obtained by use of the far-field approximation. Computational results show that, although the absorbing medium significantly reduces the scattering efficiency, it has little effect on absorption efficiency. The absorbing medium can significantly change the conventional phase function. The absorbing medium also strongly affects the polarization of the scattered light. However, for large absorbing particles the degrees of polarization change little with the medium's absorption. This implies that, if the transmitting lights are strongly weakened inside the particle, the scattered polarized lights can be used to identify objects even when the absorption property of the host medium is unknown, which is important for both active and passive remote sensing.

摘要

针对垂直入射到嵌入吸收性介质中的无限大介质圆柱体的单次散射特性,推导了其解析解,其中包括消光、散射和吸收效率、散射相函数以及不对称因子。通过粒子表面的近场解得出消光和散射效率。利用远场近似得到归一化散射相函数。计算结果表明,虽然吸收性介质显著降低了散射效率,但对吸收效率影响不大。吸收性介质会显著改变传统相函数。吸收性介质还会强烈影响散射光的偏振。然而,对于大的吸收性粒子,偏振度随介质吸收的变化很小。这意味着,如果粒子内部的透射光被强烈削弱,即使主体介质的吸收特性未知,散射偏振光也可用于识别物体,这对主动和被动遥感都很重要。

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