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Asymptotic solutions for optical properties of large particles with strong absorption

机译:具有强吸收性的大颗粒光学性质的渐近解

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摘要

The transverse wave condition is not applicable to the refracted electromagnetic wave within the context of geometrical optics when absorption is involved. Either the TM or the TE wave condition can be assumed for the wave to locally satisfy the electromagnetic boundary condition in a ray-tracing calculation. The assumed wave mode affects both the reflection and the refraction coefficients. As a result, nonunique solutions for these coefficients are inevitable. In this study the appropriate solutions for the Fresnel reflection-refraction coefficents are identified in light-scattering calculations based on the ray-tracing technique. In particular, a 3×2 refraction or transmission matrix is derived to account for the inhomogeneity of the refracted wave in an absorbing medium. An asymptotic solution that completely includes the effect of medium absorption on Fresnel coefficients is obtained for the scattering properties of a general polyhedral particle. Numerical results are presented for hexagonal plates and columns with both preferred and random orientations.
机译:当涉及吸收时,横波条件不适用于几何光学范围内的折射电磁波。在射线追踪计算中,可以假设TM或TE的波条件是该波局部满足电磁边界条件。假定的波模式会影响反射系数和折射系数。结果,对于这些系数的非唯一解是不可避免的。在这项研究中,在基于光线跟踪技术的光散射计算中,确定了菲涅耳反射-折射系数的适当解决方案。特别地,导出3×2折射或透射矩阵以解决吸收介质中折射波的不均匀性。对于一般的多面体粒子的散射特性,获得了一个完全包含介质吸收对菲涅耳系数影响的渐近解。数值结果显示了六角形板和圆柱的首选和随机方向。

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