Mishchenko Michael I, Dlugach Janna M, Zakharova Nadezhda T
J Opt Soc Am A Opt Image Sci Vis. 2016 Apr 1;33(4):618-24. doi: 10.1364/JOSAA.33.000618.
The numerically exact superposition T-matrix method is used to model far-field electromagnetic scattering by two types of particulate object. Object 1 is a fixed configuration that consists of N identical spherical particles (with N=200 or 400) quasi-randomly populating a spherical volume V having a median size parameter of 50. Object 2 is a true discrete random medium (DRM) comprising the same number N of particles randomly moving throughout V. The median particle size parameter is fixed at 4. We show that if Object 1 is illuminated by a quasi-monochromatic parallel beam then it generates a typical speckle pattern having no resemblance to the scattering pattern generated by Object 2. However, if Object 1 is illuminated by a parallel polychromatic beam with a 10% bandwidth then it generates a scattering pattern that is largely devoid of speckles and closely reproduces the quasi-monochromatic pattern generated by Object 2. This result serves to illustrate the capacity of the concept of electromagnetic scattering by a DRM to encompass fixed quasi-random particulate samples provided that they are illuminated by polychromatic light.
数值精确的叠加T矩阵方法被用于对两类颗粒物体的远场电磁散射进行建模。物体1是一种固定构型,由N个相同的球形颗粒(N = 200或400)准随机地分布在一个中值尺寸参数为50的球形体积V中组成。物体2是一种真正的离散随机介质(DRM),由相同数量N的颗粒在整个V中随机移动组成。中值颗粒尺寸参数固定为4。我们表明,如果物体1被准单色平行光束照射,那么它会产生一个典型的散斑图案,与物体2产生的散射图案毫无相似之处。然而,如果物体1被带宽为10%的平行多色光束照射,那么它会产生一个基本上没有散斑的散射图案,并且紧密再现物体2产生的准单色图案。这一结果有助于说明DRM电磁散射概念涵盖固定准随机颗粒样本的能力,前提是它们被多色光照射。