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Light Scattering by Composite Particles Comparable with Wavelength and their Approximation by Systems of Spheres

机译:与波长可比的复合粒子的光散射及其通过球体系统的逼近

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Scattering properties of an ensemble of independent, randomly-oriented systems consisting of two contacting wavelength-sized dielectric particles of spherical and random shapes are studied. The optical properties of such ensembles are shown to be determined, to a considerable degree, by the properties of individual components of the system; the role of collective effects is insignificant. For large scattering angles, systems consisting of two spheres form the negative branch of the degree of linear polarization when an individual sphere also forms it, and when systems composed of equivalent particles of random shape do not exhibit the negative branch. The conclusion is made that the modeling of the scattering properties of aspherical and aggregate particles by using systems of spheres of size of the order of the optical wavelength is inadequate.
机译:研究了一组独立的,随机定向的系统的散射特性,该系统由两个接触的球形和随机形状的波长大小的介电粒子组成。这样的合奏的光学特性在很大程度上取决于系统各个组件的特性。集体效应的作用微不足道。对于较大的散射角,由两个球组成的系统会在单个球体也形成线性极化度时形成负分支,而当由随机形状的等效粒子组成的系统不会表现出负分支时。得出的结论是,通过使用光学波长大小的球形系统对非球面和聚集颗粒的散射特性进行建模是不够的。

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