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首页> 外文期刊>Optics and Spectroscopy >Light Scattering by Small Multilayer Nonconfocal Spheroids Using Suitable Spheroidal Basis Sets
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Light Scattering by Small Multilayer Nonconfocal Spheroids Using Suitable Spheroidal Basis Sets

机译:使用合适的球形基础套进行小型多层非共焦球体的光散射

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摘要

We construct a Rayleigh approximation for multilayer particles the layer boundaries of which are nonconfocal spheroids. The geometry of the problem is taken into account to the maximum extent by representing the field potentials inside nonconfocal shells as expansions in terms of spheroidal harmonics in different coordinate systems in which the surfaces of the layers are coordinate. To sew two expansions inside each layer, we use relations between spheroidal harmonics of the Laplace equation in systems with different focal lengths that we obtained. The extended boundary conditions method (?BCM) and the separation of variables method (SVM) prove to be equivalent, because they yield the same results. The polarizability of the particle and, therefore, the characteristics of the scattered radiation are written in terms of infinite-dimensional matrices, the elements of which are determined either explicitly or in the form of finite sums. In particular cases of confocal spheroids, this solution is completely consistent with the known results.
机译:我们构建用于多层粒子的瑞利近似,其层边界是非通量球体。通过在不同坐标系中的球形谐波中表示非共焦壳内的现场电位,考虑到最大程度的最大程度的几何形状。为了缝制每层的两个扩展,我们使用我们获得的不同焦距的系统中的拉普拉斯方程的球体谐波之间的关系。扩展边界条件方法(?BCM)和变量方法的分离方法(SVM)证明是等同的,因为它们产生相同的结果。颗粒的极化性,因此,散射辐射的特性是根据无限维矩阵编写的,其元素明确地确定或以有限和的形式确定。特别是共聚焦球体的情况下,该溶液与已知结果完全一致。

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  • 来源
    《Optics and Spectroscopy 》 |2018年第6期| 共9页
  • 作者单位

    St Petersburg State Univ Aerosp Instrumentat St Petersburg 190000 Russia;

    St Petersburg State Univ St Petersburg 199034 Russia;

    St Petersburg State Univ Aerosp Instrumentat St Petersburg 190000 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学 ;
  • 关键词

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