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Rayleigh Approximation for Multilayer Nonconfocal Spheroids

机译:多层非共焦球体的Rayleigh近似

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摘要

We consider the light scattering by layered spheroids that are small compared to the wavelength of the incident radiation. Simple approximate formulas are obtained for the polarizability of such particles with nonconfocal spheroidal surfaces of layers by reducing infinite matrices in the rigorous solution of the problem to matrices of dimensions 2 x 2 and 4 x 4. In the first case, the approximate expression for the polarizability formally coincides with the well-known expression for spheroids with confocal surfaces of layers and, correspondingly, represents an accurate result for such particles. The second case is, in essence, taking into account in the first approximation the effect of nonconfocality of core surfaces and particle layers. The results of numerical calculations carried out for two- and three-layer particles using both approximate expressions and formulas of the rigorous solution showed that, in a wide range of parameters, the relative error of the simpler approximation (2 x 2) is lower than 1%, while the error of the other approximation (4 x 4) is smaller than 0.1%. It is inferred that the found approximate formulas are rather accurate and universal, and they can be efficiently used in calculations of the optical properties of small multilayer spheroidal particles.
机译:我们考虑由分层球体的光散射,与入射辐射的波长相比小。通过在第一种情况下将问题的严格解决方案中的矩阵中的严格解决方案中的无限矩阵来获得这种颗粒的极化性,以获得这种颗粒的极化性,从而获得了尺寸2×2和4×4的矩阵。在第一种情况下,在第一种情况下,对尺寸2×2和4×4的矩阵进行了极化的矩阵。在第一种情况下,近似表达极化性与具有层的共焦表面的球状物的众所周知的表达式正式重合,并且相应地代表这种颗粒的准确结果。第二种情况实质上是考虑到第一近似的核心表面和颗粒层的非分子的效果。使用近似表达和严格的解决方案的两层粒子对两层和三层粒子进行的数值计算结果表明,在各种参数中,更简单近似(2×2)的相对误差低于1%,而其他近似(4×4)的误差小于0.1%。推断出发现的近似公式是相当准确的和通用性,并且可以有效地用于小多层球形颗粒的光学性质的计算中。

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  • 来源
    《Optics and Spectroscopy 》 |2019年第4期| 共8页
  • 作者单位

    St Petersburg State Univ Aerosp Instrumentat St Petersburg 190000 Russia;

    St Petersburg State Univ Aerosp Instrumentat St Petersburg 190000 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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