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吸收性主体介质中粒子电磁散射的离散偶极子近似方法

Discrete dipole approximation method for electromagnetic scattering by particles in an absorbing host medium.

作者信息

Dong Jian, Zhang Wenjie, Liu Linhua

出版信息

Opt Express. 2021 Mar 1;29(5):7690-7705. doi: 10.1364/OE.418467.

Abstract

Electromagnetic (EM) scattering by particles in an absorbing host medium is frequently encountered in practical applications, which makes the conventional EM scattering theory controversial and most of the theoretical methods for EM scattering inapplicable. Most of the relevant works in literature are confined to spherical particles. In this work, we develop the discrete dipole approximation (DDA) method for EM scattering by an arbitrary particle immersed in an absorbing host medium. We elaborate how the near- and far-field scattering quantities can be calculated by DDA. The accuracy of DDA is validated by comparison with the apparent and inherent scattering quantities of spherical particles computed by exact Mie theory. Then EM extinction by non-absorbing spheroids in absorbing host medium is studied by DDA. We find that particles that are prolonged in the incident direction are more likely to produce a negative apparent extinction, which is also supported by the near-field electric field distribution. The DDA method we develop will be useful and flexible in the study of EM scattering by particles in absorbing host medium.

摘要

在实际应用中,经常会遇到吸收性主体介质中粒子的电磁(EM)散射问题,这使得传统的电磁散射理论存在争议,并且大多数电磁散射的理论方法都不适用。文献中的大多数相关工作都局限于球形粒子。在这项工作中,我们开发了用于计算浸没在吸收性主体介质中的任意粒子电磁散射的离散偶极子近似(DDA)方法。我们详细阐述了如何通过DDA计算近场和远场散射量。通过与精确米氏理论计算的球形粒子的表观和固有散射量进行比较,验证了DDA的准确性。然后,利用DDA研究了吸收性主体介质中非吸收性椭球体的电磁消光。我们发现,在入射方向上拉长的粒子更有可能产生负的表观消光,近场电场分布也证实了这一点。我们开发的DDA方法在研究吸收性主体介质中粒子的电磁散射方面将是有用且灵活的。

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