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亚波长石墨烯包覆纳米线三聚体中对称性破缺诱导的多个隐形区域

Multiple invisibility regions induced by symmetry breaking in a trimer of subwavelength graphene-coated nanowires.

作者信息

Fesenko Volodymyr I, Shcherbinin Vitalii I, Tuz Vladimir R

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2018 Oct 1;35(10):1760-1768. doi: 10.1364/JOSAA.35.001760.

Abstract

Electromagnetic response is studied for clusters of subwavelength graphene-coated nanowires illuminated by a linearly polarized plane wave in the terahertz frequency range. The solution of the scattering problem is obtained with the Lorenz-Mie theory and multiple cylinder scattering formalism. The results show that normalized scattering cross-sections of nanowire clusters can be drastically changed by the symmetry breaking introduced into the cluster's design. This effect is due to excitation of dark modes and is observed only for the incident wave of TE polarization.

摘要

研究了太赫兹频率范围内由线偏振平面波照射的亚波长石墨烯包覆纳米线团簇的电磁响应。利用洛伦兹 - 米理论和多圆柱散射形式得到了散射问题的解。结果表明,通过在团簇设计中引入对称性破缺,可以显著改变纳米线团簇的归一化散射截面。这种效应是由于暗模式的激发引起的,并且仅在TE偏振的入射波情况下观察到。

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