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基于单层超材料的三重表面等离激元诱导透明及对偏振光不敏感的光开关

Triple plasmon-induced transparency and optical switch desensitized to polarized light based on a mono-layer metamaterial.

作者信息

Liu Zhimin, Zhang Xiao, Zhou Fengqi, Luo Xin, Zhang Zhenbin, Qin Yipeng, Zhuo Shanshan, Gao Enduo, Li Hongjian, Yi Zao

出版信息

Opt Express. 2021 Apr 26;29(9):13949-13959. doi: 10.1364/OE.425315.

Abstract

A mono-layer metamaterial comprising four graphene-strips and one graphene-square-ring is proposed herein to realize triple plasmon-induced transparency (PIT). Theoretical results based on the coupled mode theory (CMT) are in agreement with the simulation results obtained using the finite-difference time-domain (FDTD). An optical switch is investigated based on the characteristics of graphene dynamic modulation, with modulation degrees of the amplitude of 90.1%, 80.1%, 94.5%, and 84.7% corresponding to 1.905 THz, 2.455 THz, 3.131 THz, and 4.923 THz, respectively. Moreover, the proposed metamaterial is insensitive to the change in the angle of polarized light, for which the triple-PIT is equivalent in the cases of both x- and y-polarized light. The optical switch based on the proposed structure is effective not only for the linearly polarized light in different directions but also for left circularly polarized and right circularly polarized light. As such, this work provides insight into the design of optoelectronic devices based on the polarization characteristics of the incident light field on the optical switch and PIT.

摘要

本文提出了一种由四个石墨烯条带和一个石墨烯方环组成的单层超材料,以实现三重表面等离激元诱导透明(PIT)。基于耦合模理论(CMT)的理论结果与使用时域有限差分法(FDTD)获得的模拟结果一致。基于石墨烯动态调制特性研究了一种光开关,其幅度调制度分别为90.1%、80.1%、94.5%和84.7%,分别对应于1.905太赫兹、2.455太赫兹、3.131太赫兹和4.923太赫兹。此外,所提出的超材料对偏振光角度的变化不敏感,在x偏振光和y偏振光的情况下,三重PIT是等效的。基于所提出结构的光开关不仅对不同方向的线偏振光有效,而且对左旋圆偏振光和右旋圆偏振光也有效。因此,这项工作为基于光开关和PIT上入射光场的偏振特性的光电器件设计提供了思路。

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