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用双层石墨烯光栅激发表面等离激元极化激元模式

Excitation of Surface Plasmon Polariton Modes with Double-Layer Gratings of Graphene.

作者信息

Liu Jianping, Wang Weilin, Xie Fang, Zhang Xiaoming, Zhou Xia, Yuan Yijun, Wang Lingling

机构信息

College of Physics Science and Engineering Technology, Yichun University, Yichun 336000, China.

College of Literature, Journalism and Communication, Yichun University, Yichun 336000, China.

出版信息

Nanomaterials (Basel). 2022 Mar 30;12(7):1144. doi: 10.3390/nano12071144.

Abstract

A long-range surface plasmon polariton (SPP) waveguide, composed of double-layer graphene, can be pivotal in transferring and handling mid-infrared electromagnetic waves. However, one of the key challenges for this type of waveguide is how to excite the SPP modes through an incident light beam. In this study, our proposed design of a novel grating, consisting of a graphene-based cylindrical long-range SPP waveguide array, successfully addresses this issue using finite-difference time-domain simulations. The results show that two types of symmetric coupling modes (SCMs) are excited through a normal incident light. The transmission characteristics of the two SCMs can be manipulated by changing the interaction of the double-layer gratings of graphene as well as by varying various parameters of the device. Similarly, four SCMs can be excited and controlled by an oblique incident light because this light source is equivalent to two orthogonal beams of light. Furthermore, this grating can be utilized in the fabrication of mid-infrared optical devices, such as filters and refractive index sensors. This grating, with double-layer graphene arrays, has the potential to excite and manipulate the mid-infrared electromagnetic waves in future photonic integrated circuits.

摘要

由双层石墨烯构成的长程表面等离激元极化激元(SPP)波导在传输和处理中红外电磁波方面可能起着关键作用。然而,这类波导面临的关键挑战之一是如何通过入射光束激发SPP模式。在本研究中,我们提出的一种由基于石墨烯的圆柱形长程SPP波导阵列组成的新型光栅设计,利用时域有限差分模拟成功解决了这一问题。结果表明,通过垂直入射光可激发两种对称耦合模式(SCM)。这两种SCM的传输特性可通过改变双层石墨烯光栅的相互作用以及改变器件的各种参数来操控。同样,斜入射光可激发并控制四种SCM,因为该光源等效于两束正交光。此外,这种光栅可用于制造中红外光学器件,如滤波器和折射率传感器。这种具有双层石墨烯阵列的光栅有潜力在未来的光子集成电路中激发和操控中红外电磁波。

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