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Surface Plasmons of a Graphene Parallel Plate Waveguide Bounded by Kerr-type Nonlinear Media

机译:以克尔型非线性介质为界的石墨烯平行板波导的表面等离子体

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摘要

The exact dispersion relations of the transverse magnetic surface plasmons (SPs) supported by a graphene parallel plate waveguide (PPWG), surrounded on one or both sides by Kerr-type nonlinear media, are obtained analytically. It is shown that if self-focusing nonlinear materials are chosen as the surrounding media, the SPs localization length (LL) is decreased, while their propagation length (PL) remains unchanged, as compared to those of a typical graphene PPWG. Moreover, PL and LL of the SPs are considerably affected by adjusting nonlinear parts of the dielectric permittivities of the nonlinear media. It is found that using an appropriate defocusing nonlinear material as a substrate of the graphene PPWG, which is surrounded on one side by the nonlinear medium, leads to noticeable enhancement of the propagation and localization characteristics of the surface plasmons. The results presented here can be useful for enhancing capabilities of plasmonic devices based on the graphene PPWG for sensing and waveguide applications.
机译:通过解析获得了由石墨烯平行板波导(PPWG)支撑的横向磁性表面等离激元(SPs)在一侧或两侧被克尔型非线性介质包围的精确色散关系。结果表明,与典型的石墨烯PPWG相比,如果选择自聚焦非线性材料作为周围介质,则SP的定位长度(LL)减小,而它们的传播长度(PL)保持不变。此外,通过调节非线性介质的介电常数的非线性部分,可以极大地影响SP的PL和LL。发现使用合适的散焦非线性材料作为石墨烯PPWG的衬底,该材料在一侧上被非线性介质包围,导致表面等离激元的传播和定位特性显着增强。此处提出的结果对于增强基于石墨烯PPWG的等离子设备在传感和波导应用中的功能可能有用。

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