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Dual nonlinearity Controlling of Mode and Dispersion Properties in Graphene-Dielectric Plasmonic Waveguide

机译:石墨介电等离子体波导中的模式和色散性能的双非线性控制

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摘要

Abstract We study the mode and dispersion properties of graphene-dielectric nonlinear plasmonic waveguide considering the dual nonlinearity of dielectric and graphene. For TM polarization, the mode distribution, the permittivity distribution, and dispersion relation were obtained by numerically solving the Maxwell equations. Compared with the case considering only the nonlinearity of dielectric, the initial field intensity to excite plasmon modes reduces obviously when introducing the dual nonlinearity. In addition, the influence of dual nonlinearity on dispersion relation is discussed, and we find that the graphene’s nonlinearity affects strongly the dispersion properties. The introduction of dual nonlinearity leads to the decrease of the initial field intensity, which has potential application in all-optical switches with low threshold.
机译:摘要考虑介电和石墨烯的双非线性研究石墨烯 - 介电非线性等离子体等离子体波导的模式和色散性能。对于TM偏振,通过数值求解麦克斯韦方程,获得模式分布,介电积分和色散关系。与仅考虑电介质的非线性的情况相比,在引入双重非线性时,激发等离子体模式的初始场强度明显减少。此外,讨论了双非线性对分散关系的影响,并发现石墨烯的非线性影响强烈的分散性能。双重非线性引入导致初始场强的降低,这在具有低阈值的全光开关中具有潜在的应用。

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