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Tunable and light-controllable bistable reflected group delay based on nonlinear surface plasmon resonance with graphene

机译:基于石墨烯的非线性表面等离子体激元共振的可调光控双稳态反射群时延

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In this paper, we have shown that tunable nonlinear group delay of reflected light beam at terahertz frequencies can be achieved by a modified Otto configuration with the insertion of monolayer graphene and nonlinear substrate. This large nonlinear reflected group delay originates from the excitation of surface plasmon resonance at the interface of two dielectrics with graphene. Graphene sheet with unique optical properties can enhance the surface plasmon resonance and modulate bistable behavior of the reflected group delay by suitably adjusting the Fermi energy of the graphene and the relaxation time. Moreover, the large negative and positive of reflected group delay is sensitive to the thicknesses of the air layer. We believe these intriguing phenomena are promising for some potential applications in graphene-based optical delay devices.
机译:在本文中,我们已经表明,通过插入单层石墨烯和非线性衬底的改进型Otto配置,可以实现太赫兹频率下反射光束的可调非线性群延迟。较大的非线性反射群延迟源自两个电介质与石墨烯的界面处的表面等离子体激元共振的激发。通过适当调节石墨烯的费米能和弛豫时间,具有独特光学性能的石墨烯片可以增强表面等离子体共振并调节反射基团延迟的双稳态行为。而且,反射的群延迟的大的负和正对空气层的厚度敏感。我们相信,这些有趣的现象对于基于石墨烯的光学延迟设备的某些潜在应用是有前途的。

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