Effect of Multilayer Graphene on Symmetric Mode Induced Optical Bistability at Terahertz Frequency

A. Kar, N. Goswami, A. Saha
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Abstract

A multilayered modified Otto configuration assisting graphene symmetric mode resonance is analytically explored to achieve low threshold optical bistability of about 2.5×105 V/m at 1 THz frequency. Through the proposed configuration, the effect of layer-number of spatially separated graphene sheets on the phenomenon of hysteresis is also investigated and has been found that the graphene symmetric mode resonance can be optimized through the variation of graphene layer-number, which will lead to minimal demand of input power for realizing the optical bistability using the suggested model. The proposed system offers promising applications in the realm of all-optical integrated devices.
多层石墨烯对太赫兹对称模诱导光双稳性的影响
本文分析探讨了一种辅助石墨烯对称模共振的多层改进Otto结构,以在1thz频率下实现约2.5×105 V/m的低阈值光学双稳性。通过所提出的结构,研究了空间分离的石墨烯片层数对滞后现象的影响,发现石墨烯对称模共振可以通过改变石墨烯层数来优化,从而使使用所提出的模型实现光学双稳所需的输入功率最小。该系统在全光集成器件领域具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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