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电偏置石墨烯包覆光纤的非互易响应

Nonreciprocal response of electrically biased graphene-coated fiber.

作者信息

Fallah Asma, Engheta Nader

出版信息

Opt Lett. 2024 Aug 15;49(16):4755-4758. doi: 10.1364/OL.525578.

Abstract

Here, we theoretically investigate the nonreciprocal response of an electrically biased graphene-coated dielectric fiber. By electrically biasing the graphene coating along the fiber axis, the dynamic conductivity of graphene exhibits a nonsymmetric response with respect to the longitudinal component of guided-mode wave vectors. Consequently, the guided waves propagating in two opposite directions may encounter distinct propagation features. In this work, the electromagnetic properties, such as modal dispersion and some field distributions, are presented, and the strength of nonreciprocity is discussed for different parameters of graphene, such as its chemical potential and material loss. Furthermore, the influence of the radius of the fiber on the nonreciprocal response is investigated. We envision that such nonreciprocal optical fibers may find various potential applications in the THz regime.

摘要

在此,我们从理论上研究了电偏置的石墨烯包覆介质光纤的非互易响应。通过沿光纤轴对石墨烯涂层施加电偏置,石墨烯的动态电导率相对于导模波矢量的纵向分量呈现出非对称响应。因此,沿两个相反方向传播的导波可能会遇到不同的传播特性。在这项工作中,我们给出了诸如模式色散和一些场分布等电磁特性,并针对石墨烯的不同参数(如化学势和材料损耗)讨论了非互易性的强度。此外,还研究了光纤半径对非互易响应的影响。我们设想这种非互易光纤可能在太赫兹波段找到各种潜在应用。

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