Nonreciprocal Response of Electrically Biased Graphene-Coated Fiber

Fuente: arXiv
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Auteurs principaux: Fallah, Asma, Engheta, Nader
Format: Preprint
Publié: 2024
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author Fallah, Asma
Engheta, Nader
author_facet Fallah, Asma
Engheta, Nader
contents 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 THz, microwave, and optical technologies.
format Preprint
id arxiv_https___arxiv_org_abs_2403_15565
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Nonreciprocal Response of Electrically Biased Graphene-Coated Fiber
Fallah, Asma
Engheta, Nader
Optics
Applied Physics
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 THz, microwave, and optical technologies.
title Nonreciprocal Response of Electrically Biased Graphene-Coated Fiber
topic Optics
Applied Physics
url https://arxiv.org/abs/2403.15565