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包含石墨烯的非线性谐振器的耦合模理论框架。

Coupled-mode-theory framework for nonlinear resonators comprising graphene.

作者信息

Christopoulos Thomas, Tsilipakos Odysseas, Grivas Nikolaos, Kriezis Emmanouil E

机构信息

Department of Electrical and Computer Engineering, Aristotle University of Thessaloniki (AUTH), Thessaloniki 54124, Greece.

Institute of Electronic Structure and Laser, Foundation for Research and Technology Hellas (FORTH), Heraklion 71110, Crete, Greece.

出版信息

Phys Rev E. 2016 Dec;94(6-1):062219. doi: 10.1103/PhysRevE.94.062219. Epub 2016 Dec 27.

Abstract

A general framework combining perturbation theory and coupled-mode theory is developed for analyzing nonlinear resonant structures comprising dispersive bulk and sheet materials. To allow for conductive sheet materials, a nonlinear current term is introduced in the formulation in addition to the more common nonlinear polarization. The framework is applied to model bistability in a graphene-based traveling-wave resonator system exhibiting third-order nonlinearity. We show that the complex conductivity of graphene disturbs the equality of electric and magnetic energies on resonance (a condition typically taken for granted), due to the reactive power associated with the imaginary part of graphene's surface conductivity. Furthermore, we demonstrate that the dispersive nature of conductive materials must always be taken into account, since it significantly impacts the nonlinear response. This is explained in terms of the energy stored in the surface current, which is zeroed-out when linear dispersion is neglected. The results obtained with the proposed framework are compared with full-wave nonlinear finite-element simulations with excellent agreement. Very low characteristic power for bistability is obtained, indicating the potential of graphene for nonlinear applications.

摘要

为了分析由色散体材料和薄膜材料组成的非线性谐振结构,开发了一种结合微扰理论和耦合模理论的通用框架。为了考虑导电薄膜材料,除了更常见的非线性极化外,在公式中引入了一个非线性电流项。该框架被应用于对具有三阶非线性的基于石墨烯的行波谐振器系统中的双稳性进行建模。我们表明,由于与石墨烯表面电导率虚部相关的无功功率,石墨烯的复电导率扰乱了共振时电能和磁能的相等性(这一条件通常被视为理所当然)。此外,我们证明必须始终考虑导电材料的色散特性,因为它会显著影响非线性响应。这可以通过表面电流中存储的能量来解释,当忽略线性色散时,表面电流中的能量为零。将所提出框架得到的结果与全波非线性有限元模拟结果进行比较,两者吻合得非常好。获得了非常低的双稳性特征功率,表明石墨烯在非线性应用方面具有潜力。

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