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石墨烯超材料中可调谐的多相位耦合表面等离激元诱导透明效应

Tunable multiple phase-coupled plasmon-induced transparencies in graphene metamaterials.

作者信息

Zeng Chao, Cui Yudong, Liu Xueming

出版信息

Opt Express. 2015 Jan 12;23(1):545-51. doi: 10.1364/OE.23.000545.

Abstract

We demonstrate the existence of multiple electromagnetically induced transparencies (EIT)-like spectral responses in graphene metamaterials consisting of a series of self-assembled graphene Fabry-Pérot (FP) cavities. By exploiting the graphene plasmon resonances and phase-coupling effects, the transfer matrix model is established to theoretically predict the EIT-like responses, and the calculated results coincide well with numerical simulations. It is found that high-contrast (~90%) multiple EIT-like windows are observed over a broad range of mid-infrared. Additionally, these optical responses can be efficiently tuned by altering the Fermi level in graphene and the separations of FP cavities. The proposed scheme paves the way toward control of the multiple EIT-like responses, enabling exploration of the on-chip multifunctional electro-optic devices including multi-channel-selective filters, sensors, and modulators.

摘要

我们证明了在由一系列自组装石墨烯法布里-珀罗(FP)腔组成的石墨烯超材料中存在多种类似电磁诱导透明(EIT)的光谱响应。通过利用石墨烯等离子体共振和相位耦合效应,建立了转移矩阵模型来理论预测类似EIT的响应,计算结果与数值模拟吻合良好。研究发现,在宽范围的中红外波段观察到了高对比度(约90%)的多个类似EIT的窗口。此外,通过改变石墨烯中的费米能级和FP腔的间距,可以有效地调节这些光学响应。所提出的方案为控制多个类似EIT的响应铺平了道路,有助于探索包括多通道选择滤波器、传感器和调制器在内的片上多功能电光器件。

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