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Broadband Filter and Adjustable Extinction Ratio Modulator Based on Metal-Graphene Hybrid Metamaterials

机译:基于金属 - 石墨烯杂交超材料的宽带滤波器和可调节消光比调节剂

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摘要

A novel multifunctional device based on a hybrid metal–graphene Electromagnetically induced transparency (EIT) metamaterial at the terahertz band is proposed. It is composed of a parallel cut wire pair (PCWP) that serves as a dark mode resonator, a vertical cut wire pair (VCWP) that serves as a bright mode resonator and a graphene ribbon that serves as a modulator. An ultra-broadband transmission window with 1.23 THz bandwidth can be obtained. The spectral extinction ratio can be tuned from 26% to 98% by changing the Fermi level of the graphene. Compared with previous work, our work has superior performance in the adjustable bandwidth of the transmission window without changing the structure of the dark and bright mode resonators, and has a high extinction ratio and dynamic adjustability. Besides, we present the specific application of the device in filters and optical modules. Therefore, we believe that such a metamaterial structure provides a new way to actively control EIT-like, which has promising applications in broadband optical filters and photoelectric intensity modulators in terahertz communications.
机译:提出了一种基于杂交金属 - 石墨烯电磁诱导的太极信带的杂交金属 - 石墨烯电磁诱导透明度(EIT)超材料的新型多功能装置。它由用作暗模式谐振器的平行切割线对(PCWP)组成,该垂直切割线对(VCWP)用作亮模式谐振器和用作调制器的石墨烯带。可以获得具有1.23 THz带宽的超宽带传输窗口。通过改变石墨烯的费米水平,可以通过26%至98%调谐光谱消光比。与以前的工作相比,我们的工作在传动窗口的可调带宽中具有卓越的性能,而无需改变暗和明亮的模式谐振器的结构,并且具有高消光比和动态可调节性。此外,我们介绍了设备在滤波器和光学模块中的特定应用。因此,我们认为这种超材料结构提供了一种新的方式来激励诸如太赫兹通信中的宽带光学滤波器和光电强度调制器中的有前途的应用。

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