Large-area gate-tunable terahertz plasmonic metasurfaces employing graphene based structures

P. Liu, F. Valmorra, C. Maissen, J. Keller, G. Scalari, J. Faist
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引用次数: 1

Abstract

We design and experimentally investigate various large-area gate-tunable terahertz plasmonic metasurfaces employing different types of graphene based structures, i.e. arrays of graphene ribbons, square-lattice graphene anti-dots and hexagonal-lattice graphene anti-dots. Distinct gate-tunable resonances in the terahertz frequency range arising from excitations of plasmonic resonance modes associated with different structures are observed in their transmission spectra. Carrier density dependent tuning of the resonance frequency exhibits excellent agreement with the theoretical prediction and the numerical simulation. The demonstrated graphene based terahertz plasmonic metasurfaces can be employed to realize more complex devices and functionalities such as tunable plasmonic waveguide and transformation optics.
采用石墨烯基结构的大面积门可调谐太赫兹等离子体超表面
我们设计并实验研究了采用不同类型石墨烯结构的各种大面积门可调谐太赫兹等离子体超表面,即石墨烯带状阵列,方晶格石墨烯反点和六边形晶格石墨烯反点。在太赫兹频率范围内,由于与不同结构相关的等离子体共振模式的激发,在其透射光谱中观察到不同的门可调谐共振。谐振频率随载流子密度的调整与理论预测和数值模拟结果吻合良好。所演示的基于石墨烯的太赫兹等离子体超表面可用于实现更复杂的器件和功能,如可调谐等离子体波导和变换光学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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