太赫兹石墨烯基超表面的超快控制平台

A. Tasolamprou, A. Koulouklidis, G. Kenanakis, C. Daskalaki, S. Tzortzakis, Charalampros Mavidis, G. Deligiorgis, Z. Viskadourakis, P. Kuzhir, M. Kafesaki, E. Economou, C. Soukoulis
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摘要

我们讨论了利用为在太赫兹区运行而设计的人工超表面的奇异特性所产生的独特可能性。我们主要关注石墨烯基超表面作为太赫兹区调制器。石墨烯表现出独特的光学特性,特别是在太赫兹光谱中,它主要表现出类似德鲁德的响应。在这里,我们提出了石墨烯薄膜吸收器中的超快调制响应,可以使用红外泵浦-太赫兹探针配置的宽带太赫兹时域光谱系统(THz- tds)来评估。吸收器的简单方案可以用作超快平面光学和超表面的平台。
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A platform for ultrafast control in THz graphene-based metasurfaces
We discuss the unique possibilities stemming from exploiting the exotic properties of artificial metasurfaces designed for operation in the THz regime. We mainly focus on graphene based metasurfaces acting as modulators for the THz regime. Graphene exhibits unique optical properties particularly in the THz spectrum, where it predominantly exhibits a Drude-like response. Here we present that ultrafast modulation response in a graphene thin film absorber which can be assessed with use of a broadband THz time-domain-spectroscopic system (THz-TDS) in an IR pump-THz probe configuration. The simple scheme of the absorber can be used as a platform for ultrafast flat optics and metasurfaces.
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