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The novel graphene metasurfaces based on split-ring resonators for tunable polarization switching and beam steering at terahertz frequencies

机译:基于分圈谐振器的新型石墨烯元刷,Terhertz频率的可调偏振切换和光束转向

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摘要

Graphene-based metasurfaces have emerged as promising photoelectric devices for dynamically controlling the polarization and wavefront of electromagnetic waves. A series of novel graphene-based metasurfaces consisting of split-ring resonators are proposed and researched. A dynamically tunable broadband converter of polarization states composed of periodically patterned graphene split-rings for linearly polarized waves is achieved in terahertz regime. By designing different geometrical parameters, the resonators indicate 2 pi of smooth phase modulation in a broadband frequency regime. Based on the phase profile design, a polarization beam splitter and a transmission-type focusing metasurface in a broadband frequency regime are both demonstrated successfully. Furthermore, the efficiency of these metasurfaces is dynamically tunable by modulating the gate voltage to change the Fermi energy (E-f) of graphene. This work may offer a potentially effective method to instruct the design of tunable polarization converter and wavefront-controlling devices. (C) 2019 Elsevier Ltd. All rights reserved.
机译:基于石墨烯的元卷积是有前途的光电装置,用于动态地控制电磁波的偏振和波前。提出并研究了由分流环谐振器组成的一系列基于石墨烯的元件。在太赫兹制度中实现了由周期性偏振波的周期性图案化的石墨烯分裂环组成的偏振态的动态调谐宽带转换器。通过设计不同的几何参数,谐振器表示宽带频率制度中的2 PI平滑相位调制。基于相位轮廓设计,偏振分束器和宽带频率制度的聚焦元曲面均成功展示。此外,通过调制栅极电压来改变石墨烯的费米能量(E-F)来动态调谐这些元件的效率。这项工作可以提供指示可调偏振转换器和波前控制设备的设计的潜在有效方法。 (c)2019年elestvier有限公司保留所有权利。

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