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通过对基于石墨烯的可调谐超表面进行电控制实现太赫兹波束切换

Terahertz beam switching by electrical control of graphene-enabled tunable metasurface.

作者信息

Zhang Yin, Feng Yijun, Zhao Junming, Jiang Tian, Zhu Bo

机构信息

Department of Electronic Engineering, School of Electronic Science and Engineering, Nanjing University, Nanjing, 210093, China.

Jiangsu Provincial Key Laboratory of E-Business, Nanjing University of Finance and Economics, Nanjing, 210003, China.

出版信息

Sci Rep. 2017 Oct 26;7(1):14147. doi: 10.1038/s41598-017-14493-8.

Abstract

Controlling the terahertz wave, especially the dynamical and full control of terahertz wavefront, is highly demanded due to the increasing development of practical devices and application systems. Recently considerable efforts have been made to fill the 'terahertz gap' with the help of artificial metamaterial or metasurface incorporated with graphene material. Here, we propose a scheme to design tunable metasurface consisting of metallic patch array on a grounded polymer substrate embedded with graphene layers to electrically control the electromagnetic beam reflection at terahertz frequency. By adjusting geometric dimension of the patch elements, 360 degree reflection phase range may be achieved, thus abrupt phase shifts can be introduced along the metasurface for tailoring the reflected wavefront. Moreover, the reflective phase gradient over the metasurface can be switched between 90 and 360 degree by controlling the Fermi energy of the embedded graphene through voltage biasing, hence dynamically switching the reflective beam directions. Numerical simulations demonstrate that either single beam or dual beam dynamically switching between normal and oblique reflection angles can be well attained at working frequency. The proposed approach will bring much freedom in the design of beam manipulation devices and may be applied to terahertz radiation control.

摘要

随着实际设备和应用系统的不断发展,对太赫兹波的控制,尤其是对太赫兹波前的动态和全面控制的需求日益增加。最近,人们借助人工超材料或与石墨烯材料结合的超表面,为填补“太赫兹空白”付出了巨大努力。在此,我们提出一种方案,设计一种可调谐超表面,它由接地聚合物衬底上嵌入石墨烯层的金属贴片阵列组成,用于在太赫兹频率下电控制电磁束反射。通过调整贴片元件的几何尺寸,可以实现360度的反射相位范围,从而可以沿着超表面引入突变相位偏移来调整反射波前。此外,通过电压偏置控制嵌入石墨烯的费米能量,可以使超表面上的反射相位梯度在90度和360度之间切换,从而动态切换反射光束方向。数值模拟表明,在工作频率下,可以很好地实现单光束或双光束在正反射角和斜反射角之间的动态切换。所提出的方法将为光束操纵装置的设计带来很大的自由度,并可能应用于太赫兹辐射控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9e9/5658342/02339e33a09c/41598_2017_14493_Fig1_HTML.jpg

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