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用于太赫兹波动态聚焦的基于石墨烯孔径的超表面透镜

Graphene aperture-based metalens for dynamic focusing of terahertz waves.

作者信息

Ding Pei, Li Yan, Shao Li, Tian Ximin, Wang Junqiao, Fan Chunzhen

出版信息

Opt Express. 2018 Oct 15;26(21):28038-28050. doi: 10.1364/OE.26.028038.

Abstract

We theoretically study a tunable reflective focusing lens, based on graphene metasurface, which consists of rectangle aperture array. Dynamic control of either the focal intensity or focal length for terahertz circular polarized waves can be achieved by uniformly tuning the graphene Fermi energy. We demonstrate the graphene apertures with the same geometry; however, spatially varying orientations can only control the focal intensity. To change the focal length, the spatially varying aperture lengths are also required. A comparative study between the metalenses, which generate only geometric or both gradient and geometric phase changes, has shown that the apertures' spatially varying length distribution is the key factor for determining the modulation level, rather than the focal length's modulation range. This kind of metalens provides tunable, high-efficiency, broadband, and wide-angle off-axis focusing, thereby offering great application potential in lightweight and integrated terahertz devices.

摘要

我们从理论上研究了一种基于石墨烯超表面的可调谐反射聚焦透镜,该超表面由矩形孔径阵列组成。通过均匀调节石墨烯费米能量,可以实现太赫兹圆偏振波的焦强度或焦距的动态控制。我们展示了具有相同几何形状的石墨烯孔径;然而,空间变化的取向只能控制焦强度。为了改变焦距,还需要空间变化的孔径长度。对仅产生几何相位变化或同时产生梯度和几何相位变化的超透镜进行的比较研究表明,孔径的空间变化长度分布是决定调制水平的关键因素,而不是焦距的调制范围。这种超透镜提供了可调谐、高效、宽带和广角离轴聚焦,从而在轻型和集成太赫兹器件中具有巨大的应用潜力。

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