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通过激光诱导石墨烯超表面实现的可打印且低成本的完美太赫兹吸收体。

Printable and low-cost perfect terahertz absorber realized by a laser-induced graphene metasurface.

作者信息

Dong Yan, Wang Zongyuan, Xiong Chenjie, Deng Bowen, Hu Bin

出版信息

Opt Lett. 2023 Oct 1;48(19):5009-5012. doi: 10.1364/OL.499332.

Abstract

Terahertz (THz) absorbers are highly desired with the rapid development of THz technology. Although metasurface-based absorbers can realize perfect absorption, their fabrication often requires complicated micro-nano-processing with a high cost. In this paper, fast printable and low-cost metasurface absorbers based on a laser-induced graphene (LIG) technique are proposed. Experimental results demonstrate that these two metasurfaces can achieve maximum absorptions of 99.3% and 99.9% at their resonant frequencies in an incident angle range of ±55°. Fabrication of a metasurface with a size of 1 × 1 cm costs only 11 s. The absorbers may be applied in THz dichroism and communications.

摘要

随着太赫兹(THz)技术的快速发展,人们对太赫兹吸收器有着强烈的需求。尽管基于超表面的吸收器能够实现完美吸收,但其制造通常需要复杂的微纳加工,成本高昂。本文提出了基于激光诱导石墨烯(LIG)技术的快速可打印且低成本的超表面吸收器。实验结果表明,这两种超表面在±55°入射角范围内的共振频率处可实现99.3%和99.9%的最大吸收率。制造尺寸为1×1 cm的超表面仅需11 s。这些吸收器可应用于太赫兹二向色性和通信领域。

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