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基于二氧化钒的电可控光学开关超表面

Electrically controllable optical switch metasurface based on vanadium dioxide.

作者信息

Ma Yukuan, Zhou Hao, Huang Yulei, Guo Jianshe, Zhu Yuehong, Wu Zhujing, Gu Qiongqiong, Miao Zixiao, Yan Congliao, Wang Shutong, Deng Guoliang, Zhou Shouhuan

出版信息

Opt Lett. 2023 Aug 1;48(15):3885-3888. doi: 10.1364/OL.492350.

Abstract

We report a voltage-tunable reflective gold wire grid metasurface on vanadium dioxide thin film, which consists of a metal-insulator-metal (MIM) structure. We excite surface plasmon polariton (SPP) modes on the gold surface by fabricating a one-dimensional structured gold wire grid. Joule heating of laser-induced graphene (LIG) can be controlled by the voltage at the bottom, allowing vanadium dioxide in the structure to complete the transition from the insulating state to the metallic state. The phase transition of vanadium dioxide strongly disrupts the plasmon modes excited by the gold wire grid above, thereby realizing a huge change in the reflection spectrum. This acts as a tunable metasurface optical switch with a maximum modulation depth (MD) of over 20 dB. We provide a more effective and simple method for creating tunable metasurfaces in the near-infrared band, which can allow metasurfaces to have wider applications in optical signal processing, optical storage, and holography.

摘要

我们报道了一种基于二氧化钒薄膜的电压可调反射型金线栅超表面,它由金属-绝缘体-金属(MIM)结构组成。我们通过制作一维结构化金线栅在金表面激发表面等离激元极化激元(SPP)模式。底部的电压可以控制激光诱导石墨烯(LIG)的焦耳热,使结构中的二氧化钒完成从绝缘态到金属态的转变。二氧化钒的相变强烈干扰了上方金线栅激发的等离激元模式,从而实现反射光谱的巨大变化。这充当了一个可调超表面光开关,最大调制深度(MD)超过20 dB。我们提供了一种在近红外波段创建可调超表面的更有效且简单的方法,这可以使超表面在光信号处理、光存储和全息术等方面有更广泛的应用。

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