Nanoelectromechanical systems-enabled tunable metamaterials

Qiugu Wang, D. Mao, Peng Liu, Liang Dong
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Abstract

This paper reports on a nanoelectromechanical systems-based tunable IR metamaterial realized by embedding nanocantilevers into complementary split ring resonator structures suspended over individual wells. The optical field confined in the air gap of c-SRR is strongly modulated by electromechanical deflection of the nanocantilever, thus modulating the reflection spectrum of the metamaterial. With the easy-to-implement tunable meta-atom design, the NEMS-enabled metamaterial provides an ultrahigh mechanical modulation frequency of 32.26 MHz and 38% optical signal modulation at a wavelength of 2.1 μm. We envision a compact, efficient, and high-speed electro-optic modulation platform in the IR region using this tunable metamaterial technology.
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纳米机电系统可调超材料
本文报道了一种基于纳米机电系统的可调谐红外超材料,该材料通过将纳米反杠杆嵌入悬浮在单个井上的互补分裂环谐振器结构中来实现。被限制在c-SRR气隙中的光场被纳米反杠杆的机电偏转强调制,从而调制了超材料的反射光谱。通过易于实现的可调谐元原子设计,NEMS-enabled超材料在2.1 μm波长下提供了32.26 MHz的超高机械调制频率和38%的光信号调制。我们设想使用这种可调谐的超材料技术在红外区域建立一个紧凑、高效、高速的电光调制平台。
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