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基于连续体中非线性准束缚态驱动的面向复用的表面等离激元-二硫化钼混合超表面

Multiplexing-oriented plasmon-MoS2 hybrid metasurfaces driven by nonlinear quasi bound states in the continuum.

作者信息

Ren Qun, Feng Feng, Yao Xiang, Xu Quan, Xin Ming, Lan Zhihao, You Jianwei, Xiao Xiaofei, Sha Wei E I

出版信息

Opt Express. 2021 Feb 15;29(4):5384-5396. doi: 10.1364/OE.414730.

Abstract

Rapid progress in nonlinear plasmonic metasurfaces enabled many novel optical characteristics for metasurfaces, with potential applications in frequency metrology [Zimmermann et al. Opt. Lett. 29:310 (2004)], timing characterization [Singh et al. Laser Photonics Rev. 14:1 (2020)] and quantum information [Kues et al. Nature. 546:622 (2017)]. However, the spectrum of nonlinear optical response was typically determined from the linear optical resonance. In this work, a wavelength-multiplexed nonlinear plasmon-MoS2 hybrid metasurface with suppression phenomenon was proposed, where multiple nonlinear signals could to be simultaneously processed and optionally tuned. A clear physical picture to depict the nonlinear plasmonic bound states in the continuum (BICs) was presented, from the perspective of both classical and quantum approaches. Particularly, beyond the ordinary plasmon-polariton effect, we numerically demonstrated a giant BIC-inspired second-order nonlinear susceptibility 10m/V of MoS2 in the infrared band. The novelty in our study lies in the presence of a quantum oscillator that can be adopted to both suppress and enhance the nonlinear quasi BICs. This selectable nonlinear BIC-based suppression and enhancement effect can optionally block undesired modes, resulting in narrower linewidth as well as smaller quantum decay rates, which is also promising in slow-light-associated technologies.

摘要

非线性等离子体超表面的快速发展为超表面带来了许多新颖的光学特性,在频率计量[齐默尔曼等人,《光学快报》29:310 (2004)]、定时表征[辛格等人,《激光光子学评论》14:1 (2020)]和量子信息[库斯等人,《自然》546:622 (2017)]等领域具有潜在应用。然而,非线性光学响应的光谱通常由线性光学共振确定。在这项工作中,提出了一种具有抑制现象的波长复用非线性等离子体-二硫化钼混合超表面,其中多个非线性信号可以同时处理并可选择性地调谐。从经典和量子方法的角度,给出了一个清晰的物理图像来描述连续统中的非线性等离子体束缚态(BICs)。特别地,除了普通的等离激元-极化激元效应外,我们在数值上证明了在红外波段二硫化钼中受巨大BIC启发的二阶非线性极化率为10m/V。我们研究的新颖之处在于存在一个量子振荡器,它可以用来抑制和增强非线性准BICs。这种基于可选择的非线性BIC的抑制和增强效应可以选择性地阻挡不需要的模式,从而导致更窄的线宽以及更小的量子衰减率,这在与慢光相关的技术中也很有前景。

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