论文标题

由非线性准结合状态在连续体中驱动

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

论文作者

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

论文摘要

非线性等离子体跨面的快速进展使许多新型的光学特性用于元时间,并在频率计量学,时序表征和量子信息中具有潜在的应用。但是,非线性光学响应的​​光谱通常基于线性光学共振。在这项工作中,提出了带有抑制现象的波长 - 多形非等线性等离子体-MOS2混合表面,其中可以同时处理并选择调整多个非线性信号。从经典和量子方法的角度来看,呈现了连续体(BICS)中的非线性等离子体结合状态的清晰物理图。特别是,除了普通的等离子 - 孔子效应之外,我们在数值上展示了一个巨大的BIC启发的二阶非线性敏感性$ 10^{ - 5} $〜$ m/v $ MOS2的MOS2在红外带中。我们研究中的新颖性在于存在量子振荡器的存在,该振荡器可用于抑制和增强非线性准BIC。这种可选的非线性基于BIC的抑制和增强效应可以选择阻止不希望的模式,从而导致线宽较窄以及较小的量子衰减率,这在慢灯相关的技术中也很有希望。

Rapid progress in nonlinear plasmonic metasurfaces enabled many novel optical characteristics for metasurfaces, with potential applications in frequency metrology, timing characterization and quantum information. However, the spectrum of nonlinear optical response was typically based upon 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 $10^{-5}$~$m/V$ 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.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源