纳米光子学
非线性系统
非线性光学
极化(电化学)
谐振器
物理
光学
偶极子
二次谐波产生
光电子学
材料科学
化学
量子力学
物理化学
激光器
作者
Lei Xu,Khosro Zangeneh Kamali,Lujun Huang,Mohsen Rahmani,A. I. Smirnov,Rocio Camacho‐Morales,Yixuan Ma,Guoquan Zhang,Matt Woolley,Dragomir N. Neshev,Andrey E. Miroshnichenko
标识
DOI:10.1002/advs.201802119
摘要
Abstract Dynamical tuning of the nonlinear optical wavefront allows for a specific spectral response of predefined profiles, enabling various applications of nonlinear nanophotonics. This study experimentally demonstrates the dynamical switching of images generated by an ultrathin silicon nonlinear metasurface supporting a high‐quality leaky mode, which is formed by partially breaking a bound‐state‐in‐the‐continuum (BIC) generated by the collective magnetic dipole (MD) resonance excited in the subdiffractive periodic systems. Such a quasi‐BIC MD state can be excited directly under normal plane wave incidence and leads to a strong near‐field enhancement to further boost the nonlinear process, resulting in a 500‐fold enhancement of the third‐harmonic emission experimentally. Due to sharp spectral features and asymmetry of the unit cell, it allows for effective tailoring of the nonlinear emissions over spectral or polarization responses. Dynamical nonlinear image tuning is experimentally demonstarted via polarization and wavelength control. The results pave the way for nanophotonics applications such as tunable displays, nonlinear holograms, tunable nanolaser, and ultrathin nonlinear nanodevices with various functionalities.
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