Nonlinear imaging through magnetic dipole quasi-BIC ultra-thin resonators
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Authors
Xu, Lei
Zangeneh Kamali, Khosro
Huang, Lujun
Rahmani, Mohsen
Smirnov, Alexander I
Camacho Morales, Rocio
Ma, Yixuan
Zhang, Guoquan
Woolley, Matthew J
Neshev, Dragomir
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SPIE
Abstract
We propose an ultra-thin silicon 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 leads to a robust near-field enhancement
and a significant boost of the nonlinear process, resulting in measured 500-fold enhancement of third-harmonic
emission in comparison to the conventional silicon disk metasurface. We further experimentally demonstrate
the highly-efficient nonlinear image tuning via polarisation and wavelength control, opening the way for various applications in high-performance nonlinear metadevices including tunable laser, tunable displays, nonlinear
imaging.
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Proceedings of SPIE, SPIE Micro Nano Materials, Devices, and Applications 2019
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Open Access
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