Si metasurface supporting multiple quasi-BICs for degenerate four-wave mixing.

Nanophotonics (Berlin, Germany) Pub Date : 2024-06-05 eCollection Date: 2024-08-01 DOI:10.1515/nanoph-2024-0128
Gianni Q Moretti, Thomas Weber, Thomas Possmayer, Emiliano Cortés, Leonardo de S Menezes, Andrea V Bragas, Stefan A Maier, Andreas Tittl, Gustavo Grinblat
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Abstract

Dielectric metasurfaces supporting quasi-bound states in the continuum (qBICs) enable high field enhancement with narrow-linewidth resonances in the visible and near-infrared ranges. The resonance emerges when distorting the meta-atom's geometry away from a symmetry-protected BIC condition and, usually, a given design can sustain one or two of these states. In this work, we introduce a silicon-on-silica metasurface that simultaneously supports up to four qBIC resonances in the near-infrared region. This is achieved by combining multiple symmetry-breaking distortions on an elliptical cylinder array. By pumping two of these resonances, the nonlinear process of degenerate four-wave mixing is experimentally realized. By comparing the nonlinear response with that of an unpatterned silicon film, the near-field enhancement inside the nanostructured dielectric is revealed. The presented results demonstrate independent geometric control of multiple qBICs and their interaction through wave mixing processes, opening new research pathways in nanophotonics, with potential applications in information multiplexing, multi-wavelength sensing and nonlinear imaging.

支持简并四波混频的多个准bic的Si超表面。
介质超表面支持连续介质中的准束缚态(qbic),在可见光和近红外范围内具有窄线宽共振的高场增强。当元原子的几何形状偏离对称保护的BIC状态时,共振就会出现,通常,给定的设计可以维持其中的一到两种状态。在这项工作中,我们引入了一种硅对硅超表面,它在近红外区域同时支持多达四个qBIC共振。这是通过在椭圆圆柱阵列上组合多个对称破坏畸变来实现的。通过抽运其中两个共振,实验实现了简并四波混频的非线性过程。通过与无图案硅薄膜的非线性响应比较,揭示了纳米结构介质内部的近场增强。研究结果证明了多个量子量子阱的独立几何控制及其通过波混频过程的相互作用,为纳米光子学开辟了新的研究途径,在信息复用、多波长传感和非线性成像等领域具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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