论文标题

由对称二聚体晶格中的连续体中的翻译对称性约束状态控制的黑模式

Dark modes governed by translational-symmetry-protected bound states in the continuum in symmetric dimer lattices

论文作者

Gao, Yixiao, Ge, Junyang, Sun, Shengzhi, Shen, Xiang

论文摘要

创建非放射黑色模式是在介电开放腔中实现高Q共振的关键。连续体(BIC)中光子结合状态的概念提供了一种有效的方法,可以通过对称工程来抑制辐射损失。结构反射对称性(RS)已被广泛用于在不对称的跨面上构建BIC。在本文中,我们表明,可以通过二聚体间距扰动来解锁1D对称二聚体晶格中平移对称(TS)保护BIC的辐射通道。半分析耦合模式分析表明,TS-BIC的总辐射抑制是由于消除了晶格参数中的第一个傅立叶谐波分量。 TS-BIC机制也可以在2D对称二聚体晶格中应用,而受TS保护的BIC可用于RS破裂,反之亦然,提供了一种有希望的方法,可以独立控制两个相互作用的BIC共振的质量因子。我们的结果提出了新的自由度来设计BICS及其在由不同对称性量身定制的二聚体晶格中的相互作用,并可以为实现需要高Q共振的实用应用提供新的见解。

Creating nonradiating dark modes is key to achieving high-Q resonance in dielectric open cavities. The concept of photonic bound states in the continuum (BIC) offers an efficient method to suppress radiative loss through symmetry engineering. Structural reflection symmetry (RS) has been widely utilized to construct BICs in asymmetric metasurfaces. In this paper, we show that the radiation channel of translational-symmetry (TS) protected BIC in 1D symmetric dimer lattice could be unlocked by dimer spacing perturbation. A semi-analytical coupled mode analysis reveals that the total radiation suppression of the TS-BIC is due to the elimination of the first Fourier harmonic component in the lattice parameters. TS-BIC mechanism could also be applied in a 2D symmetric dimer lattice, and BICs protected by TS are robust to RS breaking, and vice versa, providing a promising way to independently control the quality factor of two interacting BIC resonances. Our results suggest a new degree of freedom to engineer BICs as well as their interactions in dimer lattices tailored by different symmetries, and could provide new insight for realizing practical applications requiring high-Q resonances.

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