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通过耦合强度在对称光子晶体平板中定制连续统中的束缚态。

Tailoring bound states in the continuum in symmetric photonic crystal slabs by coupling strengths.

作者信息

Zhang Zhaojian, Yang Junbo, Du Te, Ma Hansi, Jiang Xinpeng

出版信息

Opt Express. 2022 Feb 28;30(5):8049-8062. doi: 10.1364/OE.454408.

Abstract

In this work, we investigate polarization-insensitive dual bound states in the continuum (BICs) at Γ point in symmetric photonic crystal (PhC) slabs. Especially, BICs are tailored by tuning intra- and intercellular optical coupling strengths of PhC slabs. Based on four different approaches, we realize the transition from BIC to quasi-BIC resonances with various dispersion behaviors while maintaining the symmetry of slabs. Also, we show the two resonances are lowest-order even and odd eigenmodes that can match the symmetry of the incident plane wave, and their quality (Q) factors follow the inverse quadratic law except for cases with larger perturbations. Furthermore, multipolar decomposition reveals that even quasi-BICs are dominated by the toroidal dipole and magnetic quadrupole, while odd quasi-BICs are governed by the magnetic dipole and electric quadrupole. Interestingly, an anomalous increase of the Q factor is observed in one case, which is attributed to the mode transformation. Finally, anisotropic coupling adjustment is discussed, which enriches the degrees of freedom to manipulate BICs. This work introduces a novel perspective to tailor BICs at Γ point in PhC slabs and has potential planar photonic applications for nonlinear enhancement and sensing.

摘要

在这项工作中,我们研究了对称光子晶体(PhC)平板中Γ点处的偏振不敏感双连续束缚态(BICs)。特别地,通过调节PhC平板的细胞内和细胞间光耦合强度来定制BICs。基于四种不同的方法,我们实现了从BIC到具有各种色散行为的准BIC共振的转变,同时保持平板的对称性。此外,我们表明这两种共振是最低阶的偶模和奇模,它们可以与入射平面波的对称性相匹配,并且除了扰动较大的情况外,它们的品质(Q)因子遵循反平方定律。此外,多极分解表明,偶准BIC由环形偶极子和磁四极子主导,而奇准BIC由磁偶极子和电四极子主导。有趣的是,在一种情况下观察到Q因子的异常增加,这归因于模式转换。最后,讨论了各向异性耦合调整,这丰富了操纵BICs的自由度。这项工作为在PhC平板的Γ点定制BICs引入了一个新的视角,并在非线性增强和传感方面具有潜在的平面光子应用。

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