Huang Lei, Ding Chuanqi, Ren Jiduo, Sun Siyi, Wang Weiqing, Lai Wen-Yong
Opt Lett. 2024 Oct 15;49(20):5890-5892. doi: 10.1364/OL.539081.
Non-radiative bound states in the continuum (BICs) allow the construction of resonances with high-quality (Q) factors and have emerged as an attractive platform for manipulating light-matter interactions on the nanoscale. However, current studies on symmetry-protected BICs (SP-BICs) suffer from a fundamental trade-off between the Q factor and asymmetric parameters, presenting a significant hurdle for practical applications. Here, utilizing the eigenfield perturbations, we successfully break the conventional inverse quadratic law of the SP-BICs and realize the robust high-Q resonances against the asymmetric parameters. We find the introductions of the central notch can efficiently boost the resonance of the electric quadrupole, which results in the enhancement of multiple-mode interference, and thus improving Q factors, while the constant effective refractive index guarantees the resonance with a stable wavelength. Our findings provide a promising strategy for modulating the light-matter interaction and may pave the way for applications in future high-performance optoelectronic devices.
连续统中的非辐射束缚态(BICs)能够构建具有高品质(Q)因子的共振,并且已成为在纳米尺度上操纵光与物质相互作用的一个有吸引力的平台。然而,目前关于对称保护BICs(SP-BICs)的研究在Q因子和不对称参数之间存在基本的权衡,这给实际应用带来了重大障碍。在此,利用本征场微扰,我们成功打破了SP-BICs的传统二次反比定律,并实现了对不对称参数具有鲁棒性的高Q共振。我们发现引入中心凹槽可以有效地增强电四极子的共振,这导致多模干涉增强,从而提高Q因子,同时恒定的有效折射率保证了共振波长的稳定性。我们的发现为调制光与物质相互作用提供了一种有前景的策略,并可能为未来高性能光电器件的应用铺平道路。