Wu Qiaohua, Wang Jun, Wang Wei, Lin Jie, Jin Peng, Liu Shutian, Zhou Keya
Opt Lett. 2024 Aug 1;49(15):4186-4189. doi: 10.1364/OL.532028.
Traditional designs driven by symmetry-protected bound states in the continuum (SP-BICs) hardly support independent dual-band resonances, and they require extremely small perturbations to obtain an ultrahigh-Q. Here, we propose an SP-BIC-driven structure composed of a metasurface and a resonator, which supports independent dual-band resonances and enables ultrahigh-Q at large perturbations. The underlying mechanism enabling this is to form reasonable eigenfield distributions of two BICs by coating a dielectric layer on the metasurface. One eigenfield is confined within the metasurface and the bottom of the resonator, while the other one concentrates at the top of the resonator. Thus, two resonances with different originations can be supported, and the effect of metasurface perturbations on the eigenfields is weakened. This work provides a promising pathway for unlocking the potential of SP-BICs, enhancing light trapping and manipulation across diverse applications.
由连续统中的对称保护束缚态(SP-BICs)驱动的传统设计几乎无法支持独立的双频共振,并且它们需要极小的微扰才能获得超高品质因数。在此,我们提出一种由超表面和谐振器组成的SP-BIC驱动结构,该结构支持独立的双频共振,并能在较大微扰下实现超高品质因数。实现这一点的潜在机制是通过在超表面上涂覆一层介电层来形成两个BIC的合理本征场分布。一个本征场局限于超表面和谐振器底部,而另一个集中在谐振器顶部。因此,可以支持两种起源不同的共振,并且超表面微扰对本征场的影响会减弱。这项工作为释放SP-BICs的潜力、增强光捕获以及在各种应用中的光操纵提供了一条有前景的途径。