Hajian Hodjat, Zhang Xia, McCormack Oisin, Zhang Yongliang, Dobie Jack, Rukhlenko Ivan D, Ozbay Ekmel, Louise Bradley A
Opt Express. 2024 May 20;32(11):19163-19174. doi: 10.1364/OE.525535.
Advancing on previous reports, we utilize quasi-bound states in the continuum (q-BICs) supported by a metasurface of TiO meta-atoms with broken inversion symmetry on an SiO substrate, for two possible applications. Firstly, we demonstrate that by tuning the metasurface's asymmetric parameter, a spectral overlap between a broad q-BIC and a narrow magnetic dipole resonance is achieved, yielding an electromagnetic induced transparency analogue with a 50 μs group delay. Secondly, we have found that, due to the strong coupling between the q-BIC and WS exciton at room temperature and normal incidence, by integrating a single layer of WS to the metasurface, a 37.9 meV Rabi splitting in the absorptance spectrum with 50% absorption efficiency is obtained. These findings promise feasible two-port devices for visible range slow-light characteristics or nanoscale excitonic coupling.
在先前报告的基础上,我们利用在SiO衬底上具有破缺反演对称性的TiO元原子超表面所支持的连续谱中的准束缚态(q-BICs),实现两种可能的应用。首先,我们证明通过调整超表面的不对称参数,可实现宽q-BIC与窄磁偶极共振之间的光谱重叠,产生具有50 μs群延迟的电磁诱导透明类似物。其次,我们发现,由于在室温及正入射条件下q-BIC与WS激子之间的强耦合,通过在超表面集成单层WS,在吸收光谱中获得了37.9 meV的拉比分裂,吸收效率为50%。这些发现为实现具有可见范围慢光特性或纳米级激子耦合的可行双端口器件带来了希望。