Xie Suxia, Chen Jianghao, Sun Miaowenhao, Sun Siyi, Zeng Zhaoyou, Guan Xin, Yang Shengxin
Opt Express. 2024 Aug 26;32(18):32523-32537. doi: 10.1364/OE.534452.
In the fields of optics and photonics, the topic of light-matter interactions, particularly strong coupling effects, is a developing area of research. Exciton polariton, a hybridized state brought about by strong coupling, is a hot topic, especially from the standpoint of chiral optics. Under the incidence of right circularly polarized light and left circularly polarized (RCP and LCP) light, we investigate the strong coupling between excitons and quasibound states in the continuum (Q-BICs) resonance in a bulk WS metasurface. It is discovered that the Q-BICs are affected obviously on center frequencies and linewidth by structure parameters; while the exciton peaks are impacted insignificantly. Furtherly Q-BIC shows chiral enhancing features. When we take into account both Q-BIC and excitons of the metasurface simultaneously, there is a strong coupling as evidenced by the Rabi splitting up to 182 meV and the clear anti-crossing behavior in the transmittance and reflectance spectra of left and right circularly polarized light, respectively. Notably, a quasi-induced transparency window forms in the circular dichroism (CD) spectrum around the exciton band due to the non-chirality of exciton peaks. This enables the removal of excitons that are not involved in the strong coupling. The bulk WS chiral metasurface as a strong coupling system not only provides a way to understand the strong Light-matter interaction, but also generate a potential possibility for realizing the application of chiral optics. Additionally, it can realize the strong chiral coupling with a single self-hybridized element in the structure. Our results have potential implications in the chiral optical field and provide a chiral perspective on the study of strong photon-exciton coupling.
在光学和光子学领域,光与物质相互作用的主题,特别是强耦合效应,是一个不断发展的研究领域。激子极化激元是由强耦合产生的一种杂化态,是一个热门话题,尤其是从手性光学的角度来看。在右旋圆偏振光和左旋圆偏振光(RCP和LCP)的入射下,我们研究了体相WS超表面中激子与连续统中的准束缚态(Q-BICs)共振之间的强耦合。研究发现,Q-BICs的中心频率和线宽受结构参数的影响明显;而激子峰的影响不显著。此外,Q-BIC表现出手性增强特征。当我们同时考虑超表面的Q-BIC和激子时,存在强耦合,这表现为拉比分裂高达182 meV,并且左旋和右旋圆偏振光的透射率和反射率光谱中分别出现明显的反交叉行为。值得注意的是,由于激子峰的非手性,在激子带附近的圆二色性(CD)光谱中形成了一个准诱导透明窗口。这使得不参与强耦合的激子得以去除。体相WS手性超表面作为一个强耦合系统,不仅提供了一种理解强光与物质相互作用的方法,而且为实现手性光学的应用创造了潜在的可能性。此外,它可以在结构中通过单个自杂化元件实现强手性耦合。我们的结果在手性光学领域具有潜在的意义,并为强光-激子耦合的研究提供了一个手性视角。