Fei Wu, Bi Chengchen, Chen Long, Jiang Xiaoyun, Yu Youlong, Chen Yang, Zhan Qiwen, Hu Jigang
Opt Express. 2025 Apr 21;33(8):16952-16964. doi: 10.1364/OE.560511.
Coherent coupling between optical modes plays a vital role in manipulating the light field and its interaction with matter. Here, we investigate the chirality-induced strong coupling between leaky guided modes (GMs) with orthogonal polarizations in a chiral metasurface waveguide in the near-infrared frequencies, which consists of a square lattice of Ge dimers with broken symmetry and an underlying SiN waveguide layer deposited on a silica substrate. We find that mode coupling between two orthogonal GMs can be induced by introducing chirality to the metasurface waveguide when illuminated with circularly polarized light. The coupling strength can be manipulated from the weak to strong coupling regime by simply changing the rotation angle of nanorods in the metasurface, enabling the generation of an exceptional point (EP) and large Rabi splitting (∼ 2 meV). Moreover, the polarization state of the hybrid mode can be continuously modified from linear to circular polarization via strong coupling. More intriguingly, we reveal that mode coupling is associated with the hybridization of circular dichroism (CD) of leaky GMs in the chiral coupled system, rendering a dual-band high CD response with a linewidth of 0.18 nm. Our findings indicate the possibility of manipulating the coupling of high-Q guided modes with chiral nanostructures by symmetry breaking and suggest potential applications in efficient chiral sensing, polarization detection, multimodal chiral lasing, and nonlinear optics.
光学模式之间的相干耦合在操纵光场及其与物质的相互作用中起着至关重要的作用。在此,我们研究了近红外频率下手性超表面波导中具有正交偏振的泄漏导模(GMs)之间的手性诱导强耦合,该波导由具有对称性破缺的锗二聚体方形晶格和沉积在二氧化硅衬底上的底层氮化硅波导层组成。我们发现,当用圆偏振光照射时,通过向超表面波导引入手性,可以诱导两个正交GMs之间的模式耦合。通过简单地改变超表面中纳米棒的旋转角度,耦合强度可以从弱耦合状态调节到强耦合状态,从而能够产生一个例外点(EP)和大的拉比分裂(约2毫电子伏特)。此外,通过强耦合,混合模式的偏振态可以从线偏振连续修改为圆偏振。更有趣的是,我们揭示了模式耦合与手性耦合系统中泄漏GMs的圆二色性(CD)的杂化有关,从而产生了线宽为0.18纳米的双波段高CD响应。我们的研究结果表明了通过对称性破缺来操纵高Q值导模与手性纳米结构耦合的可能性,并暗示了在高效手性传感、偏振检测、多模手性激光和非线性光学中的潜在应用。