论文标题
光子谷馆绝缘子中受拓扑保护的FANO共振
Topologically protected Fano resonance in photonic valley Hall insulators
论文作者
论文摘要
快速开发的光子学带来了许多有趣的共振光学现象,其中Fano共振(FR)总是吸引研究人员,因为它在光学开关和传感中的应用。但是,其对环境条件的敏感依赖性使得在实验中很难实施。我们在这项工作中提出了一个受拓扑保护的FR,该FR基于光子谷霍尔绝缘子,免疫系统杂质。拓扑保护的FR是通过将山谷依赖性拓扑边缘状态(TESS)与一个双层腔耦合来实现的。我们构建的$δ$ -Type光子传输理论表明,这种拓扑fr的历史可以追溯到两种传输的干扰,这归因于奇偶校验 - odd腔模式和奇偶校验。我们确认,传输光谱的诱导FANO线形状对弯曲域壁和疾病具有鲁棒性。我们的工作可能会激发令人兴奋的边界来操纵山谷的运输,并为拓扑保护的光子设备(例如光学开关,低阈值激光器和超敏感传感器)铺平道路。
Rapidly developing photonics brings many interesting resonant optical phenomena, in which the Fano resonance (FR) always intrigues researchers because of its applications in optical switching and sensing. However, its sensitive dependence on environmental conditions makes it hard to implement in experiments. We in this work suggest a topologically-protected FR based on the photonic valley Hall insulators, immune to the system impurities. The topologically-protected FR is achieved by coupling the valley-dependent topological edge states (TESs) with one double-degenerate cavity. The $δ$-type photonic transport theory we build reveals that this topological FR dates from the interference of the two transmissions that are attributed to the parity-odd cavity mode and the parity-even one. We confirm that the induced Fano line shape of the transmission spectra is robust against the bending domain walls and disorders. Our work may provoke exciting frontiers for manipulating the valley transport and pave a way for the topologically protected photonic devices such as optical switches, low-threshold lasers, and ultra-sensitive sensors.