论文标题
宽带拓扑慢光的演示
Demonstration of broadband topological slow light
论文作者
论文摘要
由于光的群体速度降低,缓慢的灯光设备能够显着增强光效应,但是通常在狭窄的带宽中达到非常低的组速度,并伴随着对不完美的极端敏感性,从而导致疾病诱导的衰减增加。最近的理论提出了解决这个问题的理想解决方案 - 以前在称为光子拓扑绝缘子的结构中发现的单向手性光子状态,不仅可以抵抗瑕疵的反向散射,而且还可以在整个拓扑带中放慢速度,在整个拓扑带中,在布里素区域中有多个绕组。在这里,我们报告了光子拓扑绝缘子中宽带拓扑慢光的实验演示。当结合形成扁平带的周期性谐振器时,手性光子状态可以在布里鲁因区域周围多次缠绕,从而在整个拓扑带盖中达到了超低基团速度。该演示将拓扑光子学的范围扩展到慢灯工程中,并在手化光子状态的分散处理中打开了独特的途径。
Slow-light devices are able to significantly enhance light-matter interaction due to the reduced group velocity of light, but a very low group velocity is usually achieved in a narrow bandwidth, accompanied by extreme sensitivity to imperfections that causes increased disorder-induced attenuation. Recent theories have suggested an ideal solution to this problem - unidirectional chiral photonic states, previously discovered in structures known as photonic topological insulators, not only resist backscattering from imperfections but can also be slowed down in the entire topological bandgap with multiple windings in the Brillouin zone. Here, we report on the experimental demonstration of broadband topological slow light in a photonic topological insulator. When coupled with periodic resonators that form flat bands, the chiral photonic states can wind many times around the Brillouin zone, achieving an ultra-low group velocity in the entire topological bandgap. This demonstration extends the scope of topological photonics into slow light engineering and opens a unique avenue in the dispersion manipulation of chiral photonic states.