论文标题

光子拓扑谷锁的波导

Photonic topological valley-locked waveguides

论文作者

Chen, Qiaolu, Zhang, Li, Yan, Qinghui, Xi, Rui, Chen, Hongsheng, Yang, Yihao

论文摘要

拓扑山谷的扭结状态已成为重要的研究领域,并具有相当有趣的应用,例如强大的芯片通信和拓扑激光器。与大多数传统波导中具有可调宽度的指导模式不同,山谷扭结状态通常高度限制在域壁周围,因此缺乏自由度的模式宽度度(DOF),这对潜在的设备应用构成了严重限制。在这里,通过在两个具有相反山谷的谷数数字的山谷PHC之间添加一个光子晶体(PHC),我们设计并在实验上展示了具有可调模式宽度的拓扑谷锁的波导(TVLWS)。 Photoinc TVLW可以找到独特的应用,例如高能量拓扑通道交集,山谷锁定的能量浓缩器以及具有可设计限制的拓扑腔,如数值和实验性验证。具有宽度DOF的TVLW可能有益于与Exsistsistsistsist的光子波导和设备的接口,并用作实践使用拓扑激光,田间增强,芯片交流和高能量能量运输的新型平台。

Topological valley kink states have become a significant research frontier with considerable intriguing applications such as robust on-chip communications and topological lasers. Unlike guided modes with adjustable widths in most conventional waveguides, the valley kink states are usually highly confined around the domain walls and thus lack the mode width degree of freedom (DOF), posing a serious limitation to potential device applications. Here, by adding a photonic crystal (PhC) featuring a Dirac point between two valley PhCs with opposite valley-Chern numbers, we design and experimentally demonstrate topological valley-locked waveguides (TVLWs) with tunable mode widths. The photoinc TVLWs could find unique applications, such as high-energy-capacity topological channel intersections, valley-locked energy concentrators, and topological cavities with designable confinement, as verified numerically and experimentally. The TVLWs with width DOF could be beneficial to interface with the exsisting photonic waveguides and devices, and serve as a novel platform for practical use of topological lasing, field enhancement, on-chip communicaitons, and high-capacity energy transport.

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