论文标题

观察光子边缘和角落的分数拓扑数

Observation of fractional topological numbers at photonic edges and corners

论文作者

Liang, Chengpeng, Liu, Yang, Li, Fei-Fei, Leung, Shuwai, Poo, Yin, Jiang, Jian-Hua

论文摘要

物质的拓扑阶段具有异国情调的状态。然而,尽管很早就由jackiw和rebbi预测,但边缘的分数拓扑数在拓扑光子系统中仍然难以捉摸。在这里,我们报告了一维光子晶体的拓扑边缘和角落的分数拓扑数的观察。分数拓扑数是通过光子局部密度状态的测量来确定的。在一维光子晶体中,当光子带隙经历拓扑过渡时,我们目睹了边缘从0到1/2处的分数拓扑数的迅速变化,证实了著名的Jackiw和Rebbi的预测。在二维系统中,我们发现角区域的分数拓扑数在不同的光子带隙阶段在0到1/2和1/4不等。我们的研究为光子学中的分数量子数字铺平了拓扑操作。

Topological phases of matter are featured with exotic edge states. However, the fractional topological numbers at edges, though predicted long ago by Jackiw and Rebbi, remain elusive in topological photonic systems. Here, we report on the observation of fractional topological numbers at the topological edges and corners in one- and two-dimensional photonic crystals. The fractional topological numbers are determined via the measurements of the photonic local density-of-states. In one-dimensional photonic crystals, we witness a rapid change of the fractional topological number at the edges rising from 0 to 1/2 when the photonic band gap experiences a topological transition, confirming the well-known prediction of Jackiw and Rebbi. In two-dimensional systems, we discover that the fractional topological number in the corner region varies from 0 to 1/2 and 1/4 in different photonic band gap phases. Our study paves the way toward topological manipulation of fractional quantum numbers in photonics.

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