论文标题

实验发现批量生产对应关系

Experimental discovery of bulk-disclination correspondence

论文作者

Liu, Yang, Leung, Shuwai, Li, Fei-Fei, Lin, Zhi-Kang, Tao, Xiufeng, Poo, Yin, Jiang, Jian-Hua

论文摘要

大多数天然和人造物质具有结晶结构,从中出现丰富的拓扑阶段[1-6]。然而,在实验中广泛采用的大量边缘对应关系,以确定边缘性质的带拓扑,但是在辨别各种拓扑结晶阶段[7-17]方面变得不足[7-17],从而在拓扑结晶材料的大型家族中遇到了巨大的挑战[4-6]。理论预测,无处不在的晶体学缺陷,提供了一个有效的晶体拓扑探测,但边缘超出了边缘[18-21],然而,在实验中尚未证实。在这里,我们报告了散装差异对应关系的实验发现,后者表现为分数光谱电荷和脱节处的稳健结合状态。分数披露费用源于对称性保护的体积电荷模式---许多拓扑结晶绝缘子(TCI)的基本特性。同时,脱节时的强大结合状态是TCI的次要但可观察到的属性。使用可重新配置的光子晶体作为具有高阶拓扑的光子TCI,我们通过泵探针和近场检测测量值观察了这些标志性特征。分数电荷和局部状态都证明在TCI阶段的披露中出现,但在琐碎的阶段消失了。批量销售对应关系的实验发现揭示了一种新颖的基本现象和用于探索拓扑材料的新范式。

Most natural and artificial materials have crystalline structures from which abundant topological phases emerge [1-6]. The bulk-edge correspondence, widely-adopted in experiments to determine the band topology from edge properties, however, becomes inadequate in discerning various topological crystalline phases [7-17], leading to great challenges in the experimental classification of the large family of topological crystalline materials [4-6]. Theories predict that disclinations, ubiquitous crystallographic defects, provide an effective probe of crystalline topology beyond edges [18-21], which, however, has not yet been confirmed in experiments. Here, we report the experimental discovery of the bulk-disclination correspondence which is manifested as the fractional spectral charge and robust bound states at the disclinations. The fractional disclination charge originates from the symmetry-protected bulk charge patterns---a fundamental property of many topological crystalline insulators (TCIs). Meanwhile, the robust bound states at disclinations emerge as a secondary, but directly observable property of TCIs. Using reconfigurable photonic crystals as photonic TCIs with higher-order topology, we observe those hallmark features via pump-probe and near-field detection measurements. Both the fractional charge and the localized states are demonstrated to emerge at the disclination in the TCI phase but vanish in the trivial phase. The experimental discovery of bulk-disclination correspondence unveils a novel fundamental phenomenon and a new paradigm for exploring topological materials.

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