论文标题

通过合成的Weyl路径跟踪山谷拓扑

Tracking valley topology with synthetic Weyl paths

论文作者

Fan, Xiying, Xia, Tianzhi, Qiu, Huahui, Zhang, Qicheng, Qiu, Chunyin

论文摘要

受到新出现的山谷曲调的启发,人们对古典元晶体的拓扑山谷运输引起了极大的兴趣。非平凡的域壁状态的存在是用山谷Chern号的概念来解释的,该概念仅在小带隙的极限下进行了很好的定义。在这里,我们提出了一个新的视觉角度,以跟踪古典系统中错综复杂的山谷拓扑。从声学元晶体的可控性中受益,我们通过引入额外的结构参数(此处的旋转角度),在合成三维动量空间中构建Weyl点。因此,可以在三维Weyl晶体中使用严格量化的拓扑电荷跟踪二维谷地式带拓扑,该拓扑是沿特定的Weyl路径连接合成的Weyl点和无间隙手性表面状态的开放表面弧。我们的声学实验最终确定了所有理论预测。我们的发现可能会促进拓扑山谷物理学的发展,拓扑谷物理学的定义不明确,但在多个物理学科中的热门辩论中。

Inspired by the newly emergent valleytronics, great interest has been attracted to the topological valley transport in classical metacrystals. The presence of nontrivial domain-wall states is interpreted with a concept of valley Chern number, which is well defined only in the limit of small bandgap. Here, we propose a new visual angle to track the intricate valley topology in classical systems. Benefiting from the controllability of our acoustic metacrystals, we construct Weyl points in synthetic three-dimensional momentum space through introducing an extra structural parameter (rotation angle here). As such, the two-dimensional valley-projected band topology can be tracked with the strictly quantized topological charge in three-dimensional Weyl crystal, which features open surface arcs connecting the synthetic Weyl points and gapless chiral surface states along specific Weyl paths. All theoretical predictions are conclusively identified by our acoustic experiments. Our findings may promote the development of topological valley physics, which is less well-defined yet under hot debate in multiple physical disciplines.

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