论文标题

观察语音高阶Weyl半含量

Observation of a phononic higher-order Weyl semimetal

论文作者

Luo, Li, Wang, Hai-Xiao, Jiang, Bin, Wu, Ying, Lin, Zhi-Kang, Li, Feng, Jiang, Jian-Hua

论文摘要

Weyl Semimetals是非凡的系统,其中外来现象(例如费米弧,伪柱田和量子异常)是由电子和光子和声子的超材料的拓扑带退化引起的。另一方面,高阶拓扑绝缘子推出了传统的散装对应关系超出传统的多维拓扑物理学。但是,尚不清楚在Weyl半法中是否可以出现高阶拓扑。在这里,我们报告了其语音类似物中高阶Weyl半学的实验发现,该模拟在多个维度上表现出受拓扑保护的边界状态。我们创建了具有单轴螺钉对称性的手性音调晶体中高阶Weyl半学的物理实现。使用近场光谱法,我们观察到表面上的手性费米弧和铰链边界上的一种新型的铰链弧状态。这些拓扑边界弧状态在不同的维度和方向上将Weyl点的投影联系起来,因此在Weyl Semimetals中显示了高阶多维拓扑物理。我们的研究建立了晶体材料中高阶拓扑与Weyl物理学之间的基本联系,并揭示了高阶拓扑半学的新地平线,在这些材料中,可能会出现前所未有的材料,例如高阶拓扑结节线。

Weyl semimetals are extraordinary systems where exotic phenomena such as Fermi arcs, pseudo-gauge fields and quantum anomalies arise from topological band degeneracy in crystalline solids for electrons and metamaterials for photons and phonons. On the other hand, higher-order topological insulators unveil intriguing multidimensional topological physics beyond the conventional bulk-edge correspondences. However, it is unclear whether higher-order topology can emerge in Weyl semimetals. Here, we report the experimental discovery of higher-order Weyl semimetals in its phononic analog which exhibit topologically-protected boundary states in multiple dimensions. We create the physical realization of the higher-order Weyl semimetal in a chiral phononic crystal with uniaxial screw symmetry. Using near-field spectroscopies, we observe the chiral Fermi arcs on the surfaces and a new type of hinge arc states on the hinge boundaries. These topological boundary arc states link the projections of Weyl points in different dimensions and directions, and hence demonstrate higher-order multidimensional topological physics in Weyl semimetals. Our study establishes the fundamental connection between higher-order topology and Weyl physics in crystalline materials and unveils a new horizon of higher-order topological semimetals where unprecedented materials such as higher-order topological nodal-lines may emerge.

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