Weyl半金属
半金属
物理
拓扑(电路)
凝聚态物理
Berry连接和曲率
费米能级
带隙
量子力学
几何相位
电子
数学
组合数学
作者
Lingaï Luo,Hai-Xiao Wang,Zhi‐Kang Lin,Bin Jiang,Ying Wu,Feng Li,Jian‐Hua Jiang
出处
期刊:Nature Materials
[Springer Nature]
日期:2021-04-15
卷期号:20 (6): 794-799
被引量:83
标识
DOI:10.1038/s41563-021-00985-6
摘要
Weyl semimetals (WSMs)1 exhibit phenomena such as Fermi arc surface states, pseudo-gauge fields and quantum anomalies that arise from topological band degeneracy in crystalline solids for electrons1 and metamaterials for photons2 and phonons3. Here we report a higher-order Weyl semimetal (HOWSM) in a phononic system that exhibits topologically protected boundary states in multiple dimensions. We created the physical realization of the HOWSM in a chiral phononic crystal with uniaxial screw symmetry. Using acoustic pump–probe spectroscopies, we observed coexisting chiral Fermi arc states on two-dimensional surfaces and dispersive hinge arc states on one-dimensional hinge boundaries. These topological boundary states link the projections of the Weyl points (WPs) in different dimensions and directions, and hence demonstrate the higher-order topological physics4–8 in WSMs. Our study further establishes the fundamental connection between higher-order topology and Weyl physics in crystalline materials and should stimulate further work on other potential materials, such as higher-order topological nodal-line semimetals. Symmetry is utilized to realize a phononic higher-order Weyl semimetal.
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