Institute for Theoretical Physics, ETH Zurich, 8093 Zürich, Switzerland.
Department of Physics, Princeton University, Princeton, NJ 08544, USA.
Science. 2020 Feb 14;367(6479):797-800. doi: 10.1126/science.aaz7654.
Symmetries crucially underlie the classification of topological phases of matter. Most materials, both natural as well as architectured, possess crystalline symmetries. Recent theoretical works unveiled that these crystalline symmetries can stabilize fragile Bloch bands that challenge our very notion of topology: Although answering to the most basic definition of topology, one can trivialize these bands through the addition of trivial Bloch bands. Here, we fully characterize the symmetry properties of the response of an acoustic metamaterial to establish the fragile nature of the low-lying Bloch bands. Additionally, we present a spectral signature in the form of spectral flow under twisted boundary conditions.
对称性在物质拓扑相的分类中起着至关重要的作用。大多数材料,无论是天然的还是人工构建的,都具有晶体对称性。最近的理论工作揭示了这些晶体对称性可以稳定脆弱的 Bloch 能带,这挑战了我们对拓扑的基本概念:尽管这些能带符合拓扑的最基本定义,但通过添加平凡的 Bloch 能带,我们可以将其简单化。在这里,我们充分描述了声学超材料对响应的对称性性质,以确定低能 Bloch 能带的脆弱性。此外,我们在扭曲边界条件下以谱流的形式呈现了一个谱特征。