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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Classification of crystalline topological insulators and superconductors with point group symmetries
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Classification of crystalline topological insulators and superconductors with point group symmetries

机译:具有点群对称性的晶体拓扑绝缘体和超导体的分类

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摘要

Crystalline topological phases have recently attracted a lot of experimental and theoretical attention. Key advances include the complete elementary band representation analyses of crystalline matter by symmetry indicators and the discovery of higher-order hinge and corner states. However, current classification schemes of such phases are either implicit or limited in scope. We present a scheme for the explicit classification of crystalline topological insulators and superconductors. These phases are protected by crystallographic point group symmetries and are characterized by bulk topological invariants. The classification paradigm generalizes the Clifford algebra extension process of each Altland-Zirnbauer symmetry class and utilizes algebras which incorporate the point group symmetry. Explicit results for all point group symmetries of three-dimensional crystals are presented as well as for all symmorphic layer groups of two-dimensional crystals. We discuss future extensions for treatment of magnetic crystals and defected or higher-dimensional systems as well as weak and fragile invariants.
机译:结晶拓扑阶段最近吸引了许多实验和理论关注。关键的进展包括通过对称指示剂对结晶物质进行完整的基本能带表示分析,以及发现更高阶的铰链和拐角状态。但是,当前此类阶段的分类方案在范围上是隐式的或受限的。我们提出了一种对晶体拓扑绝缘体和超导体进行明确分类的方案。这些相受结晶学点群对称性的保护,并具有整体拓扑不变量的特征。分类范例概括了每个Altland-Zirnbauer对称性类的Clifford代数扩展过程,并利用了包含点群对称性的代数。给出了三维晶体的所有点群对称性以及二维晶体的所有同构层群的明确结果。我们讨论了对磁性晶体和缺陷或高维系统以及弱而脆弱的不变式的处理方法的未来扩展。

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