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首页> 外文期刊>Physical review, B >Classification of crystalline insulators without symmetry indicators: Atomic and fragile topological phases in twofold rotation symmetric systems
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Classification of crystalline insulators without symmetry indicators: Atomic and fragile topological phases in twofold rotation symmetric systems

机译:无对称性指标的结晶绝缘体的分类:双重旋转对称系统中的原子和脆弱的拓扑阶段

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摘要

Topological crystalline phases in electronic structures can be generally classified using the spatial symmetry characters of the valence bands and mapping them onto appropriate symmetry indicators. These mappings have been recently applied to identify thousands of topological electronic materials. There can exist, however, topological crystalline nontrivial phases that go beyond this paradigm: They cannot be identified using spatial symmetry labels and consequently lack any classification. In this work, we achieve the first of such classifications showcasing the paradigmatic example of two-dimensional crystals with twofold rotation symmetry. We classify the gapped phases in time-reversal invariant systems with strong spin-orbit coupling identifying a set of three Z(2) topological invariants, which correspond to nested quantized partial Berry phases. By further isolating the set of atomic insulators representable in terms of exponentially localized symmetric Wannier functions, we infer the existence of topological crystalline phases of the fragile type that would be diagnosed as topologically trivial using symmetry indicators and construct a number of microscopic models exhibiting this phase. Our work is expected to have important consequences given the central role fragile topological phases are expected to play in novel two-dimensional materials such as twisted bilayer graphene.
机译:电子结构中的拓扑晶相可以通常使用价带的空间对称特征进行分类,并将它们映射到适当的对称指示器上。最近申请了这些映射以识别成千上万的拓扑电子材料。然而,可以存在超出该范例的拓扑结晶非阶段:不能使用空间对称标签识别它们,因此缺乏任何分类。在这项工作中,我们实现了第一个这样的分类,展示了具有双重旋转对称的二维晶体的矛盾实例。我们在具有强大的旋转轨道耦合的时间反转不变系统中分类了覆盖阶段,识别一组三种z(2)拓扑不变,其对应于嵌套量化的部分浆果阶段。通过进一步隔离在指数局部对称型婚姻型功能方面可代表的原子绝缘体,我们推断使用对称指示剂被诊断为拓扑般的晶体晶相的存在,并构建呈现该阶段的许多微观模型。我们的工作预计将鉴于中央角色脆弱的拓扑阶段预期在新颖的二维材料如扭曲双层石墨烯中发挥着重要影响。

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  • 来源
    《Physical review, B》 |2019年第11期|共14页
  • 作者单位

    Univ Utrecht Ctr Extreme Matter &

    Emergent Phenomena Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

    Univ Utrecht Ctr Extreme Matter &

    Emergent Phenomena Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

    Univ Utrecht Ctr Extreme Matter &

    Emergent Phenomena Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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