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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Gauging spatial symmetries and the classification of topological crystalline phases
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APS -APS March Meeting 2017 - Event - Gauging spatial symmetries and the classification of topological crystalline phases

机译:APS -APS 3月会议2017 - 事件 - 仪表空间对称和拓扑结晶阶段的分类

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A emph{topological crystalline} phase of matter is a topological phaseprotected by space-group symmetries. The prototypical examples are the so-called``topological crystalline insulators''. For strongly interacting topological crystalline phases, there is as yet no systematic theory. This is in contrast to the case of emph{internal} symmetries, where coupling to a background gauge field allows one to derive a systematic classification. In this work, we elucidate what it means to gauge a spatial symmetry, allowing us to give a systematic classification of topological crystalline phases. Our work applies to a subset of topological crystalline phases which we call ``topological crystalline liquids''; we conjecture that this subset includes nearly all topological crystalline phases, with the exception of states with exotic fracton excitations such as the ``Haah code''. As an example, we classify bosonic topological crystalline liquids for all 230 space groups.
机译:EMPH {拓扑结晶}物质的阶段是由空间组对称的拓扑相位。原型实例是所谓的“类别晶体绝缘体”。对于强烈相互作用的拓扑结晶相,还没有系统理论。这与EMPH {内部}对称的情况相反,其中耦合到背景仪表字段允许一个来导出系统分类。在这项工作中,我们阐明它意味着衡量空间对称性的方法,使我们能够提供拓扑结晶阶段的系统分类。我们的作品适用于我们称之为“拓扑结晶液体”的拓扑结晶阶段的子集;我们猜想该子集包括几乎所有拓扑结晶阶段,除了具有异国情调的Fracton激励的状态,例如“哈氏代码”。作为一个例子,我们对所有230个空间组分类伴者拓扑结晶液体。

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