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Topological Phases Protected by Point Group Symmetry

机译:受点组对称保护的拓扑阶段

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We consider symmetry-protected topological (SPT) phases with crystalline point group symmetry, dubbed point group SPT (pgSPT) phases. We show that such phases can be understood in terms of lower-dimensional topological phases with on-site symmetry and that they can be constructed as stacks and arrays of these lower-dimensional states. This provides the basis for a general framework to classify and characterize bosonic and fermionic pgSPT phases, which can be applied for arbitrary crystalline point group symmetry and in arbitrary spatial dimensions. We develop and illustrate this framework by means of a few examples, focusing on three-dimensional states. We classify bosonic pgSPT phases and fermionic topological crystalline superconductors with Z 2 P (reflection) symmetry, electronic topological crystalline insulators (TCIs) with U ( 1 ) × Z 2 P symmetry, and bosonic pgSPT phases with C 2 v symmetry, which is generated by two perpendicular mirror reflections. We also study surface properties, with a focus on gapped, topologically ordered surface states. For electronic TCIs, we find a Z 8 × Z 2 classification, where the Z 8 corresponds to known states obtained from noninteracting electrons, and the Z 2 corresponds to a “strongly correlated” TCI that requires strong interactions in the bulk. Our approach may also point the way toward a general theory of symmetry-enriched topological phases with crystalline point group symmetry.
机译:我们认为对称保护的拓扑(SPT)阶段具有结晶点组对称性,配音点组SPT(PGSPT)相。我们表明这些阶段可以通过现场对称的低维拓扑相位理解,并且它们可以构造为这些下尺寸状态的堆叠和阵列。这为一般框架提供了分类和表征浮雕和Fermionic PGSPT阶段的基础,这可以应用于任意结晶点组对称性和任意空间尺寸。我们通过一些示例开发和说明此框架,专注于三维状态。我们用Z 2 P(反射)对称,用U(1)×Z 2 P对称,用C 2 V对称进行C 2 V对称,将具有Z 2 P(反射)对称,电子拓扑结晶绝缘体(TCIS)进行对称晶体晶体超级导体和具有C 2 V对称的孢子菌PGSPT相的晶体拓扑结晶超导体。通过两个垂直镜面反射。我们还研究表面属性,焦点偏心,拓扑有序的表面状态。对于电子TCI,我们发现Z 8×Z 2分类,其中Z 8对应于从非交互式电子获得的已知状态,并且Z 2对应于需要大量相互作用的“强相关”的TCI。我们的方法还可以通过结晶点对称对称富集的对称拓扑阶段的一般理论。

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