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Topological quantum field theory of three-dimensional bosonic Abelian-symmetry-protected topological phases

机译:三维玻色子阿贝尔对称保护的拓扑相的拓扑量子场论

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摘要

Symmetry-protected topological phases (SPT) are short-range entangled gapped states protected by global symmetry. Nontrivial SPT phases cannot be adiabatically connected to the trivial disordered state (or atomic insulator) as long as certain global symmetry G is unbroken. At low energies, most of the two-dimensional SPTs with Abelian symmetry can be described by topological quantum field theory (TQFT) of the multicomponent Chern-Simons type. However, in contrast to the fractional quantum Hall effect where TQFT can give rise to interesting bulk anyons, TQFT for SPTs only supports trivial bulk excitations. The essential question in TQFT descriptions for SPTs is to understand how the global symmetry is implemented in the partition function. In this paper, we systematically study TQFT of three-dimensional SPTs with unitary Abelian symmetry (e.g., Z(N1) x Z(N2) x ... ). In addition to the usual multicomponent BF topological term at level-1, we find that there are new topological terms with quantized coefficients (e.g., a(1) boolean AND a(2) boolean AND da(2) and a(1) boolean AND a(2) boolean AND a(3) boolean AND a(4)) in TQFT actions, where a(1), a(2), ... are 1-form U(1) gauge fields. These additional topological terms cannot be adiabatically turned off as long as G is unbroken. By investigating symmetry transformations for the TQFT partition function, we end up with the classification of SPTs that is consistent with the well-known group cohomology approach. We also discuss how to gauge the global symmetry and possible TQFT descriptions of Dijkgraaf-Witten gauge theory.
机译:对称保护的拓扑阶段(SPT)是受全局对称性保护的短距离纠缠态。只要特定的全局对称性G未被破坏,非平凡的SPT相就不能绝热地连接到平凡的无序状态(或原子绝缘体)上。在低能状态下,大多数具有阿贝尔对称性的二维SPT可以通过多组分Chern-Simons型的拓扑量子场论(TQFT)来描述。但是,与分数量子霍尔效应(其中TQFT可以引起有趣的体积任意子)相反,用于SPT的TQFT仅支持平凡的体积激发。 SQ的TQFT描述中的基本问题是要了解如何在分区函数中实现全局对称。在本文中,我们系统地研究了具有单一阿贝尔对称性(例如Z(N1)x Z(N2)x ...)的三维SPT的TQFT。除了在级别1上通常使用的多分量BF拓扑项外,我们发现还有一些具有量化系数的新拓扑项(例如a(1)布尔AND a(2)布尔AND da(2)和a(1)布尔TQFT操作中的AND a(2)布尔AND AND(3)布尔AND a(4)),其中a(1),a(2),...是1形式的U(1)规范字段。只要G不中断,就不能绝热地关闭这些其他拓扑项。通过研究TQFT分区函数的对称变换,我们得出了SPT的分类,该分类与众所周知的群同调方法一致。我们还将讨论如何测量Dijkgraaf-Witten规范理论的整体对称性和可能的​​TQFT描述。

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