English

Relative Anomalies in (2+1)D Symmetry Enriched Topological States

Strongly Correlated Electrons 2020-02-19 v2 High Energy Physics - Theory Quantum Physics

Abstract

Certain patterns of symmetry fractionalization in topologically ordered phases of matter are anomalous, in the sense that they can only occur at the surface of a higher dimensional symmetry-protected topological (SPT) state. An important question is to determine how to compute this anomaly, which means determining which SPT hosts a given symmetry-enriched topological order at its surface. While special cases are known, a general method to compute the anomaly has so far been lacking. In this paper we propose a general method to compute relative anomalies between different symmetry fractionalization classes of a given (2+1)D topological order. This method applies to all types of symmetry actions, including anyon-permuting symmetries and general space-time reflection symmetries. We demonstrate compatibility of the relative anomaly formula with previous results for diagnosing anomalies for Z2T\mathbb{Z}_2^{\bf T} space-time reflection symmetry (e.g. where time-reversal squares to the identity) and mixed anomalies for U(1)×Z2TU(1) \times \mathbb{Z}_2^{\bf T} and U(1)Z2TU(1) \rtimes \mathbb{Z}_2^{\bf T} symmetries. We also study a number of additional examples, including cases where space-time reflection symmetries are intertwined in non-trivial ways with unitary symmetries, such as Z4T\mathbb{Z}_4^{\bf T} and mixed anomalies for Z2×Z2T\mathbb{Z}_2 \times \mathbb{Z}_2^{\bf T} symmetry, and unitary Z2×Z2\mathbb{Z}_2 \times \mathbb{Z}_2 symmetry with non-trivial anyon permutations.

Keywords

Cite

@article{arxiv.1906.10691,
  title  = {Relative Anomalies in (2+1)D Symmetry Enriched Topological States},
  author = {Maissam Barkeshli and Meng Cheng},
  journal= {arXiv preprint arXiv:1906.10691},
  year   = {2020}
}

Comments

34 pages. v2: minor corrections