English

Classification and Description of Bosonic Symmetry Protected Topological Phases with semiclassical Nonlinear Sigma models

Strongly Correlated Electrons 2016-02-22 v3

Abstract

In this paper we systematically classify and describe bosonic symmetry protected topological (SPT) phases in all physical spatial dimensions using semiclassical nonlinear Sigma model (NLSM) field theories. All the SPT phases on a dd-dimensional lattice discussed in this paper can be described by the same NLSM, which is an O(d+2) NLSM in (d+1)(d+1)-dimensional space-time, with a topological Θ\Theta-term. The field in the NLSM is a semiclassical Landau order parameter with a unit length constraint. The classification of SPT phases discussed in this paper based on their NLSMs is consistent with the more mathematical classification based on group cohomology. Besides the classification, the formalism used in this paper also allows us to explicitly discuss the physics at the boundary of the SPT phases, and it reveals the relation between SPT phases with different symmetries. For example, it gives many of these SPT states a natural "decorated defect" construction.

Keywords

Cite

@article{arxiv.1309.0515,
  title  = {Classification and Description of Bosonic Symmetry Protected Topological Phases with semiclassical Nonlinear Sigma models},
  author = {Zhen Bi and Alex Rasmussen and Kevin Slagle and Cenke Xu},
  journal= {arXiv preprint arXiv:1309.0515},
  year   = {2016}
}

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16 pages