Canonical quantization of nonlinear sigma models with theta term, with applications to symmetry-protected topological phases
arXiv:1704.00735 · doi:10.1103/PhysRevD.96.045010
Abstract
We canonically quantize nonlinear sigma models (NLSMs) with theta term on arbitrary smooth, closed, connected, oriented -dimensional spatial manifolds , with the goal of proving the suitability of these models for describing symmetry-protected topological (SPT) phases of bosons in spatial dimensions. We show that in the disordered phase of the NLSM, and when the coefficient of the theta term is an integer multiple of , the theory on has a unique ground state and a finite energy gap to all excitations. We also construct the ground state wave functional of the NLSM in this parameter regime, and we show that it is independent of the metric on and given by the exponential of a Wess-Zumino term for the NLSM field, in agreement with previous results on flat space. Our results show that the NLSM in the disordered phase and at , , has a symmetry-preserving ground state but no topological order (i.e., no topology-dependent ground state degeneracy), making it an ideal model for describing SPT phases of bosons. Thus, our work places previous results on SPT phases derived using NLSMs on solid theoretical ground. To canonically quantize the NLSM on we use Dirac's method for the quantization of systems with second class constraints, suitably modified to account for the curvature of space. In a series of four appendices we provide the technical background needed to follow the discussion in the main sections of the paper.
24 pages, 4 appendices, 2 figures
References in corpus (12)
- Physics of three dimensional bosonic topological insulators: Surface Deconfined Criticality and Quantized Magnetoelectric Effect
- Fermion Path Integrals And Topological Phases
- Classifying symmetry-protected topological phases through the anomalous action of the symmetry on the edge
- Symmetry Protected Topological States of Interacting Fermions and Bosons
- Symmetry protected Spin Quantum Hall phases in 2-Dimensions
- Global anomalies on the surface of fermionic symmetry-protected topological phases in (3+1) dimensions
- Topological Electromagnetic Responses of Bosonic Quantum Hall, Topological Insulator, and Chiral Semi-Metal phases in All Dimensions
- Stripe melting, a transition between weak and strong symmetry protected topological phases
- Anyon and Loop Braiding Statistics in Field Theories with a Topological term
- Field theory of symmetry-protected valence bond solid states in (2+1) dimensions
- Decorated defect condensate, a window to unconventional quantum phase transitions in Weyl semimetals
- Self-dual Quantum Electrodynamics on the boundary of 4d Bosonic Symmetry Protected Topological States