Surface field theories of point group symmetry protected topological phases
arXiv:1711.03649 · doi:10.1103/PhysRevB.97.075145
Abstract
We identify field theories that describe the surfaces of three-dimensional bosonic point group symmetry protected topological (pgSPT) phases. The anomalous nature of the surface field theories is revealed via a dimensional reduction argument. Specifically, we study three different surface field theories. The first field theory is quantum electrodynamics in three space-time dimensions (QED3) with four flavors of fermions. We show this theory can describe the surfaces of a majority of bosonic pgSPT phases protected by a single mirror reflection, or by point group symmetry for . The second field theory is a variant of QED3 with charge-1 and charge-3 Dirac fermions. This field theory can describe the surface of a reflection symmetric pgSPT phase built by placing an state on the mirror plane. The third field theory is an non-linear sigma model with a topological theta-term at , or, equivalently, a non-compact model. Using a coupled wire construction, we show this is a surface theory for bosonic pgSPT phases with symmetry. For the latter two field theories, we discuss the connection to gapped surfaces with topological order. Moreover, we conjecture that the latter two field theories can describe surfaces of more general bosonic pgSPT phases with point group symmetry.
16 pages, 2 figures
References in corpus (16)
- Topological Crystalline Insulators
- Projected wavefunction study of Spin-1/2 Heisenberg model on the Kagome lattice
- Physics of three dimensional bosonic topological insulators: Surface Deconfined Criticality and Quantized Magnetoelectric Effect
- Algebraic spin liquid as the mother of many competing orders
- Classifying fractionalization: symmetry classification of gapped Z2 spin liquids in two dimensions
- Symmetry Protected Topological States of Interacting Fermions and Bosons
- Symmetry-protected Topological Phases, Generalized Laughlin Argument and Orientifolds
- Anyon condensation and a generic tensor-network construction for symmetry protected topological phases
- Distinct trivial phases protected by a point-group symmetry in quantum spin chains
- Topological Phases Protected By Reflection Symmetry and Cross-cap States
- Detecting crystal symmetry fractionalization from the ground state: Application to spin liquids on the kagome lattice
- CPT theorem and classification of topological insulators and superconductors
- Bridging Fermionic and Bosonic Short Range Entangled States
- A series of (2+1)d Stable Self-Dual Interacting Conformal Field Theories
- Anomalies and symmetry fractionalization in reflection-symmetric topological order
- Bound states of three fermions forming symmetry-protected topological phases
Cited by in corpus (11)
- Fracton-Elasticity Duality
- Higher order symmetry-protected topological states for interacting bosons and fermions
- Crystal-to-Fracton Tensor Gauge Theory Dualities
- Anomaly Matching in the Symmetry Broken Phase: Domain Walls, CPT, and the Smith Isomorphism
- Generalized Wen-Zee Terms
- Real-space construction of crystalline topological superconductors and insulators in 2D interacting fermionic systems
- Intrinsically Interacting Higher-Order Topological Superconductors
- Effective field theories of topological crystalline insulators and topological crystals
- Strongly correlated crystalline higher-order topological phases in two-dimensional systems: A coupled-wire study
- 4D beyond-cohomology topological phase protected by symmetry and its boundary theories
- Tensor network representations of fermionic crystalline topological phases on two-dimensional lattices