(3+1)-dimensional topological phases and self-dual quantum geometries encoded on Heegard surfaces
arXiv:1701.02037 · doi:10.1007/JHEP05(2017)123
Abstract
We apply the recently suggested strategy to lift state spaces and operators for (2+1)-dimensional topological quantum field theories to state spaces and operators for a (3+1)-dimensional TQFT with defects. We start from the (2+1)-dimensional Turaev-Viro theory and obtain a state space, consistent with the state space expected from the Crane-Yetter model with line defects. This work has important applications for quantum gravity as well as the theory of topological phases in (3+1) dimensions. It provides a self-dual quantum geometry realization based on a vacuum state peaked on a homogeneously curved geometry. The state spaces and operators we construct here provide also an improved version of the Walker-Wang model, and simplify its analysis considerably. We in particular show that the fusion bases of the (2+1)-dimensional theory lead to a rich set of bases for the (3+1)-dimensional theory. This includes a quantum deformed spin network basis, which in a loop quantum gravity context diagonalizes spatial geometry operators. We also obtain a dual curvature basis, that diagonalizes the Walker-Wang Hamiltonian. Furthermore, the construction presented here can be generalized to provide state spaces for the recently introduced dichromatic four-dimensional manifold invariants.
27 pages, many figures, v2: minor corrections
References in corpus (5)
- Discretization independence implies non-locality in 4D discrete quantum gravity
- Flux formulation of loop quantum gravity: Classical framework
- Approximating Turaev-Viro 3-manifold invariants is universal for quantum computation
- 3d Quantum Gravity: Coarse-Graining and q-Deformation
- 6J Symbols Duality Relations
Cited by in corpus (18)
- Effective Spin Foam Models for Lorentzian Quantum Gravity
- Excitation basis for (3+1)d topological phases
- Gravitational edge modes: From Kac-Moody charges to Poincaré networks
- Discrete gravity dynamics from effective spin foams
- Quasi-local holographic dualities in non-perturbative 3d quantum gravity
- A Zero-Parameter Extension of General Relativity with Varying Cosmological Constant
- Towards the map of quantum gravity
- Bubble Networks: Framed Discrete Geometry for Quantum Gravity
- Gapped Boundary Theory of the Twisted Gauge Theory Model of Three-Dimensional Topological Orders
- Quantum geometry from higher gauge theory
- Towards a dual spin network basis for (3+1)d lattice gauge theories and topological phases
- From Coarse-Graining to Holography in Loop Quantum Gravity
- Lorentzian quantum cosmology from effective spin foams
- Holographic description of boundary gravitons in (3+1) dimensions
- On a self-dual phase space for 3+1 lattice Yang-Mills theory
- Quantum edge modes in 3d gravity and 2+1d topological phases of matter
- Squeezing of light from Planck-scale physics
- Categorical Quantum Volume Operator