A proposal for 3d quantum gravity and its bulk factorization
arXiv:2210.14196 · doi:10.1007/JHEP06(2023)134
Abstract
Recent progress in AdS/CFT has provided a good understanding of how the bulk spacetime is encoded in the entanglement structure of the boundary CFT. However, little is known about how spacetime emerges directly from the bulk quantum theory. We address this question in an effective 3d quantum theory of pure gravity, which describes the high temperature regime of a holographic CFT. This theory can be viewed as a -deformation and dimensional uplift of JT gravity. Using this model, we show that the Bekenstein-Hawking entropy of a two-sided black hole equals the bulk entanglement entropy of gravitational edge modes. In the conventional Chern-Simons description, these black holes correspond to Wilson lines in representations of $\PSL(2,\mathbb{R})\otimes \PSL(2,\mathbb{R}) $. We show that the correct calculation of gravitational entropy suggests we should interpret the bulk theory as an extended topological quantum field theory associated to the quantum semi-group $\SL^+_{q}(2,\mathbb{R})\otimes \SL^+_{q}(2,\mathbb{R})$. Our calculation suggests an effective description of bulk microstates in terms of collective, anyonic degrees of freedom whose entanglement leads to the emergence of the bulk spacetime.
Revised introduction and summary. Journal version
References in corpus (6)
- An Investigation of AdS Backreaction and Holography
- Universal Spectrum of 2d Conformal Field Theory in the Large c Limit
- Large N algebras and generalized entropy
- Quantization of conical spaces in 3D gravity
- Anyonic Entanglement and Topological Entanglement Entropy
- The Schwarzian sector of higher spin CFTs
Cited by in corpus (25)
- Solving 3d Gravity with Virasoro TQFT
- Dynamical actions and q-representation theory for double-scaled SYK
- Dynamical Edge Modes and Entanglement in Maxwell Theory
- A note on the bulk interpretation of the Quantum Extremal Surface formula
- A Type Approximation of the Crossed Product
- Quantum exponentials for the modular double and applications in gravity models
- 3d Gravity as a random ensemble
- Hartle-Hawking state and its factorization in 3d gravity
- Multipartite edge modes and tensor networks
- Minimal Areas from Entangled Matrices
- Quantum Groups as Global Symmetries
- 3D supergravity from Virasoro TQFT: Gravitational partition function and Out-of-time-order correlator
- Deriving the non-perturbative gravitational dual of quantum Liouville theory from BCFT operator algebra
- Dynamical edge modes in Maxwell theory from a BRST perspective, with an application to the Casimir energy
- Quantum group origins of edge states in double-scaled SYK
- Anyon Condensation in Virasoro TQFT: Wormhole Factorization
- Dynamical Edge Modes in Yang-Mills Theory
- De Sitter Horizon Edge Partition Functions
- The chiral SYK model in three-dimensional holography
- Gravitons on Nariai Edges
- Modular matrices of 2d Carrollian and warped CFTs
- A universal sum over topologies in 3d gravity
- Coarse-Grained Fixed-Point Tensor Networks and Holographic Reflected Entropy in 3D Gravity
- The massive BMS character in 3D quantum gravity
- Minimal Factorization of Chern-Simons Theory -- Gravitational Anyonic Edge Modes