Toward a Holographic Theory for General Spacetimes
arXiv:1611.02702 · doi:10.1103/PhysRevD.95.086002
Abstract
We study a holographic theory of general spacetimes that does not rely on the existence of asymptotic regions. This theory is to be formulated in a holographic space. When a semiclassical description is applicable, the holographic space is assumed to be a holographic screen: a codimension-1 surface that is capable of encoding states of the gravitational spacetime. Our analysis is guided by conjectured relationships between gravitational spacetime and quantum entanglement in the holographic description. To understand basic features of this picture, we catalog predictions for the holographic entanglement structure of cosmological spacetimes. We find that qualitative features of holographic entanglement entropies for such spacetimes differ from those in AdS/CFT but that the former reduce to the latter in the appropriate limit. The Hilbert space of the theory is analyzed, and two plausible structures are found: a direct sum and "spacetime equals entanglement" structure. The former preserves a naive relationship between linear operators and observable quantities, while the latter respects a more direct connection between holographic entanglement and spacetime. We also discuss the issue of selecting a state in quantum gravity, in particular how the state of the multiverse may be selected in the landscape.
54 pages, 14 figures; version to appear in Phys. Rev. D
References in corpus (10)
- The Ryu-Takayanagi Formula from Quantum Error Correction
- Is Our Universe Likely to Decay within 20 Billion Years?
- Spontaneous Inflation and the Origin of the Arrow of Time
- Holography and Entanglement in Flat Spacetime
- Linearity of Holographic Entanglement Entropy
- The Black Hole Interior in Quantum Gravity
- Spacetime Equals Entanglement
- Saturating the holographic entropy bound
- Refinement of the Bousso-Engelhardt Area Law
- Relativeness in Quantum Gravity: Limitations and Frame Dependence of Semiclassical Descriptions
Cited by in corpus (38)
- Holographic Renyi Entropy from Quantum Error Correction
- Black Hole Microstate Cosmology
- Decoding the Apparent Horizon: A Coarse-Grained Holographic Entropy
- and EE, with implications for (A)dS subregion encodings
- Bulk Entanglement Gravity without a Boundary: Towards Finding Einstein's Equation in Hilbert Space
- Towards Bulk Metric Reconstruction from Extremal Area Variations
- Comments on Holographic Entanglement Entropy in TT Deformed CFTs
- Pulling the Boundary into the Bulk
- Non-local Entanglement and Fast Scrambling in De-Sitter Holography
- Holographic Complexity in dS
- On the Holographic Dual of a Topological Symmetry Operator
- Spacetime from Unentanglement
- Spacetime and Universal Soft Modes --- Black Holes and Beyond
- Ensemble from Coarse Graining: Reconstructing the Interior of an Evaporating Black Hole
- Holographic coherent states from random tensor networks
- Coarse-Graining Holographic States: A Semiclassical Flow in General Spacetimes
- Spacetime Equals Entanglement
- Maximin is Not Enough
- The Multiverse in an Inverted Island
- Areas and entropies in BFSS/gravity duality
- Towards non-AdS Holography via the Long String Phenomenon
- Area Law Unification and the Holographic Event Horizon
- Black Hole and de Sitter Microstructures from a Semiclassical Perspective
- Implication of island for inflation and primordial perturbations
- Outer Entropy and Quasilocal Energy
- Classical Spacetimes as Amplified Information in Holographic Quantum Theories
- Holographic entanglement entropies for Schwarzschild and Reisner-Nordström black holes in asymptotically Minkowski spacetimes
- Emergent Gravity in a Holographic Universe
- Holographic Complexity in FRW Spacetimes
- Exploring causality in braneworld/cutoff holography via holographic scattering
- Butterfly velocity and bulk causal structure
- Holographic Entanglement Entropy in the FLRW Universe
- Causal Density Matrices
- Outer entropy = Bartnik-Bray inner mass, and the gravitational ant conjecture
- Butterfly Velocities for Holographic Theories of General Spacetimes
- Black hole information and Reeh-Schlieder theorem
- Violation of Unitarity in Gravitational Subregions
- Holography for de Sitter bubble geometries