Euclidean wormholes for individual 2d CFTs
Jeevan Chandra

TL;DR
This paper explores Euclidean wormhole solutions in AdS3 gravity, linking them to replica wormholes and entropies in dual 2d CFTs, providing a formalism for coarse graining and understanding black hole information.
Contribution
It introduces a novel formalism connecting Euclidean wormholes to coarse graining in 2d CFTs and extends it to multi-boundary black holes and transition matrices.
Findings
Wormhole amplitudes match CFT Renyi entropies.
Coarse graining sets mutual information to zero.
Wormholes compute Renyi entropies of Hawking radiation post-Page time.
Abstract
We interpret appropriate families of Euclidean wormhole solutions of AdS gravity in individual 2d CFTs as replica wormholes described by branching around the time-symmetric apparent horizons of black holes sourced by the backreaction of heavy point particles. These wormholes help describe a rich formalism to coarse grain pure states in 2d CFTs dual to the black hole geometries because the wormhole amplitudes match with the Renyi entropies of CFT states obtained by decohering the pure states in a specific way. This formalism can be generalised to coarse grain pure states in several copies of the dual CFT dual to multi-boundary black holes using wormhole solutions with higher genus boundaries using which we illustrate that coarse graining away the interior of multi-boundary black holes sets the mutual information between any two copies of the dual CFT to zero. Furthermore, this…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Cosmology and Gravitation Theories · Astrophysical Phenomena and Observations
