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Title: Simple holographic models of black hole evaporation

Journal Article · · Journal of High Energy Physics (Online)
 [1];  [1];  [1]
  1. Massachusetts Inst. of Technology (MIT), Cambridge, MA (United States). Center for Theoretical Physics

Several recent papers have shown a close relationship between entanglement wedge reconstruction and the unitarity of black hole evaporation in AdS/CFT. The analysis of these papers however has a rather puzzling feature: all calculations are done using bulk dynamics which are essentially those Hawking used to predict information loss, but applying ideas from entanglement wedge reconstruction seems to suggest a Page curve which is consistent with information conservation. Why should two different calculations in the same model give different answers for the Page curve? In this note we present a new pair of models which clarify this situation. Our first model gives a holographic illustration of unitary black hole evaporation, in which the analogue of the Hawking radiation purifies itself as expected, and this purification is reproduced by the entanglement wedge analysis. Moreover a smooth black hole interior persists until the last stages the evaporation process. Our second model gives an alternative holographic interpretation of the situation where the bulk evolution leads to information loss: unlike in the models proposed so far, this bulk information loss is correctly reproduced by the entanglement wedge analysis. This serves as an illustration that quantum extremal surfaces are in some sense kinematic: the time-dependence of the entropy they compute depends on the choice of bulk dynamics. In both models no bulk quantum corrections need to be considered: classical extremal surfaces are enough to do the job. We argue that our first model is the one which gives the right analogy for what actually happens to evaporating black holes, but we also emphasize that any complete resolution of the information problem will require an understanding of non-perturbative bulk dynamics.

Research Organization:
Massachusetts Inst. of Technology (MIT), Cambridge, MA (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
Grant/Contract Number:
SC0018944; SC0019127
OSTI ID:
1803475
Journal Information:
Journal of High Energy Physics (Online), Vol. 2020, Issue 8; ISSN 1029-8479
Publisher:
Springer BerlinCopyright Statement
Country of Publication:
United States
Language:
English

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Cited By (11)

Warped information and entanglement islands in AdS/WCFT journal July 2021
A paradox regarding monogamy of entanglement preprint January 2019
Baby Universes, Holography, and the Swampland preprint January 2020
The entropy of Hawking radiation text January 2020
Replica wormhole and island incompatibility with monogamy of entanglement preprint January 2020
Quantum Extremal Islands Made Easy, Part II: Black Holes on the Brane preprint January 2020
Global symmetry, Euclidean gravity, and the black hole information problem text January 2020
Four coupled SYK models and Nearly AdS$_2$ gravities: Phase Transitions in Traversable wormholes and in Bra-ket wormholes preprint January 2020
Islands for Entanglement Negativity text January 2020
Concerns about the replica wormhole derivation of the island conjecture preprint January 2021
Islands and complexity of eternal black hole and radiation subsystems for a doubly holographic model text January 2021

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