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Geometric secret sharing in a model of Hawking radiation

We consider a black hole in three dimensional AdS space entangled with an auxiliary radiation system. We model the microstates of the black hole in terms of a field theory living on an end of the world brane behind the horizon, and allow this field theory to itself have a holographic dual geometry....

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Autores principales: Balasubramanian, Vijay, Kar, Arjun, Parrikar, Onkar, Sárosi, Gábor, Ugajin, Tomonori
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP01(2021)177
http://cds.cern.ch/record/2713133
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author Balasubramanian, Vijay
Kar, Arjun
Parrikar, Onkar
Sárosi, Gábor
Ugajin, Tomonori
author_facet Balasubramanian, Vijay
Kar, Arjun
Parrikar, Onkar
Sárosi, Gábor
Ugajin, Tomonori
author_sort Balasubramanian, Vijay
collection CERN
description We consider a black hole in three dimensional AdS space entangled with an auxiliary radiation system. We model the microstates of the black hole in terms of a field theory living on an end of the world brane behind the horizon, and allow this field theory to itself have a holographic dual geometry. This geometry is also a black hole since entanglement of the microstates with the radiation leaves them in a mixed state. This “inception black hole” can be purified by entanglement through a wormhole with an auxiliary system which is naturally identified with the external radiation, giving a realization of the ER=EPR scenario. In this context, we propose an extension of the Ryu-Takayanagi (RT) formula, in which extremal surfaces computing entanglement entropy are allowed to pass through the brane into its dual geometry. This new rule reproduces the Page curve for evaporating black holes, consistently with the recently proposed “island formula”. We then separate the radiation system into pieces. Our extended RT rule shows that the entanglement wedge of the union of radiation subsystems covers the black hole interior at late times, but the union of entanglement wedges of the subsystems may not. This result points to a secret sharing scheme in Hawking radiation wherein reconstruction of certain regions in the interior is impossible with any subsystem of the radiation, but possible with all of it.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2020
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spelling cern-27131332023-10-04T08:50:15Zdoi:10.1007/JHEP01(2021)177http://cds.cern.ch/record/2713133engBalasubramanian, VijayKar, ArjunParrikar, OnkarSárosi, GáborUgajin, TomonoriGeometric secret sharing in a model of Hawking radiationhep-thParticle Physics - TheoryWe consider a black hole in three dimensional AdS space entangled with an auxiliary radiation system. We model the microstates of the black hole in terms of a field theory living on an end of the world brane behind the horizon, and allow this field theory to itself have a holographic dual geometry. This geometry is also a black hole since entanglement of the microstates with the radiation leaves them in a mixed state. This “inception black hole” can be purified by entanglement through a wormhole with an auxiliary system which is naturally identified with the external radiation, giving a realization of the ER=EPR scenario. In this context, we propose an extension of the Ryu-Takayanagi (RT) formula, in which extremal surfaces computing entanglement entropy are allowed to pass through the brane into its dual geometry. This new rule reproduces the Page curve for evaporating black holes, consistently with the recently proposed “island formula”. We then separate the radiation system into pieces. Our extended RT rule shows that the entanglement wedge of the union of radiation subsystems covers the black hole interior at late times, but the union of entanglement wedges of the subsystems may not. This result points to a secret sharing scheme in Hawking radiation wherein reconstruction of certain regions in the interior is impossible with any subsystem of the radiation, but possible with all of it.We consider a black hole in three dimensional AdS space entangled with an auxiliary radiation system. We model the microstates of the black hole in terms of a field theory living on an end of the world brane behind the horizon, and allow this field theory to itself have a holographic dual geometry. This geometry is also a black hole since entanglement of the microstates with the radiation leaves them in a mixed state. This "inception black hole" can be purified by entanglement through a wormhole with an auxiliary system which is naturally identified with the external radiation, giving a realization of the ER=EPR scenario. In this context, we propose an extension of the Ryu-Takayanagi (RT) formula, in which extremal surfaces computing entanglement entropy are allowed to pass through the brane into its dual geometry. This new rule reproduces the Page curve for evaporating black holes, consistently with the recently proposed "island formula". We then separate the radiation system into pieces. Our extended RT rule shows that the entanglement wedge of the union of radiation subsystems covers the black hole interior at late times, but the union of entanglement wedges of the subsystems may not. This result points to a secret sharing scheme in Hawking radiation wherein reconstruction of certain regions in the interior is impossible with any subsystem of the radiation, but possible with all of it.arXiv:2003.05448CERN-TH-2020-039oai:cds.cern.ch:27131332020-03-11
spellingShingle hep-th
Particle Physics - Theory
Balasubramanian, Vijay
Kar, Arjun
Parrikar, Onkar
Sárosi, Gábor
Ugajin, Tomonori
Geometric secret sharing in a model of Hawking radiation
title Geometric secret sharing in a model of Hawking radiation
title_full Geometric secret sharing in a model of Hawking radiation
title_fullStr Geometric secret sharing in a model of Hawking radiation
title_full_unstemmed Geometric secret sharing in a model of Hawking radiation
title_short Geometric secret sharing in a model of Hawking radiation
title_sort geometric secret sharing in a model of hawking radiation
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP01(2021)177
http://cds.cern.ch/record/2713133
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AT kararjun geometricsecretsharinginamodelofhawkingradiation
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AT sarosigabor geometricsecretsharinginamodelofhawkingradiation
AT ugajintomonori geometricsecretsharinginamodelofhawkingradiation