Information transfer with a gravitating bath

Late-time dominance of entanglement islands plays a critical role in addressing the information paradox for black holes in AdS coupled to an asymptotic non-gravitational bath. A natural question is how this observation can be extended to gravitational systems. To gain insight into this question, we...

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Published inSciPost physics Vol. 10; no. 5; p. 103
Main Authors Geng, Hao, Karch, Andreas, Perez-Pardavila, Carlos, Raju, Suvrat, Randall, Lisa, Riojas, Marcos, Shashi, Sanjit
Format Journal Article
LanguageEnglish
Published Netherlands Stichting SciPost 01.05.2021
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Abstract Late-time dominance of entanglement islands plays a critical role in addressing the information paradox for black holes in AdS coupled to an asymptotic non-gravitational bath. A natural question is how this observation can be extended to gravitational systems. To gain insight into this question, we explore how this story is modified within the context of Karch-Randall braneworlds when we allow the asymptotic bath to couple to dynamical gravity. We find that because of the inability to separate degrees of freedom by spatial location when defining the radiation region, the entanglement entropy of radiation emitted into the bath is a time-independent constant, consistent with recent work on black hole information in asymptotically flat space. If we instead consider an entanglement entropy between two sectors of a specific division of the Hilbert space, we then find non-trivial time-dependence, with the Page time a monotonically decreasing function of the brane angle---provided both branes are below a particular angle. However, the properties of the entropy depend discontinuously on this angle, which is the first example of such discontinuous behavior for an AdS brane in AdS space.
AbstractList Late-time dominance of entanglement islands plays a critical role in addressing the information paradox for black holes in AdS coupled to an asymptotic non-gravitational bath. A natural question is how this observation can be extended to gravitational systems. To gain insight into this question, we explore how this story is modified within the context of Karch-Randall braneworlds when we allow the asymptotic bath to couple to dynamical gravity. We find that because of the inability to separate degrees of freedom by spatial location when defining the radiation region, the entanglement entropy of radiation emitted into the bath is a time-independent constant, consistent with recent work on black hole information in asymptotically flat space. If we instead consider an entanglement entropy between two sectors of a specific division of the Hilbert space, we then find non-trivial time-dependence, with the Page time a monotonically decreasing function of the brane angle---provided both branes are below a particular angle. However, the properties of the entropy depend discontinuously on this angle, which is the first example of such discontinuous behavior for an AdS brane in AdS space.
ArticleNumber 103
Author Perez-Pardavila, Carlos
Geng, Hao
Karch, Andreas
Raju, Suvrat
Randall, Lisa
Riojas, Marcos
Shashi, Sanjit
Author_xml – sequence: 1
  givenname: Hao
  surname: Geng
  fullname: Geng, Hao
  organization: University of Washington
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  givenname: Andreas
  surname: Karch
  fullname: Karch, Andreas
  organization: The University of Texas at Austin, University of Washington
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  givenname: Carlos
  surname: Perez-Pardavila
  fullname: Perez-Pardavila, Carlos
  organization: The University of Texas at Austin
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  givenname: Suvrat
  surname: Raju
  fullname: Raju, Suvrat
  organization: Tata Institute of Fundamental Research
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  givenname: Lisa
  surname: Randall
  fullname: Randall, Lisa
  organization: Harvard University
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  givenname: Marcos
  surname: Riojas
  fullname: Riojas, Marcos
  organization: The University of Texas at Austin
– sequence: 7
  givenname: Sanjit
  surname: Shashi
  fullname: Shashi, Sanjit
  organization: The University of Texas at Austin
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Snippet Late-time dominance of entanglement islands plays a critical role in addressing the information paradox for black holes in AdS coupled to an asymptotic...
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StartPage 103
SubjectTerms PHYSICS OF ELEMENTARY PARTICLES AND FIELDS
Title Information transfer with a gravitating bath
URI https://www.osti.gov/biblio/1782949
https://doaj.org/article/9408b3de924a474eb2eb133007b3e748
Volume 10
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