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 in | SciPost physics Vol. 10; no. 5; p. 103 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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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. |
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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 – sequence: 2 givenname: Andreas surname: Karch fullname: Karch, Andreas organization: The University of Texas at Austin, University of Washington – sequence: 3 givenname: Carlos surname: Perez-Pardavila fullname: Perez-Pardavila, Carlos organization: The University of Texas at Austin – sequence: 4 givenname: Suvrat surname: Raju fullname: Raju, Suvrat organization: Tata Institute of Fundamental Research – sequence: 5 givenname: Lisa surname: Randall fullname: Randall, Lisa organization: Harvard University – sequence: 6 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 |
BackLink | https://www.osti.gov/biblio/1782949$$D View this record in Osti.gov |
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Title | Information transfer with a gravitating bath |
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