Modified Schwarzschild metric from a unitary accelerating mirror analog

We present a modified Schwarzschild solution for a model of evaporation of a black hole with information preservation. By drawing a direct analogy to the quantum pure accelerating mirror (dynamical Casimir effect of a 1D horizon), we derive a Schwarzschild metric with not only the usual Schwarzschil...

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Main Authors: Michael R R Good, Eric V Linder
Format: Article
Language:English
Published: IOP Publishing 2021-01-01
Series:New Journal of Physics
Subjects:
Online Access:https://doi.org/10.1088/1367-2630/abe506
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author Michael R R Good
Eric V Linder
author_facet Michael R R Good
Eric V Linder
author_sort Michael R R Good
collection DOAJ
description We present a modified Schwarzschild solution for a model of evaporation of a black hole with information preservation. By drawing a direct analogy to the quantum pure accelerating mirror (dynamical Casimir effect of a 1D horizon), we derive a Schwarzschild metric with not only the usual Schwarzschild radius but an additional length scale related to the Planck length. The black hole has thermal particle production that leads to complete evaporation of the black hole, resulting in non-divergent entanglement entropy, Page curve turn-over, and an asymptotic quantum pure state with no information loss.
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spelling doaj.art-4d141b3f53614eb0ac18a365f14a761b2023-08-08T15:32:49ZengIOP PublishingNew Journal of Physics1367-26302021-01-0123404300710.1088/1367-2630/abe506Modified Schwarzschild metric from a unitary accelerating mirror analogMichael R R Good0https://orcid.org/0000-0002-0460-1941Eric V Linder1https://orcid.org/0000-0001-5536-9241Physics Department, Nazarbayev University , Nur-Sultan, Kazakhstan; Energetic Cosmos Laboratory, Nazarbayev University , Nur-Sultan, KazakhstanEnergetic Cosmos Laboratory, Nazarbayev University , Nur-Sultan, Kazakhstan; Berkeley Center for Cosmological Physics & Berkeley Lab, University of California , Berkeley, CA, United States of AmericaWe present a modified Schwarzschild solution for a model of evaporation of a black hole with information preservation. By drawing a direct analogy to the quantum pure accelerating mirror (dynamical Casimir effect of a 1D horizon), we derive a Schwarzschild metric with not only the usual Schwarzschild radius but an additional length scale related to the Planck length. The black hole has thermal particle production that leads to complete evaporation of the black hole, resulting in non-divergent entanglement entropy, Page curve turn-over, and an asymptotic quantum pure state with no information loss.https://doi.org/10.1088/1367-2630/abe506black holesmoving mirrorsdynamical Casimir effectHawking radiation
spellingShingle Michael R R Good
Eric V Linder
Modified Schwarzschild metric from a unitary accelerating mirror analog
New Journal of Physics
black holes
moving mirrors
dynamical Casimir effect
Hawking radiation
title Modified Schwarzschild metric from a unitary accelerating mirror analog
title_full Modified Schwarzschild metric from a unitary accelerating mirror analog
title_fullStr Modified Schwarzschild metric from a unitary accelerating mirror analog
title_full_unstemmed Modified Schwarzschild metric from a unitary accelerating mirror analog
title_short Modified Schwarzschild metric from a unitary accelerating mirror analog
title_sort modified schwarzschild metric from a unitary accelerating mirror analog
topic black holes
moving mirrors
dynamical Casimir effect
Hawking radiation
url https://doi.org/10.1088/1367-2630/abe506
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AT ericvlinder modifiedschwarzschildmetricfromaunitaryacceleratingmirroranalog