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Degenerate Stars and Gravitational Collapse in AdS/CFT

We construct composite CFT operators from a large number of fermionic primary fields corresponding to states that are holographically dual to a zero temperature Fermi gas in AdS space. We identify a large N regime in which the fermions behave as free particles. In the hydrodynamic limit the Fermi ga...

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Detalles Bibliográficos
Autores principales: Arsiwalla, Xerxes, de Boer, Jan, Papadodimas, Kyriakos, Verlinde, Erik
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP01(2011)144
http://cds.cern.ch/record/1303347
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author Arsiwalla, Xerxes
de Boer, Jan
Papadodimas, Kyriakos
Verlinde, Erik
author_facet Arsiwalla, Xerxes
de Boer, Jan
Papadodimas, Kyriakos
Verlinde, Erik
author_sort Arsiwalla, Xerxes
collection CERN
description We construct composite CFT operators from a large number of fermionic primary fields corresponding to states that are holographically dual to a zero temperature Fermi gas in AdS space. We identify a large N regime in which the fermions behave as free particles. In the hydrodynamic limit the Fermi gas forms a degenerate star with a radius determined by the Fermi level, and a mass and angular momentum that exactly matches the boundary calculations. Next we consider an interacting regime, and calculate the effect of the gravitational back-reaction on the radius and the mass of the star using the Tolman-Oppenheimer-Volkoff equations. Ignoring other interactions, we determine the 'Chandrasekhar limit' beyond which the degenerate star (presumably) undergoes gravitational collapse towards a black hole. This is interpreted on the boundary as a high density phase transition from a cold baryonic phase to a hot deconfined phase.
id cern-1303347
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-13033472019-09-30T06:29:59Zdoi:10.1007/JHEP01(2011)144http://cds.cern.ch/record/1303347engArsiwalla, Xerxesde Boer, JanPapadodimas, KyriakosVerlinde, ErikDegenerate Stars and Gravitational Collapse in AdS/CFTParticle Physics - TheoryWe construct composite CFT operators from a large number of fermionic primary fields corresponding to states that are holographically dual to a zero temperature Fermi gas in AdS space. We identify a large N regime in which the fermions behave as free particles. In the hydrodynamic limit the Fermi gas forms a degenerate star with a radius determined by the Fermi level, and a mass and angular momentum that exactly matches the boundary calculations. Next we consider an interacting regime, and calculate the effect of the gravitational back-reaction on the radius and the mass of the star using the Tolman-Oppenheimer-Volkoff equations. Ignoring other interactions, we determine the 'Chandrasekhar limit' beyond which the degenerate star (presumably) undergoes gravitational collapse towards a black hole. This is interpreted on the boundary as a high density phase transition from a cold baryonic phase to a hot deconfined phase.arXiv:1010.5784CERN-PH-TH-2010-252oai:cds.cern.ch:13033472010-10-29
spellingShingle Particle Physics - Theory
Arsiwalla, Xerxes
de Boer, Jan
Papadodimas, Kyriakos
Verlinde, Erik
Degenerate Stars and Gravitational Collapse in AdS/CFT
title Degenerate Stars and Gravitational Collapse in AdS/CFT
title_full Degenerate Stars and Gravitational Collapse in AdS/CFT
title_fullStr Degenerate Stars and Gravitational Collapse in AdS/CFT
title_full_unstemmed Degenerate Stars and Gravitational Collapse in AdS/CFT
title_short Degenerate Stars and Gravitational Collapse in AdS/CFT
title_sort degenerate stars and gravitational collapse in ads/cft
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP01(2011)144
http://cds.cern.ch/record/1303347
work_keys_str_mv AT arsiwallaxerxes degeneratestarsandgravitationalcollapseinadscft
AT deboerjan degeneratestarsandgravitationalcollapseinadscft
AT papadodimaskyriakos degeneratestarsandgravitationalcollapseinadscft
AT verlindeerik degeneratestarsandgravitationalcollapseinadscft