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Finite temperature effective action, AdS_5 black holes, and 1/N expansion

We propose a phenomenological matrix model to study string theory in AdS_5 \times S_5 in the canonical ensemble. The model reproduces all the known qualitative features of the theory. In particular, it gives a simple effective potential description of Euclidean black hole nucleation and the tunnelli...

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Detalles Bibliográficos
Autores principales: Alvarez-Gaumé, Luís, Gómez, C, Liu, H, Wadia, S
Lenguaje:eng
Publicado: 2005
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.71.124023
http://cds.cern.ch/record/824923
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author Alvarez-Gaumé, Luís
Gómez, C
Liu, H
Wadia, S
author_facet Alvarez-Gaumé, Luís
Gómez, C
Liu, H
Wadia, S
author_sort Alvarez-Gaumé, Luís
collection CERN
description We propose a phenomenological matrix model to study string theory in AdS_5 \times S_5 in the canonical ensemble. The model reproduces all the known qualitative features of the theory. In particular, it gives a simple effective potential description of Euclidean black hole nucleation and the tunnelling between thermal AdS and the big black hole. It also has some interesting predictions. We find that there exists a critical temperature at which the Euclidean small black hole undergoes a Gross-Witten phase transition. We identify the phase transition with the Horowitz-Polchinski point where the black hole horizon size becomes comparable to the string scale. The appearance of the Hagedorn divergence of thermal AdS is due to the merger of saddle points corresponding to the Euclidean small black hole and thermal AdS. The merger can be described in terms of a cusp (A_3) catastrophe and divergences at the perturbative string level are smoothed out at finite string coupling using standard techniques of catastrophe theory.
id cern-824923
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2005
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spelling cern-8249232019-09-30T06:29:59Zdoi:10.1103/PhysRevD.71.124023http://cds.cern.ch/record/824923engAlvarez-Gaumé, LuísGómez, CLiu, HWadia, SFinite temperature effective action, AdS_5 black holes, and 1/N expansionParticle Physics - TheoryWe propose a phenomenological matrix model to study string theory in AdS_5 \times S_5 in the canonical ensemble. The model reproduces all the known qualitative features of the theory. In particular, it gives a simple effective potential description of Euclidean black hole nucleation and the tunnelling between thermal AdS and the big black hole. It also has some interesting predictions. We find that there exists a critical temperature at which the Euclidean small black hole undergoes a Gross-Witten phase transition. We identify the phase transition with the Horowitz-Polchinski point where the black hole horizon size becomes comparable to the string scale. The appearance of the Hagedorn divergence of thermal AdS is due to the merger of saddle points corresponding to the Euclidean small black hole and thermal AdS. The merger can be described in terms of a cusp (A_3) catastrophe and divergences at the perturbative string level are smoothed out at finite string coupling using standard techniques of catastrophe theory.hep-th/0502227CERN-PH-TH-2004-251IFT-2005-11MIT-CTP-3591TIFR-TH-2005-03oai:cds.cern.ch:8249232005-02-28
spellingShingle Particle Physics - Theory
Alvarez-Gaumé, Luís
Gómez, C
Liu, H
Wadia, S
Finite temperature effective action, AdS_5 black holes, and 1/N expansion
title Finite temperature effective action, AdS_5 black holes, and 1/N expansion
title_full Finite temperature effective action, AdS_5 black holes, and 1/N expansion
title_fullStr Finite temperature effective action, AdS_5 black holes, and 1/N expansion
title_full_unstemmed Finite temperature effective action, AdS_5 black holes, and 1/N expansion
title_short Finite temperature effective action, AdS_5 black holes, and 1/N expansion
title_sort finite temperature effective action, ads_5 black holes, and 1/n expansion
topic Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.71.124023
http://cds.cern.ch/record/824923
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AT gomezc finitetemperatureeffectiveactionads5blackholesand1nexpansion
AT liuh finitetemperatureeffectiveactionads5blackholesand1nexpansion
AT wadias finitetemperatureeffectiveactionads5blackholesand1nexpansion