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Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent

Recently we have suggested that the microscopic quantum description of a black hole is an overpacked self-sustained Bose-condensate of N weakly-interacting soft gravitons, which obeys the rules of 't Hooft's large-N physics. In this note we derive an effective Landau-Ginzburg Lagrangian fo...

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Autores principales: Dvali, Gia, Gomez, Cesar
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2012.08.019
http://cds.cern.ch/record/1432394
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author Dvali, Gia
Gomez, Cesar
author_facet Dvali, Gia
Gomez, Cesar
author_sort Dvali, Gia
collection CERN
description Recently we have suggested that the microscopic quantum description of a black hole is an overpacked self-sustained Bose-condensate of N weakly-interacting soft gravitons, which obeys the rules of 't Hooft's large-N physics. In this note we derive an effective Landau-Ginzburg Lagrangian for the condensate and show that it becomes an exact description in a semi-classical limit that serves as the black hole analog of 't Hooft's planar limit. The role of a weakly-coupled Landau-Ginzburg order parameter is played by N. This description consistently reproduces the known properties of black holes in semi-classical limit. Hawking radiation, as the quantum depletion of the condensate, is described by the slow-roll of the field N. In the semiclassical limit, where black holes of arbitrarily small size are allowed, the equation of depletion is self similar leading to a scaling law for the black hole size with critical exponent 1/3.
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spelling cern-14323942021-10-06T14:00:07Zdoi:10.1016/j.physletb.2012.08.019http://cds.cern.ch/record/1432394engDvali, GiaGomez, CesarLandau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical ExponentParticle Physics - TheoryRecently we have suggested that the microscopic quantum description of a black hole is an overpacked self-sustained Bose-condensate of N weakly-interacting soft gravitons, which obeys the rules of 't Hooft's large-N physics. In this note we derive an effective Landau-Ginzburg Lagrangian for the condensate and show that it becomes an exact description in a semi-classical limit that serves as the black hole analog of 't Hooft's planar limit. The role of a weakly-coupled Landau-Ginzburg order parameter is played by N. This description consistently reproduces the known properties of black holes in semi-classical limit. Hawking radiation, as the quantum depletion of the condensate, is described by the slow-roll of the field N. In the semiclassical limit, where black holes of arbitrarily small size are allowed, the equation of depletion is self similar leading to a scaling law for the black hole size with critical exponent 1/3.Recently we have suggested that the microscopic quantum description of a black hole is an overpacked self-sustained Bose-condensate of N weakly-interacting soft gravitons, which obeys the rules of 't Hooft's large-N physics. In this note we derive an effective Landau-Ginzburg Lagrangian for the condensate and show that it becomes an exact description in a semi-classical limit that serves as the black hole analog of 't Hooft's planar limit. The role of a weakly-coupled Landau-Ginzburg order parameter is played by N. This description consistently reproduces the known properties of black holes in semi-classical limit. Hawking radiation, as the quantum depletion of the condensate, is described by the slow-roll of the field N. In the semiclassical limit, where black holes of arbitrarily small size are allowed, the equation of depletion is self similar leading to a scaling law for the black hole size with critical exponent 1/3.Recently we have suggested that the microscopic quantum description of a black hole is an overpacked self-sustained Bose-condensate of N weakly-interacting soft gravitons, which obeys the rules of ʼt Hooftʼs large- N physics. In this Letter we derive an effective Landau–Ginzburg Lagrangian for the condensate and show that it becomes an exact description in a semi-classical limit that serves as the black hole analog of ʼt Hooftʼs planar limit. The role of a weakly-coupled Landau–Ginzburg order parameter is played by N . This description consistently reproduces the known properties of black holes in semi-classical limit. Hawking radiation, as the quantum depletion of the condensate, is described by the slow-roll of the field N . In the semi-classical limit, where black holes of arbitrarily small size are allowed, the equation of depletion is self-similar leading to a scaling law for the black hole size with critical exponent 13 .arXiv:1203.3372oai:cds.cern.ch:14323942012-03-16
spellingShingle Particle Physics - Theory
Dvali, Gia
Gomez, Cesar
Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent
title Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent
title_full Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent
title_fullStr Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent
title_full_unstemmed Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent
title_short Landau-Ginzburg Limit of Black Hole's Quantum Portrait: Self Similarity and Critical Exponent
title_sort landau-ginzburg limit of black hole's quantum portrait: self similarity and critical exponent
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/j.physletb.2012.08.019
http://cds.cern.ch/record/1432394
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