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Gravitational Backreaction Effects on the Holographic Phase Transition

We study radion stabilization in the compact Randall-Sundrum model by introducing a bulk scalar field, as in the Goldberger and Wise mechanism, but (partially) taking into account the backreactions from the scalar field on the metric. Our generalization reconciles the radion potential found by Goldb...

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Detalles Bibliográficos
Autores principales: Konstandin, Thomas, Nardini, Germano, Quiros, Mariano
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.82.083513
http://cds.cern.ch/record/1277033
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author Konstandin, Thomas
Nardini, Germano
Quiros, Mariano
author_facet Konstandin, Thomas
Nardini, Germano
Quiros, Mariano
author_sort Konstandin, Thomas
collection CERN
description We study radion stabilization in the compact Randall-Sundrum model by introducing a bulk scalar field, as in the Goldberger and Wise mechanism, but (partially) taking into account the backreactions from the scalar field on the metric. Our generalization reconciles the radion potential found by Goldberger and Wise with the radion mass obtained with the so-called superpotential method where backreaction is fully considered. Moreover we study the holographic phase transition and its gravitational wave signals in this model. The improved control over backreactions opens up a large region in parameter space and leads, compared to former analysis, to weaker constraints on the rank N of the dual gauge theory. We conclude that, in the regime where the 1/N expansion is justified, the gravitational wave signal is detectable by LISA.
id cern-1277033
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-12770332023-03-14T19:45:05Zdoi:10.1103/PhysRevD.82.083513http://cds.cern.ch/record/1277033engKonstandin, ThomasNardini, GermanoQuiros, MarianoGravitational Backreaction Effects on the Holographic Phase TransitionParticle Physics - PhenomenologyWe study radion stabilization in the compact Randall-Sundrum model by introducing a bulk scalar field, as in the Goldberger and Wise mechanism, but (partially) taking into account the backreactions from the scalar field on the metric. Our generalization reconciles the radion potential found by Goldberger and Wise with the radion mass obtained with the so-called superpotential method where backreaction is fully considered. Moreover we study the holographic phase transition and its gravitational wave signals in this model. The improved control over backreactions opens up a large region in parameter space and leads, compared to former analysis, to weaker constraints on the rank N of the dual gauge theory. We conclude that, in the regime where the 1/N expansion is justified, the gravitational wave signal is detectable by LISA.We study radion stabilization in the compact Randall-Sundrum model by introducing a bulk scalar field, as in the Goldberger and Wise mechanism, but (partially) taking into account the backreactions from the scalar field on the metric. Our generalization reconciles the radion potential found by Goldberger and Wise with the radion mass obtained with the so-called superpotential method where backreaction is fully considered. Moreover we study the holographic phase transition and its gravitational wave signals in this model. The improved control over backreactions opens up a large region in parameter space and leads, compared to former analysis, to weaker constraints on the rank N of the dual gauge theory. We conclude that, in the regime where the 1/N expansion is justified, the gravitational wave signal is detectable by LISA.arXiv:1007.1468CERN-PH-TH-2010-151UAB-FT-683ULB-TH-10-19CERN-PH-TH-2010-151UAB-FT-683ULB-TH-10-19oai:cds.cern.ch:12770332010-07-12
spellingShingle Particle Physics - Phenomenology
Konstandin, Thomas
Nardini, Germano
Quiros, Mariano
Gravitational Backreaction Effects on the Holographic Phase Transition
title Gravitational Backreaction Effects on the Holographic Phase Transition
title_full Gravitational Backreaction Effects on the Holographic Phase Transition
title_fullStr Gravitational Backreaction Effects on the Holographic Phase Transition
title_full_unstemmed Gravitational Backreaction Effects on the Holographic Phase Transition
title_short Gravitational Backreaction Effects on the Holographic Phase Transition
title_sort gravitational backreaction effects on the holographic phase transition
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.82.083513
http://cds.cern.ch/record/1277033
work_keys_str_mv AT konstandinthomas gravitationalbackreactioneffectsontheholographicphasetransition
AT nardinigermano gravitationalbackreactioneffectsontheholographicphasetransition
AT quirosmariano gravitationalbackreactioneffectsontheholographicphasetransition