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Brane singularities and their avoidance in a fluid bulk

Using the method of asymptotic splittings, the possible singularity structures and the corresponding asymptotic behavior of a 3-brane in a five-dimensional bulk are classified, in the case where the bulk field content is parametrized by an analog of perfect fluid with an arbitrary equation of state...

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Autores principales: Antoniadis, Ignatios, Cotsakis, Spiros, Klaoudatou, Ifigeneia
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1266467
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author Antoniadis, Ignatios
Cotsakis, Spiros
Klaoudatou, Ifigeneia
author_facet Antoniadis, Ignatios
Cotsakis, Spiros
Klaoudatou, Ifigeneia
author_sort Antoniadis, Ignatios
collection CERN
description Using the method of asymptotic splittings, the possible singularity structures and the corresponding asymptotic behavior of a 3-brane in a five-dimensional bulk are classified, in the case where the bulk field content is parametrized by an analog of perfect fluid with an arbitrary equation of state $P=\gamma\rho$ between the `pressure' $P$ and the `density' $\rho$. In this analogy with homogeneous cosmologies, the time is replaced by the extra coordinate transverse to the 3-brane, whose world-volume can have an arbitrary constant curvature. The results depend crucially on the constant parameter $\gamma$: (i) For $\gamma>-1/2$, the flat brane solution suffers from a collapse singularity at finite distance, that disappears in the curved case. (ii) For $\gamma<-1$, the singularity cannot be avoided and it becomes of the type big rip for a flat brane. (iii) For $-1<\gamma\le -1/2$, the surprising result is found that while the curved brane solution is singular, the flat brane is not, opening the possibility for a revival of the self-tuning proposal.
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spelling cern-12664672023-03-15T19:11:56Z http://cds.cern.ch/record/1266467 eng Antoniadis, Ignatios Cotsakis, Spiros Klaoudatou, Ifigeneia Brane singularities and their avoidance in a fluid bulk Particle Physics - Theory Using the method of asymptotic splittings, the possible singularity structures and the corresponding asymptotic behavior of a 3-brane in a five-dimensional bulk are classified, in the case where the bulk field content is parametrized by an analog of perfect fluid with an arbitrary equation of state $P=\gamma\rho$ between the `pressure' $P$ and the `density' $\rho$. In this analogy with homogeneous cosmologies, the time is replaced by the extra coordinate transverse to the 3-brane, whose world-volume can have an arbitrary constant curvature. The results depend crucially on the constant parameter $\gamma$: (i) For $\gamma>-1/2$, the flat brane solution suffers from a collapse singularity at finite distance, that disappears in the curved case. (ii) For $\gamma<-1$, the singularity cannot be avoided and it becomes of the type big rip for a flat brane. (iii) For $-1<\gamma\le -1/2$, the surprising result is found that while the curved brane solution is singular, the flat brane is not, opening the possibility for a revival of the self-tuning proposal. info:eu-repo/grantAgreement/EC/FP7/226371 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article info:eu-repo/grantAgreement/EC/FP7/237920 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1266467 2010-05-19
spellingShingle Particle Physics - Theory
Antoniadis, Ignatios
Cotsakis, Spiros
Klaoudatou, Ifigeneia
Brane singularities and their avoidance in a fluid bulk
title Brane singularities and their avoidance in a fluid bulk
title_full Brane singularities and their avoidance in a fluid bulk
title_fullStr Brane singularities and their avoidance in a fluid bulk
title_full_unstemmed Brane singularities and their avoidance in a fluid bulk
title_short Brane singularities and their avoidance in a fluid bulk
title_sort brane singularities and their avoidance in a fluid bulk
topic Particle Physics - Theory
url http://cds.cern.ch/record/1266467
http://cds.cern.ch/record/1266467
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