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A class of non-singular gravi-dilaton backgrounds

We present a class of static, spherically symmetric, non-singular solutions of the tree-level string effective action, truncated to first order in 0$ and $r\to \infty$) two different anti-de Sitter configurations, thus interpolating between two maximally symmetric states of different constant curvat...

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Detalles Bibliográficos
Autores principales: Buonanno, A., Gasperini, M., Ungarelli, C.
Lenguaje:eng
Publicado: 1997
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S021773239700193X
http://cds.cern.ch/record/329528
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author Buonanno, A.
Gasperini, M.
Ungarelli, C.
author_facet Buonanno, A.
Gasperini, M.
Ungarelli, C.
author_sort Buonanno, A.
collection CERN
description We present a class of static, spherically symmetric, non-singular solutions of the tree-level string effective action, truncated to first order in 0$ and $r\to \infty$) two different anti-de Sitter configurations, thus interpolating between two maximally symmetric states of different constant curvature. The radial-dependent dilaton defines a string coupling which is everywhere finite, with a peak value that can be chosen arbitrarily small so as to neglect quantum-loop corrections. This example stresses the possible importance of finite-size $\alpha'$ corrections, typical of string theory, in avoiding space-time singularities.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1997
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spelling cern-3295282023-03-12T05:50:42Zdoi:10.1142/S021773239700193Xhttp://cds.cern.ch/record/329528engBuonanno, A.Gasperini, M.Ungarelli, C.A class of non-singular gravi-dilaton backgroundsParticle Physics - TheoryWe present a class of static, spherically symmetric, non-singular solutions of the tree-level string effective action, truncated to first order in 0$ and $r\to \infty$) two different anti-de Sitter configurations, thus interpolating between two maximally symmetric states of different constant curvature. The radial-dependent dilaton defines a string coupling which is everywhere finite, with a peak value that can be chosen arbitrarily small so as to neglect quantum-loop corrections. This example stresses the possible importance of finite-size $\alpha'$ corrections, typical of string theory, in avoiding space-time singularities.We present a class of static, spherically symmetric, non-singular solutions of the tree-level string effective action, truncated to first order in $\alpha'$. In the string frame the solutions approach asymptotically (at $r\to 0$ and $r\to \infty$) two different anti-de Sitter configurations, thus interpolating between two maximally symmetric states of different constant curvature. The radial-dependent dilaton defines a string coupling which is everywhere finite, with a peak value that can be chosen arbitrarily small so as to neglect quantum-loop corrections. This example stresses the possible importance of finite-size $\alpha'$ corrections, typical of string theory, in avoiding space-time singularities.hep-th/9707053CERN-TH-97-041CERN-TH-97-41CERN-TH-97-041oai:cds.cern.ch:3295281997
spellingShingle Particle Physics - Theory
Buonanno, A.
Gasperini, M.
Ungarelli, C.
A class of non-singular gravi-dilaton backgrounds
title A class of non-singular gravi-dilaton backgrounds
title_full A class of non-singular gravi-dilaton backgrounds
title_fullStr A class of non-singular gravi-dilaton backgrounds
title_full_unstemmed A class of non-singular gravi-dilaton backgrounds
title_short A class of non-singular gravi-dilaton backgrounds
title_sort class of non-singular gravi-dilaton backgrounds
topic Particle Physics - Theory
url https://dx.doi.org/10.1142/S021773239700193X
http://cds.cern.ch/record/329528
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