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Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua

An $O(d,d)$ symmetry of the manifold of string vacua that do not depend on $d$ (out of $D$) space-time coordinates has been recently identified. Here we write down, for $d=D-1$, the low energy equations of motion and their general solution in a manifestly $O(d,d)$-invariant form, pointing out an amu...

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Detalles Bibliográficos
Autores principales: Meissner, K.A., Veneziano, G.
Lenguaje:eng
Publicado: 1991
Materias:
Acceso en línea:https://dx.doi.org/10.1142/S0217732391003924
http://cds.cern.ch/record/226016
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author Meissner, K.A.
Veneziano, G.
author_facet Meissner, K.A.
Veneziano, G.
author_sort Meissner, K.A.
collection CERN
description An $O(d,d)$ symmetry of the manifold of string vacua that do not depend on $d$ (out of $D$) space-time coordinates has been recently identified. Here we write down, for $d=D-1$, the low energy equations of motion and their general solution in a manifestly $O(d,d)$-invariant form, pointing out an amusing similarity with the renormalization group framework. Previously considered cosmological and black hole solutions are recovered as particular examples.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1991
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spelling cern-2260162020-07-23T02:44:42Zdoi:10.1142/S0217732391003924http://cds.cern.ch/record/226016engMeissner, K.A.Veneziano, G.Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String VacuaGeneral Theoretical PhysicsParticle Physics - TheoryAn $O(d,d)$ symmetry of the manifold of string vacua that do not depend on $d$ (out of $D$) space-time coordinates has been recently identified. Here we write down, for $d=D-1$, the low energy equations of motion and their general solution in a manifestly $O(d,d)$-invariant form, pointing out an amusing similarity with the renormalization group framework. Previously considered cosmological and black hole solutions are recovered as particular examples.An $O(d,d)$ symmetry of the manifold of string vacua that do not depend on $d$ (out of $D$) space-time coordinates has been recently identified. Here we write down, for $d=D-1$, the low energy equations of motion and their general solution in a manifestly $O(d,d)$-invariant form, pointing out an amusing similarity with the renormalization group framework. Previously considered cosmological and black hole solutions are recovered as particular examples.CERN-TH-6235-91hep-th/9110004CERN-TH-6235-91oai:cds.cern.ch:2260161991
spellingShingle General Theoretical Physics
Particle Physics - Theory
Meissner, K.A.
Veneziano, G.
Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua
title Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua
title_full Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua
title_fullStr Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua
title_full_unstemmed Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua
title_short Manifestly $O(d,d)$ Invariant Approach to Space-Time Dependent String Vacua
title_sort manifestly $o(d,d)$ invariant approach to space-time dependent string vacua
topic General Theoretical Physics
Particle Physics - Theory
url https://dx.doi.org/10.1142/S0217732391003924
http://cds.cern.ch/record/226016
work_keys_str_mv AT meissnerka manifestlyoddinvariantapproachtospacetimedependentstringvacua
AT venezianog manifestlyoddinvariantapproachtospacetimedependentstringvacua