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Solitons of axion-dilaton gravity

We use soliton techniques of the two-dimensional reduced beta-function equations to obtain non-trivial string backgrounds from flat space. These solutions are characterized by two integers (n, m) referring to the soliton numbers of the metric and axion-dilaton sectors respectively. We show that the...

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Detalles Bibliográficos
Autor principal: Bakas, Ioannis
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.54.6424
http://cds.cern.ch/record/302663
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author Bakas, Ioannis
author_facet Bakas, Ioannis
author_sort Bakas, Ioannis
collection CERN
description We use soliton techniques of the two-dimensional reduced beta-function equations to obtain non-trivial string backgrounds from flat space. These solutions are characterized by two integers (n, m) referring to the soliton numbers of the metric and axion-dilaton sectors respectively. We show that the Nappi-Witten universe associated with the SL(2) x SU(2) / SO(1, 1) x U(1) CFT coset arises as an (1, 1) soliton in this fashion for certain values of the moduli parameters, while for other values of the soliton moduli we arrive at the SL(2)/SO(1, 1) x SO(1, 1)^2 background. Ordinary 4-dim black-holes arise as 2-dim (2, 0) solitons, while the Euclidean worm-hole background is described as a (0, 2) soliton on flat space. The soliton transformations correspond to specific elements of the string Geroch group. These could be used as starting point for exploring the role of U-dualities in string compactifications to two dimensions.
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spelling cern-3026632019-09-30T06:29:59Zdoi:10.1103/PhysRevD.54.6424http://cds.cern.ch/record/302663engBakas, IoannisSolitons of axion-dilaton gravityParticle Physics - TheoryWe use soliton techniques of the two-dimensional reduced beta-function equations to obtain non-trivial string backgrounds from flat space. These solutions are characterized by two integers (n, m) referring to the soliton numbers of the metric and axion-dilaton sectors respectively. We show that the Nappi-Witten universe associated with the SL(2) x SU(2) / SO(1, 1) x U(1) CFT coset arises as an (1, 1) soliton in this fashion for certain values of the moduli parameters, while for other values of the soliton moduli we arrive at the SL(2)/SO(1, 1) x SO(1, 1)^2 background. Ordinary 4-dim black-holes arise as 2-dim (2, 0) solitons, while the Euclidean worm-hole background is described as a (0, 2) soliton on flat space. The soliton transformations correspond to specific elements of the string Geroch group. These could be used as starting point for exploring the role of U-dualities in string compactifications to two dimensions.hep-th/9605043CERN-TH-96-121oai:cds.cern.ch:3026631996-05-07
spellingShingle Particle Physics - Theory
Bakas, Ioannis
Solitons of axion-dilaton gravity
title Solitons of axion-dilaton gravity
title_full Solitons of axion-dilaton gravity
title_fullStr Solitons of axion-dilaton gravity
title_full_unstemmed Solitons of axion-dilaton gravity
title_short Solitons of axion-dilaton gravity
title_sort solitons of axion-dilaton gravity
topic Particle Physics - Theory
url https://dx.doi.org/10.1103/PhysRevD.54.6424
http://cds.cern.ch/record/302663
work_keys_str_mv AT bakasioannis solitonsofaxiondilatongravity