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Magnetic flux tube models in superstring theory

Superstring models describing curved 4-dimensional magnetic flux tube backgrounds are exactly solvable in terms of free fields. We consider the simplest model of this type (corresponding to `Kaluza-Klein' Melvin background). Its 2d action has a flat but topologically non-trivial 10-dimensional...

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Autores principales: Russo, Jorge G, Tseytlin, Arkady A
Lenguaje:eng
Publicado: 1995
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(95)00629-X
http://cds.cern.ch/record/286299
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author Russo, Jorge G
Tseytlin, Arkady A
author_facet Russo, Jorge G
Tseytlin, Arkady A
author_sort Russo, Jorge G
collection CERN
description Superstring models describing curved 4-dimensional magnetic flux tube backgrounds are exactly solvable in terms of free fields. We consider the simplest model of this type (corresponding to `Kaluza-Klein' Melvin background). Its 2d action has a flat but topologically non-trivial 10-dimensional target space (there is a mixing of angular coordinate of the 2-plane with an internal compact coordinate). We demonstrate that this theory has broken supersymmetry but is perturbatively stable if the radius R of the internal coordinate is larger than R_0=\sqrt{2\a'}. In the Green-Schwarz formulation the supersymmetry breaking is a consequence of the presence of a flat but non-trivial connection in the fermionic terms in the action. For R < R_0 and the magnetic field strength parameter q > R/2\a' there appear instabilities corresponding to tachyonic winding states. The torus partition function Z(q,R) is finite for R > R_0 (and vanishes for qR=2n, n=integer). At the special points qR=2n (2n+1) the model is equivalent to the free superstring theory compactified on a circle with periodic (antiperiodic) boundary condition for space-time fermions.
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spelling cern-2862992019-09-30T06:29:59Zdoi:10.1016/0550-3213(95)00629-Xhttp://cds.cern.ch/record/286299engRusso, Jorge GTseytlin, Arkady AMagnetic flux tube models in superstring theoryParticle Physics - TheorySuperstring models describing curved 4-dimensional magnetic flux tube backgrounds are exactly solvable in terms of free fields. We consider the simplest model of this type (corresponding to `Kaluza-Klein' Melvin background). Its 2d action has a flat but topologically non-trivial 10-dimensional target space (there is a mixing of angular coordinate of the 2-plane with an internal compact coordinate). We demonstrate that this theory has broken supersymmetry but is perturbatively stable if the radius R of the internal coordinate is larger than R_0=\sqrt{2\a'}. In the Green-Schwarz formulation the supersymmetry breaking is a consequence of the presence of a flat but non-trivial connection in the fermionic terms in the action. For R < R_0 and the magnetic field strength parameter q > R/2\a' there appear instabilities corresponding to tachyonic winding states. The torus partition function Z(q,R) is finite for R > R_0 (and vanishes for qR=2n, n=integer). At the special points qR=2n (2n+1) the model is equivalent to the free superstring theory compactified on a circle with periodic (antiperiodic) boundary condition for space-time fermions.hep-th/9508068CERN-TH-95-215IMPERIAL-TP-94-95-57oai:cds.cern.ch:2862991995-08-15
spellingShingle Particle Physics - Theory
Russo, Jorge G
Tseytlin, Arkady A
Magnetic flux tube models in superstring theory
title Magnetic flux tube models in superstring theory
title_full Magnetic flux tube models in superstring theory
title_fullStr Magnetic flux tube models in superstring theory
title_full_unstemmed Magnetic flux tube models in superstring theory
title_short Magnetic flux tube models in superstring theory
title_sort magnetic flux tube models in superstring theory
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/0550-3213(95)00629-X
http://cds.cern.ch/record/286299
work_keys_str_mv AT russojorgeg magneticfluxtubemodelsinsuperstringtheory
AT tseytlinarkadya magneticfluxtubemodelsinsuperstringtheory