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Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem

We obtain first order equations that determine a supersymmetric kink solution in five-dimensional N=8 gauged supergravity. The kink interpolates between an exterior anti-de Sitter region with maximal supersymmetry and an interior anti-de Sitter region with one quarter of the maximal supersymmetry. O...

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Autores principales: Freedman, D.Z., Gubser, S.S., Pilch, K., Warner, N.P.
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.4310/ATMP.1999.v3.n2.a7
http://cds.cern.ch/record/383912
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author Freedman, D.Z.
Gubser, S.S.
Pilch, K.
Warner, N.P.
author_facet Freedman, D.Z.
Gubser, S.S.
Pilch, K.
Warner, N.P.
author_sort Freedman, D.Z.
collection CERN
description We obtain first order equations that determine a supersymmetric kink solution in five-dimensional N=8 gauged supergravity. The kink interpolates between an exterior anti-de Sitter region with maximal supersymmetry and an interior anti-de Sitter region with one quarter of the maximal supersymmetry. One eighth of supersymmetry is preserved by the kink as a whole. We interpret it as describing the renormalization group flow in N=4 super-Yang-Mills theory broken to an N=1 theory by the addition of a mass term for one of the three adjoint chiral superfields. A detailed correspondence is obtained between fields of bulk supergravity in the interior anti-de Sitter region and composite operators of the infrared field theory. We also point out that the truncation used to find the reduced symmetry critical point can be extended to obtain a new N=4 gauged supergravity theory holographically dual to a sector of N=2 gauge theories based on quiver diagrams. We consider more general kink geometries and construct a c-function that is positive and monotonic if the dominant energy condition holds in the bulk gravity theory. For even-dimensional boundaries, the c-function coincides with the trace anomaly coefficients of the holographically related field theory in limits where conformal invariance is recovered.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
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spelling cern-3839122021-10-08T02:34:30Zdoi:10.4310/ATMP.1999.v3.n2.a7http://cds.cern.ch/record/383912engFreedman, D.Z.Gubser, S.S.Pilch, K.Warner, N.P.Renormalization Group Flows from Holography-Supersymmetry and a c-TheoremParticle Physics - TheoryWe obtain first order equations that determine a supersymmetric kink solution in five-dimensional N=8 gauged supergravity. The kink interpolates between an exterior anti-de Sitter region with maximal supersymmetry and an interior anti-de Sitter region with one quarter of the maximal supersymmetry. One eighth of supersymmetry is preserved by the kink as a whole. We interpret it as describing the renormalization group flow in N=4 super-Yang-Mills theory broken to an N=1 theory by the addition of a mass term for one of the three adjoint chiral superfields. A detailed correspondence is obtained between fields of bulk supergravity in the interior anti-de Sitter region and composite operators of the infrared field theory. We also point out that the truncation used to find the reduced symmetry critical point can be extended to obtain a new N=4 gauged supergravity theory holographically dual to a sector of N=2 gauge theories based on quiver diagrams. We consider more general kink geometries and construct a c-function that is positive and monotonic if the dominant energy condition holds in the bulk gravity theory. For even-dimensional boundaries, the c-function coincides with the trace anomaly coefficients of the holographically related field theory in limits where conformal invariance is recovered.We obtain first order equations that determine a supersymmetric kink solution in five-dimensional N=8 gauged supergravity. The kink interpolates between an exterior anti-de Sitter region with maximal supersymmetry and an interior anti-de Sitter region with one quarter of the maximal supersymmetry. One eighth of supersymmetry is preserved by the kink as a whole. We interpret it as describing the renormalization group flow in N=4 super-Yang-Mills theory broken to an N=1 theory by the addition of a mass term for one of the three adjoint chiral superfields. A detailed correspondence is obtained between fields of bulk supergravity in the interior anti-de Sitter region and composite operators of the infrared field theory. We also point out that the truncation used to find the reduced symmetry critical point can be extended to obtain a new N=4 gauged supergravity theory holographically dual to a sector of N=2 gauge theories based on quiver diagrams. We consider more general kink geometries and construct a c-function that is positive and monotonic if a weak energy condition holds in the bulk gravity theory. For even-dimensional boundaries, the c-function coincides with the trace anomaly coefficients of the holographically related field theory in limits where conformal invariance is recovered.hep-th/9904017CERN-TH-99-86HUTP-99-A015USC-99-1MIT-CTP-2846CERN-TH-99-086HUTP-99-A-015MIT-CTP-2846USC-99-1oai:cds.cern.ch:3839121999-04-05
spellingShingle Particle Physics - Theory
Freedman, D.Z.
Gubser, S.S.
Pilch, K.
Warner, N.P.
Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem
title Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem
title_full Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem
title_fullStr Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem
title_full_unstemmed Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem
title_short Renormalization Group Flows from Holography-Supersymmetry and a c-Theorem
title_sort renormalization group flows from holography-supersymmetry and a c-theorem
topic Particle Physics - Theory
url https://dx.doi.org/10.4310/ATMP.1999.v3.n2.a7
http://cds.cern.ch/record/383912
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AT gubserss renormalizationgroupflowsfromholographysupersymmetryandactheorem
AT pilchk renormalizationgroupflowsfromholographysupersymmetryandactheorem
AT warnernp renormalizationgroupflowsfromholographysupersymmetryandactheorem