Consistent type IIB reductions to maximal 5D supergravity

We use exceptional field theory as a tool to work out the full nonlinear reduction ansatz for the AdS[subscript 5] × S[superscript 5] compactification of IIB supergravity and its noncompact counterparts in which the sphere S[superscript 5] is replaced by the inhomogeneous hyperboloidal space H[super...

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Main Authors: Baguet, Arnaud, Hohm, Olaf, Samtleben, Henning
Other Authors: Massachusetts Institute of Technology. Center for Theoretical Physics
Format: Article
Language:English
Published: American Physical Society 2015
Online Access:http://hdl.handle.net/1721.1/98416
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author Baguet, Arnaud
Hohm, Olaf
Samtleben, Henning
author2 Massachusetts Institute of Technology. Center for Theoretical Physics
author_facet Massachusetts Institute of Technology. Center for Theoretical Physics
Baguet, Arnaud
Hohm, Olaf
Samtleben, Henning
author_sort Baguet, Arnaud
collection MIT
description We use exceptional field theory as a tool to work out the full nonlinear reduction ansatz for the AdS[subscript 5] × S[superscript 5] compactification of IIB supergravity and its noncompact counterparts in which the sphere S[superscript 5] is replaced by the inhomogeneous hyperboloidal space H[superscript p,q]. The resulting theories are the maximal 5D supergravities with gauge groups SO(p,q). They are consistent truncations in the sense that every solution of 5D supergravity lifts to a solution of IIB supergravity. In particular, every stationary point and every holographic renormalization group flow of the scalar potentials for the compact and noncompact 5D gaugings directly lift to solutions of IIB supergravity.
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spelling mit-1721.1/984162022-09-28T14:15:48Z Consistent type IIB reductions to maximal 5D supergravity Baguet, Arnaud Hohm, Olaf Samtleben, Henning Massachusetts Institute of Technology. Center for Theoretical Physics Massachusetts Institute of Technology. Laboratory for Nuclear Science Hohm, Olaf We use exceptional field theory as a tool to work out the full nonlinear reduction ansatz for the AdS[subscript 5] × S[superscript 5] compactification of IIB supergravity and its noncompact counterparts in which the sphere S[superscript 5] is replaced by the inhomogeneous hyperboloidal space H[superscript p,q]. The resulting theories are the maximal 5D supergravities with gauge groups SO(p,q). They are consistent truncations in the sense that every solution of 5D supergravity lifts to a solution of IIB supergravity. In particular, every stationary point and every holographic renormalization group flow of the scalar potentials for the compact and noncompact 5D gaugings directly lift to solutions of IIB supergravity. United States. Dept. of Energy (Cooperative Research Agreement DE-FG02-05ER41360) Deutsche Forschungsgemeinschaft (Heisenberg Fellowship) 2015-09-09T12:03:36Z 2015-09-09T12:03:36Z 2015-09 2015-06 2015-09-08T22:00:23Z Article http://purl.org/eprint/type/JournalArticle 1550-7998 1550-2368 http://hdl.handle.net/1721.1/98416 Baguet, Arnaud, Olaf Hohm, and Henning Samtleben. "Consistent type IIB reductions to maximal 5D supergravity." Phys. Rev. D 92, 065004 (September 2015). © 2015 American Physical Society en http://dx.doi.org/10.1103/PhysRevD.92.065004 Physical Review D Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use. American Physical Society application/pdf American Physical Society American Physical Society
spellingShingle Baguet, Arnaud
Hohm, Olaf
Samtleben, Henning
Consistent type IIB reductions to maximal 5D supergravity
title Consistent type IIB reductions to maximal 5D supergravity
title_full Consistent type IIB reductions to maximal 5D supergravity
title_fullStr Consistent type IIB reductions to maximal 5D supergravity
title_full_unstemmed Consistent type IIB reductions to maximal 5D supergravity
title_short Consistent type IIB reductions to maximal 5D supergravity
title_sort consistent type iib reductions to maximal 5d supergravity
url http://hdl.handle.net/1721.1/98416
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