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Holography beyond conformal invariance and AdS isometry?

We suggest that the principle of holographic duality can be extended beyond conformal invariance and AdS isometry. Such an extension is based on a special relation between functional determinants of the operators acting in the bulk and on its boundary, provided that the boundary operator represents...

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Autor principal: Barvinsky, A.O.
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1134/S1063776115030036
http://cds.cern.ch/record/1957270
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author Barvinsky, A.O.
author_facet Barvinsky, A.O.
author_sort Barvinsky, A.O.
collection CERN
description We suggest that the principle of holographic duality can be extended beyond conformal invariance and AdS isometry. Such an extension is based on a special relation between functional determinants of the operators acting in the bulk and on its boundary, provided that the boundary operator represents the inverse propagators of the theory induced on the boundary by the Dirichlet boundary value problem from the bulk spacetime. This relation holds for operators of general spin-tensor structure on generic manifolds with boundaries irrespective of their background geometry and conformal invariance, and it apparently underlies numerous $O(N^0)$ tests of AdS/CFT correspondence, based on direct calculation of the bulk and boundary partition functions, Casimir energies and conformal anomalies. The generalized holographic duality is discussed within the concept of the "double-trace" deformation of the boundary theory, which is responsible in the case of large $N$ CFT coupled to the tower of higher spin gauge fields for the renormalization group flow between infrared and ultraviolet fixed points. Potential extension of this method beyond one-loop order is also briefly discussed.
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spelling cern-19572702019-09-30T06:29:59Zdoi:10.1134/S1063776115030036http://cds.cern.ch/record/1957270engBarvinsky, A.O.Holography beyond conformal invariance and AdS isometry?Particle Physics - TheoryWe suggest that the principle of holographic duality can be extended beyond conformal invariance and AdS isometry. Such an extension is based on a special relation between functional determinants of the operators acting in the bulk and on its boundary, provided that the boundary operator represents the inverse propagators of the theory induced on the boundary by the Dirichlet boundary value problem from the bulk spacetime. This relation holds for operators of general spin-tensor structure on generic manifolds with boundaries irrespective of their background geometry and conformal invariance, and it apparently underlies numerous $O(N^0)$ tests of AdS/CFT correspondence, based on direct calculation of the bulk and boundary partition functions, Casimir energies and conformal anomalies. The generalized holographic duality is discussed within the concept of the "double-trace" deformation of the boundary theory, which is responsible in the case of large $N$ CFT coupled to the tower of higher spin gauge fields for the renormalization group flow between infrared and ultraviolet fixed points. Potential extension of this method beyond one-loop order is also briefly discussed.arXiv:1410.6316CERN-PH-TH-2014-202oai:cds.cern.ch:19572702014-10-23
spellingShingle Particle Physics - Theory
Barvinsky, A.O.
Holography beyond conformal invariance and AdS isometry?
title Holography beyond conformal invariance and AdS isometry?
title_full Holography beyond conformal invariance and AdS isometry?
title_fullStr Holography beyond conformal invariance and AdS isometry?
title_full_unstemmed Holography beyond conformal invariance and AdS isometry?
title_short Holography beyond conformal invariance and AdS isometry?
title_sort holography beyond conformal invariance and ads isometry?
topic Particle Physics - Theory
url https://dx.doi.org/10.1134/S1063776115030036
http://cds.cern.ch/record/1957270
work_keys_str_mv AT barvinskyao holographybeyondconformalinvarianceandadsisometry