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Correlation Functions in Holographic Minimal Models

We compute exact three and four point functions in the W_N minimal models that were recently conjectured to be dual to a higher spin theory in AdS_3. The boundary theory has a large number of light operators that are not only invisible in the bulk but grow exponentially with N even at small conforma...

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Detalles Bibliográficos
Autores principales: Papadodimas, Kyriakos, Raju, Suvrat
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nuclphysb.2011.11.006
http://cds.cern.ch/record/1375572
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author Papadodimas, Kyriakos
Raju, Suvrat
author_facet Papadodimas, Kyriakos
Raju, Suvrat
author_sort Papadodimas, Kyriakos
collection CERN
description We compute exact three and four point functions in the W_N minimal models that were recently conjectured to be dual to a higher spin theory in AdS_3. The boundary theory has a large number of light operators that are not only invisible in the bulk but grow exponentially with N even at small conformal dimensions. Nevertheless, we provide evidence that this theory can be understood in a 1/N expansion since our correlators look like free-field correlators corrected by a power series in 1/N . However, on examining these corrections we find that the four point function of the two bulk scalar fields is corrected at leading order in 1/N through the contribution of one of the additional light operators in an OPE channel. This suggests that, to correctly reproduce even tree-level correlators on the boundary, the bulk theory needs to be modified by the inclusion of additional fields. As a technical by-product of our analysis, we describe two separate methods -- including a Coulomb gas type free-field formalism -- that may be used to compute correlation functions in this theory.
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spelling cern-13755722023-02-08T21:52:48Zdoi:10.1016/j.nuclphysb.2011.11.006http://cds.cern.ch/record/1375572engPapadodimas, KyriakosRaju, SuvratCorrelation Functions in Holographic Minimal ModelsParticle Physics - TheoryWe compute exact three and four point functions in the W_N minimal models that were recently conjectured to be dual to a higher spin theory in AdS_3. The boundary theory has a large number of light operators that are not only invisible in the bulk but grow exponentially with N even at small conformal dimensions. Nevertheless, we provide evidence that this theory can be understood in a 1/N expansion since our correlators look like free-field correlators corrected by a power series in 1/N . However, on examining these corrections we find that the four point function of the two bulk scalar fields is corrected at leading order in 1/N through the contribution of one of the additional light operators in an OPE channel. This suggests that, to correctly reproduce even tree-level correlators on the boundary, the bulk theory needs to be modified by the inclusion of additional fields. As a technical by-product of our analysis, we describe two separate methods -- including a Coulomb gas type free-field formalism -- that may be used to compute correlation functions in this theory.We compute exact three- and four-point functions in the W N minimal models that were recently conjectured to be dual to a higher spin theory in AdS 3 . The boundary theory has a large number of light operators that are not only invisible in the bulk but grow exponentially with N even at small conformal dimensions. Nevertheless, we provide evidence that this theory can be understood in a 1 N expansion since our correlators look like free-field correlators corrected by a power series in 1 N . However, on examining these corrections we find that the four-point function of the two bulk scalar fields is corrected at leading order in 1 N through the contribution of one of the additional light operators in an OPE channel. This suggests that, to correctly reproduce even tree-level correlators on the boundary, the bulk theory needs to be modified by the inclusion of additional fields. As a technical by-product of our analysis, we describe two separate methods—including a Coulomb gas type free-field formalism—that may be used to compute correlation functions in this theory.We compute exact three and four point functions in the W_N minimal models that were recently conjectured to be dual to a higher spin theory in AdS_3. The boundary theory has a large number of light operators that are not only invisible in the bulk but grow exponentially with N even at small conformal dimensions. Nevertheless, we provide evidence that this theory can be understood in a 1/N expansion since our correlators look like free-field correlators corrected by a power series in 1/N . However, on examining these corrections we find that the four point function of the two bulk scalar fields is corrected at leading order in 1/N through the contribution of one of the additional light operators in an OPE channel. This suggests that, to correctly reproduce even tree-level correlators on the boundary, the bulk theory needs to be modified by the inclusion of additional fields. As a technical by-product of our analysis, we describe two separate methods -- including a Coulomb gas type free-field formalism -- that may be used to compute correlation functions in this theory.arXiv:1108.3077HRI-ST-1108HRI-ST-1108oai:cds.cern.ch:13755722011-08-17
spellingShingle Particle Physics - Theory
Papadodimas, Kyriakos
Raju, Suvrat
Correlation Functions in Holographic Minimal Models
title Correlation Functions in Holographic Minimal Models
title_full Correlation Functions in Holographic Minimal Models
title_fullStr Correlation Functions in Holographic Minimal Models
title_full_unstemmed Correlation Functions in Holographic Minimal Models
title_short Correlation Functions in Holographic Minimal Models
title_sort correlation functions in holographic minimal models
topic Particle Physics - Theory
url https://dx.doi.org/10.1016/j.nuclphysb.2011.11.006
http://cds.cern.ch/record/1375572
work_keys_str_mv AT papadodimaskyriakos correlationfunctionsinholographicminimalmodels
AT rajusuvrat correlationfunctionsinholographicminimalmodels