An operator product expansion for the mutual information in AdS/CFT

We investigate the behavior of the mutual information IAB between two “small” and wide separated spherical regions A and B in the N=4 SYM gauge theory dual to Type IIB string theory in AdS5×S5. To this end, the mutual information is recasted in terms of correlators of surface operators W(Σ) defined...

Full description

Bibliographic Details
Main Author: Javier Molina-Vilaplana
Format: Article
Language:English
Published: Elsevier 2014-11-01
Series:Nuclear Physics B
Online Access:http://www.sciencedirect.com/science/article/pii/S0550321314002752
id doaj-671952662a824171a20ec06df7dfa421
record_format Article
spelling doaj-671952662a824171a20ec06df7dfa4212020-11-25T00:28:10ZengElsevierNuclear Physics B0550-32131873-15622014-11-01888C11610.1016/j.nuclphysb.2014.09.005An operator product expansion for the mutual information in AdS/CFTJavier Molina-VilaplanaWe investigate the behavior of the mutual information IAB between two “small” and wide separated spherical regions A and B in the N=4 SYM gauge theory dual to Type IIB string theory in AdS5×S5. To this end, the mutual information is recasted in terms of correlators of surface operators W(Σ) defined along a surface Σ within the boundary gauge theory. This construction relies on the strong analogies between the twist-field operators appearing in the replica trick method used for the computation of the entanglement entropy, and the disorder-like surface operators in gauge theories. In the AdS/CFT correspondence, a surface operator W(Σ) corresponds to having a D3-brane in AdS5×S5 ending on the boundary along the prescribed surface Σ. Then, a long distance expansion for IAB is provided. The coefficients of the expansion appear as a byproduct of the operator product expansion for the correlators of the operators W(Σ) with the chiral primaries of the theory. We find that, while undergoing a phase transition at a critical distance, the holographic mutual information, instead of strictly vanishing, decays with a power law whose leading contributions of order O(N0), originate from the exchange of pairs of the lightest bulk particles between A and B. These particles correspond to operators in the boundary field theory with the smallest scaling dimensions.http://www.sciencedirect.com/science/article/pii/S0550321314002752
collection DOAJ
language English
format Article
sources DOAJ
author Javier Molina-Vilaplana
spellingShingle Javier Molina-Vilaplana
An operator product expansion for the mutual information in AdS/CFT
Nuclear Physics B
author_facet Javier Molina-Vilaplana
author_sort Javier Molina-Vilaplana
title An operator product expansion for the mutual information in AdS/CFT
title_short An operator product expansion for the mutual information in AdS/CFT
title_full An operator product expansion for the mutual information in AdS/CFT
title_fullStr An operator product expansion for the mutual information in AdS/CFT
title_full_unstemmed An operator product expansion for the mutual information in AdS/CFT
title_sort operator product expansion for the mutual information in ads/cft
publisher Elsevier
series Nuclear Physics B
issn 0550-3213
1873-1562
publishDate 2014-11-01
description We investigate the behavior of the mutual information IAB between two “small” and wide separated spherical regions A and B in the N=4 SYM gauge theory dual to Type IIB string theory in AdS5×S5. To this end, the mutual information is recasted in terms of correlators of surface operators W(Σ) defined along a surface Σ within the boundary gauge theory. This construction relies on the strong analogies between the twist-field operators appearing in the replica trick method used for the computation of the entanglement entropy, and the disorder-like surface operators in gauge theories. In the AdS/CFT correspondence, a surface operator W(Σ) corresponds to having a D3-brane in AdS5×S5 ending on the boundary along the prescribed surface Σ. Then, a long distance expansion for IAB is provided. The coefficients of the expansion appear as a byproduct of the operator product expansion for the correlators of the operators W(Σ) with the chiral primaries of the theory. We find that, while undergoing a phase transition at a critical distance, the holographic mutual information, instead of strictly vanishing, decays with a power law whose leading contributions of order O(N0), originate from the exchange of pairs of the lightest bulk particles between A and B. These particles correspond to operators in the boundary field theory with the smallest scaling dimensions.
url http://www.sciencedirect.com/science/article/pii/S0550321314002752
work_keys_str_mv AT javiermolinavilaplana anoperatorproductexpansionforthemutualinformationinadscft
AT javiermolinavilaplana operatorproductexpansionforthemutualinformationinadscft
_version_ 1725336463301672960