$T \bar T$ and EE, with implications for (A)dS subregion encodings

Fuente: arXiv
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Main Authors: Lewkowycz, Aitor, Liu, Junyu, Silverstein, Eva, Torroba, Gonzalo
Format: Preprint
Published: 2019
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author Lewkowycz, Aitor
Liu, Junyu
Silverstein, Eva
Torroba, Gonzalo
author_facet Lewkowycz, Aitor
Liu, Junyu
Silverstein, Eva
Torroba, Gonzalo
contents We initiate a study of subregion dualities, entropy, and redundant encoding of bulk points in holographic theories deformed by $T \bar T$ and its generalizations. This includes both cut off versions of Anti de Sitter spacetime, as well as the generalization to bulk de Sitter spacetime, for which we introduce two additional examples capturing different patches of the bulk and incorporating the second branch of the square root dressed energy formula. We provide new calculations of entanglement entropy (EE) for more general divisions of the system than the symmetric ones previously available. We find precise agreement between the gravity side and deformed-CFT side results to all orders in the deformation parameter at large central charge. An analysis of the fate of strong subadditivity for relatively boosted regions indicates nonlocality reminiscent of string theory. We introduce the structure of operator algebras in these systems. The causal and entanglement wedges generalize to appropriate deformed theories but exhibit qualitatively new behaviors, e.g. the causal wedge may exceed the entanglement wedge. This leads to subtleties which we express in terms of the Hamiltonian and modular Hamiltonian evolution. Finally, we exhibit redundant encoding of bulk points, including the cosmological case.
format Preprint
id arxiv_https___arxiv_org_abs_1909_13808
institution arXiv
publishDate 2019
record_format arxiv
spellingShingle $T \bar T$ and EE, with implications for (A)dS subregion encodings
Lewkowycz, Aitor
Liu, Junyu
Silverstein, Eva
Torroba, Gonzalo
High Energy Physics - Theory
Quantum Physics
We initiate a study of subregion dualities, entropy, and redundant encoding of bulk points in holographic theories deformed by $T \bar T$ and its generalizations. This includes both cut off versions of Anti de Sitter spacetime, as well as the generalization to bulk de Sitter spacetime, for which we introduce two additional examples capturing different patches of the bulk and incorporating the second branch of the square root dressed energy formula. We provide new calculations of entanglement entropy (EE) for more general divisions of the system than the symmetric ones previously available. We find precise agreement between the gravity side and deformed-CFT side results to all orders in the deformation parameter at large central charge. An analysis of the fate of strong subadditivity for relatively boosted regions indicates nonlocality reminiscent of string theory. We introduce the structure of operator algebras in these systems. The causal and entanglement wedges generalize to appropriate deformed theories but exhibit qualitatively new behaviors, e.g. the causal wedge may exceed the entanglement wedge. This leads to subtleties which we express in terms of the Hamiltonian and modular Hamiltonian evolution. Finally, we exhibit redundant encoding of bulk points, including the cosmological case.
title $T \bar T$ and EE, with implications for (A)dS subregion encodings
topic High Energy Physics - Theory
Quantum Physics
url https://arxiv.org/abs/1909.13808