Holographic Reflected Entropy and Islands in Interface CFTs

Fuente: arXiv
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Main Authors: Basak, Jaydeep Kumar, Basu, Debarshi, Malvimat, Vinay, Parihar, Himanshu, Sengupta, Gautam
Format: Preprint
Published: 2023
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author Basak, Jaydeep Kumar
Basu, Debarshi
Malvimat, Vinay
Parihar, Himanshu
Sengupta, Gautam
author_facet Basak, Jaydeep Kumar
Basu, Debarshi
Malvimat, Vinay
Parihar, Himanshu
Sengupta, Gautam
contents We investigate the reflected entropy for various mixed state configurations in the two dimensional holographic conformal field theories sharing a common interface (ICFTs). In the AdS$_3$/ICFT$_2$ framework, we compute the holographic reflected entropy for the required configurations in the vacuum state of the ICFT$_{\text{2}}$ which is given by twice the entanglement wedge cross section (EWCS) in a spacetime involving two AdS$_3$ geometries glued along a thin interface brane. Subsequently, we evaluate the EWCS in the bulk geometry involving eternal BTZ black strings with an AdS$_2$ interface brane, which is dual to an ICFT$_2$ in the thermofield double (TFD) state. We explore the system from a doubly holographic perspective and determine the island contributions to the reflected entropy in the two dimensional semi-classical description involving two CFT$_{\text{2}}$s coupled to an AdS$_2$ brane. We demonstrate that the results from the island formula match precisely with the bulk AdS$_3$ results in the large tension limit of the interface brane. We illustrate that the phase structure of the reflected entropy is quite rich involving many novel induced island phases and demonstrate that it obeys the expected Page curve for the reflected entropy in a radiation bath coupled to the AdS$_2$ black hole.
format Preprint
id arxiv_https___arxiv_org_abs_2312_12512
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Holographic Reflected Entropy and Islands in Interface CFTs
Basak, Jaydeep Kumar
Basu, Debarshi
Malvimat, Vinay
Parihar, Himanshu
Sengupta, Gautam
High Energy Physics - Theory
We investigate the reflected entropy for various mixed state configurations in the two dimensional holographic conformal field theories sharing a common interface (ICFTs). In the AdS$_3$/ICFT$_2$ framework, we compute the holographic reflected entropy for the required configurations in the vacuum state of the ICFT$_{\text{2}}$ which is given by twice the entanglement wedge cross section (EWCS) in a spacetime involving two AdS$_3$ geometries glued along a thin interface brane. Subsequently, we evaluate the EWCS in the bulk geometry involving eternal BTZ black strings with an AdS$_2$ interface brane, which is dual to an ICFT$_2$ in the thermofield double (TFD) state. We explore the system from a doubly holographic perspective and determine the island contributions to the reflected entropy in the two dimensional semi-classical description involving two CFT$_{\text{2}}$s coupled to an AdS$_2$ brane. We demonstrate that the results from the island formula match precisely with the bulk AdS$_3$ results in the large tension limit of the interface brane. We illustrate that the phase structure of the reflected entropy is quite rich involving many novel induced island phases and demonstrate that it obeys the expected Page curve for the reflected entropy in a radiation bath coupled to the AdS$_2$ black hole.
title Holographic Reflected Entropy and Islands in Interface CFTs
topic High Energy Physics - Theory
url https://arxiv.org/abs/2312.12512