Entanglement Entropy and D1-D5 geometries
Abstract
In Conformal Field Theories with a gravitational AdS dual it is possible to calculate the entanglement entropy of a region holographically by using the Ryu-Takayanagi formula. In this work we consider systems that are in a pure state that is not the vacuum. We study in particular the 2D Conformal Field Theory dual to type IIB string theory on AdS and focus on the -BPS states described holographically by the 2-charge microstate geometries. We discuss a general prescription for the calculation of the entanglement entropy in these geometries that are asymptotically AdS. In particular we study analytically the perturbative expansion for a single, short interval: we show that the first non-trivial terms in this expansion are consistent with the expected CFT structure and with previous results on the vevs of chiral primary operators for the -BPS configurations.
Cite
@article{arxiv.1405.6185,
title = {Entanglement Entropy and D1-D5 geometries},
author = {Stefano Giusto and Rodolfo Russo},
journal= {arXiv preprint arXiv:1405.6185},
year = {2015}
}
Comments
20 pages; v2: clarifications on the holographic computation and comments on the non-static cases added, references updated; v3: corrected typos