Relative Entanglement Entropies in 1+1-dimensional conformal field theories
Abstract
We study the relative entanglement entropies of one interval between excited states of a 1+1 dimensional conformal field theory (CFT). To compute the relative entropy between two given reduced density matrices and of a quantum field theory, we employ the replica trick which relies on the path integral representation of and define a set of R\'enyi relative entropies . We compute these quantities for integer values of the parameter and derive via the replica limit, the relative entropy between excited states generated by primary fields of a free massless bosonic field. In particular, we provide the relative entanglement entropy of the state described by the primary operator , both with respect to the ground state and to the state generated by chiral vertex operators. These predictions are tested against exact numerical calculations in the XX spin-chain finding perfect agreement.
Keywords
Cite
@article{arxiv.1612.00659,
title = {Relative Entanglement Entropies in 1+1-dimensional conformal field theories},
author = {Paola Ruggiero and Pasquale Calabrese},
journal= {arXiv preprint arXiv:1612.00659},
year = {2017}
}
Comments
24 pages, 5 figures