Entropic c-functions in $T{\bar T}, J{\bar T}, T{\bar J}$ deformations
Abstract
We study the holographic entanglement entropy of an interval in a quantum field theory obtained by deforming a holographic two-dimensional conformal field theory via a general linear combination of irrelevant operators that are closely related to, but nonetheless distinct from, and , and compute the Casin-Huerta entropic -function. We find that the entropic -function is ultraviolet regulator independent, and along the renormalization group upflow towards the ultraviolet, it is non-decreasing. We show that the entropic -function exhibits a power law divergence as the interval length approaches a minimum finite value determined in terms of the deformation parameters. We also find for a particular combination of the deformation parameters a square root correction of the entanglement entropy area law.
Keywords
Cite
@article{arxiv.1911.04618,
title = {Entropic c-functions in $T{\bar T}, J{\bar T}, T{\bar J}$ deformations},
author = {Meseret Asrat},
journal= {arXiv preprint arXiv:1911.04618},
year = {2020}
}
Comments
23 pages, references added, figure added, some points elaborated