Holographic Entanglement Entropy of Mass-deformed ABJM Theory
Abstract
We investigate the effect of supersymmetry preserving mass deformation near the UV fixed point represented by the ABJM theory. In the context of the gauge/gravity duality, we analytically calculate the leading small mass effect on the renormalized entanglement entropy (REE) for the most general Lin-Lunin-Maldacena (LLM) geometries in the cases of the strip and disk shaped entangling surfaces. Our result shows that the properties of the REE in (2+1)-dimensions are consistent with those of the -function in (1+1)-dimensions. We also discuss the validity of our computations in terms of the curvature behavior of the LLM geometry in the large limit and the relation between the correlation length and the mass parameter for a special LLM solution.
Keywords
Cite
@article{arxiv.1407.6511,
title = {Holographic Entanglement Entropy of Mass-deformed ABJM Theory},
author = {Kyung Kiu Kim and O-Kab Kwon and Chanyong Park and Hyeonjoon Shin},
journal= {arXiv preprint arXiv:1407.6511},
year = {2015}
}
Comments
23 pages, 3 figures