Mixed state entanglement measures as probe for confinement
Abstract
We study holographic aspects of mixed state entanglement measures in various large top-down as well as bottom-up confining models. For the top-down models, we consider wrapped and branes gravity solutions whereas, for the bottom-up confining model, the Einstein-Maxwell-dilaton gravity solution is considered. We study entanglement entropy, mutual information, entanglement wedge cross-section and entanglement negativity for the strip subsystems and find model independent features of these entanglement measures in all confining theories. The entanglement negativity and entropy exhibit a phase transition at the same critical strip length , at which the order of these measures changes from to . The entanglement wedge cross-section similarly shows an order change at and exhibits a discontinuous behaviour each time a phase transition between different entangling surfaces occur. We further test the inequality involving mutual information and entanglement wedge cross-section, and find that the latter always exceeds half of the former.
Cite
@article{arxiv.2010.07702,
title = {Mixed state entanglement measures as probe for confinement},
author = {Parul Jain and Subhash Mahapatra},
journal= {arXiv preprint arXiv:2010.07702},
year = {2021}
}
Comments
36 pages, many figures, published version, reference and discussion added