Entanglement negativity in two-dimensional free lattice models
Abstract
We study the scaling properties of the ground-state entanglement between finite subsystems of infinite two-dimensional free lattice models, as measured by the logarithmic negativity. For adjacent regions with a common boundary, we observe that the negativity follows a strict area law for a lattice of harmonic oscillators, whereas for fermionic hopping models the numerical results indicate a multiplicative logarithmic correction. In this latter case, we conjecture a formula for the prefactor of the area-law violating term, which is entirely determined by the geometries of the Fermi surface and the boundary between the subsystems. The conjecture is tested against numerical results and a good agreement is found.
Cite
@article{arxiv.1511.08819,
title = {Entanglement negativity in two-dimensional free lattice models},
author = {Viktor Eisler and Zoltán Zimborás},
journal= {arXiv preprint arXiv:1511.08819},
year = {2016}
}
Comments
11 pages, 6 figures, published version