Entanglement Entropy in 2D Non-abelian Pure Gauge Theory
High Energy Physics - Theory
2014-09-15 v1 Strongly Correlated Electrons
Mathematical Physics
math.MP
Abstract
We compute the Entanglement Entropy (EE) of a bipartition in 2D pure non-abelian gauge theory. We obtain a general expression for EE on an arbitrary Riemann surface. We find that due to area-preserving diffeomorphism symmetry EE does not depend on the size of the subsystem, but only on the number of disjoint intervals defining the bipartition. In the strong coupling limit on a torus we find that the scaling of the EE at small temperature is given by , which is similar to the scaling for the matter fields recently derived in literature. In the large limit we compute all of the Renyi entropies and identify the Douglas-Kazakov phase transition.
Keywords
Cite
@article{arxiv.1403.5035,
title = {Entanglement Entropy in 2D Non-abelian Pure Gauge Theory},
author = {Andrey Gromov and Raul A. Santos},
journal= {arXiv preprint arXiv:1403.5035},
year = {2014}
}
Comments
6 pages