paper

Entanglement entropy and mutual information across the Mott transition in the two-dimensional Hubbard model

arXiv:1807.10408 · doi:10.1103/PhysRevLett.122.067203

Abstract

Entanglement and information are powerful lenses to probe phases transitions in many-body systems. Motivated by recent cold atom experiments, which are now able to measure the corresponding information-theoretic quantities, we study the Mott transition in the half-filled two-dimensional Hubbard model using cellular dynamical mean-field theory, and focus on two key measures of quantum correlations: entanglement entropy and mutual information. We show that they detect the first-order nature of the transition, the universality class of the endpoint, and the crossover emanating from the endpoint.

6 pages, 3 figures