On a quantum phase transition in a steady state out of equilibrium
Mathematical Physics
2016-09-22 v1 Statistical Mechanics
math.MP
Abstract
Within the rigorous axiomatic framework for the description of quantum mechanical systems with a large number of degrees of freedom, we show that the nonequilibrium steady state, constructed in the quasifree fermionic system corresponding to the isotropic XY chain in which a finite sample, coupled to two thermal reservoirs at different temperatures, is exposed to a local external magnetic field, is breaking translation invariance and exhibits a strictly positive entropy production rate. Moreover, we prove that there exists a second-order nonequilibrium quantum phase transition with respect to the strength of the magnetic field as soon as the system is truly out of equilibrium.
Keywords
Cite
@article{arxiv.1609.06597,
title = {On a quantum phase transition in a steady state out of equilibrium},
author = {Walter H. Aschbacher},
journal= {arXiv preprint arXiv:1609.06597},
year = {2016}
}
Comments
24 pages, 4 figures