Dynamical Phase Transitions and Instabilities in Open Atomic Many-Body Systems
Abstract
We discuss an open driven-dissipative many-body system, in which the competition of unitary Hamiltonian and dissipative Liouvillian dynamics leads to a nonequilibrium phase transition. It shares features of a quantum phase transition in that it is interaction driven, and of a classical phase transition, in that the ordered phase is continuously connected to a thermal state. Within a generalized Gutzwiller approach which includes the description of mixed state density matrices, we characterize the complete phase diagram and the critical behavior at the phase transition approached as a function of time. We find a novel fluctuation induced dynamical instability, which occurs at long wavelength as a consequence of a subtle dissipative renormalization effect on the speed of sound.
Cite
@article{arxiv.1003.2071,
title = {Dynamical Phase Transitions and Instabilities in Open Atomic Many-Body Systems},
author = {Sebastian Diehl and Andrea Tomadin and Andrea Micheli and Rosario Fazio and Peter Zoller},
journal= {arXiv preprint arXiv:1003.2071},
year = {2010}
}
Comments
4+ pages, 3 figures