Quantum Quench Dynamics in the Transverse Field Ising Model at Non-zero Temperatures
Abstract
The recently discovered dynamical phase transition denotes non-analytic behavior in the real time evolution of quantum systems in the thermodynamic limit and has been shown to occur in different systems at zero temperature [Heyl et al., Phys. Rev. Lett. 110, 135704 (2013)]. In this paper we extend the analysis to non-zero temperature by studying a generalized form of the Loschmidt echo, the work distribution function, of a quantum quench in the transverse field Ising model. Although the quantitative behavior at non-zero temperatures still displays features derived from the zero temperature non-analyticities, it is shown that in this model dynamical phase transitions do not exist if . This is a consequence of the system being initialized in a thermal state. Moreover, we elucidate how the Tasaki-Crooks-Jarzynski relation can be exploited as a symmetry relation for a global quench or to obtain the change of the equilibrium free energy density.
Cite
@article{arxiv.1510.08728,
title = {Quantum Quench Dynamics in the Transverse Field Ising Model at Non-zero Temperatures},
author = {Nils O. Abeling and Stefan Kehrein},
journal= {arXiv preprint arXiv:1510.08728},
year = {2016}
}
Comments
11 pages, 10 figures