Interaction-induced correlations and non-Markovianity of quantum dynamics
Abstract
We investigate the conditions under which the trace distance between two different states of a given open system increases in time due to the interaction with an environment, therefore signalling non-Markovianity. We find that the finite-time difference in trace distance is bounded by two sharply defined quantities that are strictly linked to the occurrence of system-environment correlations created throughout their interaction and affecting the subsequent evolution of the system. This allows to shed light on the origin of non-Markovian behaviours in quantum dynamics. We best illustrate our findings by tackling two physically relevant examples: a non-Markovian dephasing mechanism that has been the focus of a recent experimental endeavour and the open-system dynamics experienced by a spin connected to a finite-size quantum spin chain.
Keywords
Cite
@article{arxiv.1302.2055,
title = {Interaction-induced correlations and non-Markovianity of quantum dynamics},
author = {Andrea Smirne and Laura Mazzola and Mauro Paternostro and Bassano Vacchini},
journal= {arXiv preprint arXiv:1302.2055},
year = {2013}
}
Comments
8 pages, 3 figures