Non-markovian mesoscopic dissipative dynamics of open quantum spin chains
Quantum Physics
2016-06-08 v1 Other Condensed Matter
Abstract
We study the dissipative dynamics of quantum spins with Lindblad generator consisting of operators scaling as fluctuations, namely with the inverse square-root of . In the large limit, the microscopic dissipative time-evolution converges to a non-Markovian unitary dynamics on strictly local operators, while at the mesoscopic level of fluctuations it gives rise to a dissipative non-Markovian dynamics. The mesoscopic time-evolution is Gaussian and exhibits either a stable or an unstable asymptotic character; furthermore, the mesoscopic dynamics builds correlations among fluctuations that survive in time even when the original microscopic dynamics is unable to correlate local observables.
Cite
@article{arxiv.1606.02173,
title = {Non-markovian mesoscopic dissipative dynamics of open quantum spin chains},
author = {Fabio Benatti and Federico Carollo and Roberto Floreanini and Heide Narnhofer},
journal= {arXiv preprint arXiv:1606.02173},
year = {2016}
}
Comments
18 pages