Dissipative Entanglement of Quantum Spin Fluctuations
Quantum Physics
2016-07-12 v1 Other Condensed Matter
Mathematical Physics
math.MP
Abstract
We consider two non-interacting infinite quantum spin chains immersed in a common thermal environment and undergoing a local dissipative dynamics of Lindblad type. We study the time evolution of collective mesoscopic quantum spin fluctuations that, unlike macroscopic mean-field observables, retain a quantum character in the thermodynamical limit. We show that the microscopic dissipative dynamics is able to entangle these mesoscopic degrees of freedom, through a purely mixing mechanism. Further, the behaviour of the dissipatively generated quantum correlations between the two chains is studied as a function of temperature and dissipation strength.
Cite
@article{arxiv.1606.01733,
title = {Dissipative Entanglement of Quantum Spin Fluctuations},
author = {Fabio Benatti and Federico Carollo and Roberto Floreanini},
journal= {arXiv preprint arXiv:1606.01733},
year = {2016}
}
Comments
54 pages, 8 figures