Collectively enhanced thermalization via multiqubit collisions
Abstract
We investigate the evolution of a target qubit caused by its multiple random collisions with -qubit clusters. Depending on the cluster state, the evolution of the target qubit may correspond to its effective interaction with a thermal bath, a coherent (laser) drive, or a squeezed bath. In cases where the target qubit relaxes to a thermal state its dynamics can exhibit a quantum advantage, whereby the target-qubit temperature can be scaled up proportionally to and the thermalization time can be shortened by a similar factor, provided the appropriate coherence in the cluster is prepared by non-thermal means. We dub these effects quantum super-thermalization due to its analogies to super-radiance. Experimental realizations of these effects are suggested.
Cite
@article{arxiv.1810.12621,
title = {Collectively enhanced thermalization via multiqubit collisions},
author = {Angsar Manatuly and Wolfgang Niedenzu and Ricardo Román-Ancheyta and Barış Çakmak and Özgür E. Müstecaplıoğlu and Gershon Kurizki},
journal= {arXiv preprint arXiv:1810.12621},
year = {2019}
}
Comments
9 pages, 8 figures