Unconventional magnetism via optical pumping of interacting spin systems
Quantum Gases
2013-06-21 v2 Pattern Formation and Solitons
Quantum Physics
Abstract
We consider strongly interacting systems of effective spins, subject to dissipative spin-flip processes associated with optical pumping. We predict the existence of novel magnetic phases in the steady-state of this system, which emerge due to the competition between coherent and dissipative processes. Specifically, for strongly anisotropic spin-spin interactions, we find ferromagnetic, antiferromagnetic, spin-density-wave, and staggered-XY steady states, which are separated by nonequilibrium phase transitions meeting at a Lifshitz point. These transitions are accompanied by quantum correlations, resulting in spin squeezing. Experimental implementations in ultracold atoms and trapped ions are discussed.
Keywords
Cite
@article{arxiv.1304.4959,
title = {Unconventional magnetism via optical pumping of interacting spin systems},
author = {Tony E. Lee and Sarang Gopalakrishnan and Mikhail D. Lukin},
journal= {arXiv preprint arXiv:1304.4959},
year = {2013}
}
Comments
5 pages + appendix