Dissipative Preparation of Spin Squeezed Atomic Ensembles in a Steady State
Quantum Physics
2013-03-22 v3 Quantum Gases
Abstract
We present and analyze a new approach for the generation of atomic spin squeezed states. Our method involves the collective coupling of an atomic ensemble to a decaying mode of an open optical cavity. We demonstrate the existence of a collective atomic dark-state, decoupled from the radiation field. By explicitly constructing this state we find that it can feature spin squeezing bounded only by the Heisenberg limit. We show that such dark states can be deterministically prepared via dissipative means, thus turning dissipation into a resource for entanglement. The scaling of the phase sensitivity taking realistic imperfections into account is discussed.
Keywords
Cite
@article{arxiv.1209.1991,
title = {Dissipative Preparation of Spin Squeezed Atomic Ensembles in a Steady State},
author = {Emanuele G. Dalla Torre and Johannes Otterbach and Eugene Demler and Vladan Vuletic and Mikhail D. Lukin},
journal= {arXiv preprint arXiv:1209.1991},
year = {2013}
}
Comments
5 pages, 4 figures