Dark Entangled Steady States of Interacting Rydberg Atoms
Quantum Physics
2013-07-25 v2
Abstract
We propose a scheme for rapid generation of high fidelity steady state entanglement between a pair of atoms. A two-photon excitation process towards long-lived Rydberg states with finite pairwise interaction, a dark state interference effect in the individual atoms, and spontaneous emission from their short-lived excited states lead to rapid, dissipative formation of an entangled steady state. We show that for a wide range of physical parameters, this entangled state is formed on a time scale given by the strengths of coherent Raman and Rabi fields applied to the atoms, while it is only weakly dependent on the Rydberg interaction strength.
Keywords
Cite
@article{arxiv.1304.4466,
title = {Dark Entangled Steady States of Interacting Rydberg Atoms},
author = {D. D. Bhaktavatsala Rao and Klaus Mølmer},
journal= {arXiv preprint arXiv:1304.4466},
year = {2013}
}
Comments
4 Pages, 3 figures + Supplementary Information [Phys. Rev. Lett. 111, 033606]