Suppression of dark-state polariton collapses in cold-atom quantum memory
Abstract
We observe dark-state polariton collapses and revivals in a quantum memory based on electromagnetically induced transparency on a cloud of cold cesium atoms in a magnetic field. Using polarized signal and control beams in the direction of the magnetic field, we suppress the dark-state polariton collapses by polarizing the atoms towards one of the stretched Zeeman states and optimizing the frequency detuning of the control beam. In this way, we demonstrate a quantum memory with only partial dark-state polariton collapses, making the memory usable at any storage time, not only at discretized times of revivals. We obtain storage time of more than 400 s, which is ten times longer than what we can achieve by trying to annul the magnetic field.
Cite
@article{arxiv.2305.03692,
title = {Suppression of dark-state polariton collapses in cold-atom quantum memory},
author = {Katja Gosar and Vesna Pirc Jevšenak and Tadej Mežnaršič and Samo Beguš and Tomasz Krehlik and Dušan Ponikvar and Erik Zupanič and Peter Jeglič},
journal= {arXiv preprint arXiv:2305.03692},
year = {2023}
}
Comments
6 pages, 4 figures, improved version