Interaction-Enhanced Imaging of Rydberg P states
Abstract
The Interaction Enhanced Imaging technique allows to detect the spatial distribution of strongly interacting impurities embedded within a gas of background atoms used as a contrast medium. Here we present a detailed study of this technique, applied to detect Rydberg states. We experimentally realize fast and efficient three-photon excitation of states, optimized according to the results of a theoretical effective two-level model. Few Rydberg -state atoms, prepared in a small cloud with dimensions comparable to the blockade radius, are detected with a good sensitivity by averaging over 50 shots. The main aspects of the technique are described with a hard-sphere model, finding good agreement with experimental data. This work paves the way to a non-destructive optical detection of single Rydberg atoms with high spatial and temporal resolution.
Keywords
Cite
@article{arxiv.1602.04143,
title = {Interaction-Enhanced Imaging of Rydberg P states},
author = {Vladislav Gavryusev and Miguel Ferreira-Cao and Armin Kekić and Gerhard Zürn and Adrien Signoles},
journal= {arXiv preprint arXiv:1602.04143},
year = {2017}
}
Comments
28 pages, 12 figures, accepted for publication in EPJST Topical issue on Cooperativity and Control in Highly Excited Rydberg Ensembles, Achievements of the European Marie Curie ITN COHERENCE