An Intracavity Rydberg Superatom for Optical Quantum Engineering: Coherent Control, Single-Shot Detection and Optical $\pi$ Phase Shift
Quantum Physics
2022-05-18 v1 Atomic Physics
Optics
Abstract
We demonstrate a new versatile building block for optical quantum technologies, based on an intracavity Rydberg-blockaded atomic ensemble acting as a single two-level superatom. We coherently control its state and optically detect it in a single shot with a efficiency. Crucially, we demonstrate a superatom-state-dependent phase rotation on the light reflected from the cavity. Together with the state manipulation and detection, it is a key ingredient for implementing deterministic photonic entangling gates and for generating highly non-classical light states.
Cite
@article{arxiv.2111.09088,
title = {An Intracavity Rydberg Superatom for Optical Quantum Engineering: Coherent Control, Single-Shot Detection and Optical $\pi$ Phase Shift},
author = {Julien Vaneecloo and Sébastien Garcia and Alexei Ourjoumtsev},
journal= {arXiv preprint arXiv:2111.09088},
year = {2022}
}
Comments
9 pages, 4 figures