Laser cooling and qubit measurements on a forbidden transition in neutral Cs atoms
Quantum Physics
2026-01-30 v4 Atomic Physics
Abstract
We experimentally demonstrate background-free, hyperfine-level-selective measurements of individual Cs atoms by simultaneous cooling to and imaging on the electric-quadrupole transition. We achieve hyperfine resolved detection with fidelity 0.9993(4) and atom retention of 0.9954(5), limited primarily by vacuum lifetime. Performing state measurements in a 3D cooling configuration enables repeated low loss measurements. A theoretical analysis of an extension of the demonstrated approach based on quenching of the excited state with an auxiliary field, identifies parameters for hyperfine-resolved measurements with a projected fidelity of in .
Keywords
Cite
@article{arxiv.2507.01720,
title = {Laser cooling and qubit measurements on a forbidden transition in neutral Cs atoms},
author = {J. Scott and H. M. Lim and U. Singla and Q. Meece and C. Fang and J. T. Choy and S. Kolkowitz and T. M. Graham and M. Saffman},
journal= {arXiv preprint arXiv:2507.01720},
year = {2026}
}
Comments
Added coauthor C. Fang and information on bottle beam mask fabrication