Rearrangement of single atoms in a 2000-site optical tweezers array at cryogenic temperatures
Atomic Physics
2024-08-30 v1 Quantum Gases
Quantum Physics
Abstract
We report on the trapping of single rubidium atoms in large arrays of optical tweezers comprising up to 2088 sites in a cryogenic environment at 6 K. Our approach relies on the use of microscope objectives that are in-vacuum but at room temperature, in combination with windowless thermal shields into which the objectives are protruding to ensure a cryogenic environment for the trapped atoms. To achieve enough optical power for efficient trapping, we combine two lasers at slightly different wavelengths. We discuss the performance and limitations of our design. Finally, we demonstrate atom-by-atom rearrangement of an 828-atom target array using moving optical tweezers controlled by a field-programmable gate array.
Cite
@article{arxiv.2405.19503,
title = {Rearrangement of single atoms in a 2000-site optical tweezers array at cryogenic temperatures},
author = {Grégoire Pichard and Desiree Lim and Etienne Bloch and Julien Vaneecloo and Lilian Bourachot and Gert-Jan Both and Guillaume Mériaux and Sylvain Dutartre and Richard Hostein and Julien Paris and Bruno Ximenez and Adrien Signoles and Antoine Browaeys and Thierry Lahaye and Davide Dreon},
journal= {arXiv preprint arXiv:2405.19503},
year = {2024}
}
Comments
6 pages, 4 figures