English

Apparatus for producing single strontium atoms in an optical tweezer array

Applied Physics 2024-09-10 v1

Abstract

We outline an experimental setup for efficiently preparing a tweezer array of 88^{88}Sr atoms. Our setup uses permanent magnets to maintain a steady-state two-dimensional magneto-optical trap (MOT) which results in a loading rate of up to 10810^{8} s1^{-1} at 5 mK for the three-dimensional blue MOT. This enables us to trap 2×1062\times10^{6} 88^{88}Sr atoms at 2 μ\muK in a narrow-line red MOT with the 1^{1}S0_{0} \rightarrow 3^{3}P1_{1} intercombination transition at 689 nm. With the Sisyphus cooling and pairwise loss processes, single atoms are trapped and imaged in 813 nm optical tweezers, exhibiting a lifetime of 2.5 minutes. We further investigate the survival fraction of a single atom in the tweezers and characterize the optical tweezer array using a release and recapture technique. Our platform paves the way for potential applications in atomic clocks, precision measurements, and quantum simulations.

Cite

@article{arxiv.2409.05361,
  title  = {Apparatus for producing single strontium atoms in an optical tweezer array},
  author = {Kai Wen and Huijin Chen and Xu Yan and Zejian Ren and Chengdong He and Elnur Hajiyev and Preston Tsz Fung Wong and Gyu-Boong Jo},
  journal= {arXiv preprint arXiv:2409.05361},
  year   = {2024}
}

Comments

7 pages, 5 figures

R2 v1 2026-06-28T18:38:08.613Z