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Formation of ultracold molecules by merging optical tweezers

Atomic Physics 2023-06-14 v2

Abstract

We demonstrate the formation of a single RbCs molecule during the merging of two optical tweezers, one containing a single Rb atom and the other a single Cs atom. Both atoms are initially predominantly in the motional ground states of their respective tweezers. We confirm molecule formation and establish the state of the molecule formed by measuring its binding energy. We find that the probability of molecule formation can be controlled by tuning the confinement of the traps during the merging process, in good agreement with coupled-channel calculations. We show that the conversion efficiency from atoms to molecules using this technique is comparable to magnetoassociation.

Keywords

Cite

@article{arxiv.2302.07296,
  title  = {Formation of ultracold molecules by merging optical tweezers},
  author = {Daniel K. Ruttley and Alexander Guttridge and Stefan Spence and Robert C. Bird and C. Ruth Le Sueur and Jeremy M. Hutson and Simon L. Cornish},
  journal= {arXiv preprint arXiv:2302.07296},
  year   = {2023}
}

Comments

14 pages, 10 figures