An Ultracold Ensemble of NaCs Ground State Molecules
ORAL
Abstract
We report on the creation of sodium-cesium (NaCs) molecules in their rovibrational ground state, assembled from ultracold clouds of Na and Cs atoms [1]. We present one- and two-photon studies of electronically excited molecular states. We use one of these states to transfer NaCs Feshbach molecules [2] to the ground state via stimulated Raman adiabatic passage (STIRAP) and observe 70% transfer efficiency. In the ground state, we measure the two-body loss rate, which approaches the unitary limit. In addition, we measure the DC Stark shift of the ground state with fields up to 2.1 kV/cm, corresponding to dipole moments of 2.6 Debye for NaCs.
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Publication: [1] Warner et al., Phys. Rev. A 104, 033302 (2021)<br>[2] Lam et al., arXiv:2202.03355
Presenters
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Ian C Stevenson
Columbia University
Authors
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Ian C Stevenson
Columbia University
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Niccolò Bigagli
Columbia University
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Aden Z Lam
Columbia University
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Claire Warner
Columbia University
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Weijun Yuan
Columbia University
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Siwei Zhang
Columbia University
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Sebastian Will
Columbia University