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Efficient Creation of Ultracold Ground State $^{6}\textrm{Li}^{40}\textrm{K}$ Polar Molecules

Quantum Gases 2023-10-06 v1 Atomic Physics

Abstract

We report the creation of ultracold ground state 6Li40K^{6}\textrm{Li}^{40}\textrm{K} polar molecules with high efficiency. Starting from weakly-bound molecules state, stimulated Raman adiabatic passage (STIRAP) is adopted to coherently transfer the molecules to their singlet ro-vibrational ground state X1Σ+,v=0,J=0>|\textrm{X}^{1}\Sigma^{+},v=0,J=0>. By employing a singlet STIRAP pathway and low-phase-noise narrow-linewidth lasers, we observed a one-way transfer efficiency of 96(4)\,\%. Held in an optical dipole trap, the lifetime of the ground-state molecules is measured to be 5.0(3)\,ms. The large permanent dipole moment of LiK is confirmed by applying a DC electric field on the molecules and performing Stark shift spectroscopy of the ground state. With recent advances in the quantum control of collisions, our work paves the way for exploring quantum many-body physics with strongly-interacting 6Li40K^{6}\textrm{Li}^{40}\textrm{K} molecules.

Keywords

Cite

@article{arxiv.2310.03300,
  title  = {Efficient Creation of Ultracold Ground State $^{6}\textrm{Li}^{40}\textrm{K}$ Polar Molecules},
  author = {Canming He and Xiaoyu Nie and Victor Avalos and Sofia Botsi and Sunil Kumar and Anbang Yang and Kai Dieckmann},
  journal= {arXiv preprint arXiv:2310.03300},
  year   = {2023}
}

Comments

6 pages, 6 figures