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Photoassociative Spectroscopy of $^{87}$Sr

Atomic Physics 2021-02-24 v2 Quantum Physics

Abstract

We demonstrate photoassociation (PA) of ultracold fermionic 87^{87}Sr atoms. The binding energies of a series of molecular states on the 1Σu+^1\Sigma^+_u 5s215s^2\,^1S0+5s5p1_0+5s5p\,^1P1_1 molecular potential are fit with the semiclassical LeRoy-Bernstein model, and PA resonance strengths are compared to predictions based on the known 1^1S0+1_0+^1S0_0 ground state potential. Similar measurements and analysis were performed for the bosonic isotopes 84^{84}Sr and 86^{86}Sr, allowing a combined analysis of the long-range portion of the excited-state potential and determination of the 5s5p15s5p\,^1P1_1 atomic state lifetime of 5.20±0.025.20 \pm 0.02 ns. The results enable prediction of PA rates across a wide range of experimental conditions.

Keywords

Cite

@article{arxiv.2011.11936,
  title  = {Photoassociative Spectroscopy of $^{87}$Sr},
  author = {J. C. Hill and W. Huie and P. Lunia and J. D. Whalen and S. K. Kanungo and Y. Lu and T. C. Killian},
  journal= {arXiv preprint arXiv:2011.11936},
  year   = {2021}
}

Comments

5 pages, 4 figures