Molecular Spectra in an Ultracold Strontium Rydberg Gas

ORAL

Abstract

The interaction between a ground state atom and a highly excited Rydberg electron creates a potential that can support ultra-long-range bound molecular states comprising a Rydberg atom and several ground-state atoms. We excite these molecular states using two-photon spectroscopy in an ultracold gas of $^{84}$Sr. In a thermal gas, we observe a highly structured spectrum of many-body bound states with one Rydberg atom and as many as three ground-state atoms in various vibrational levels. We also describe the spectrum in a dense, quantum degenerate gas, which is sensitive to the properties of the polaron formed by the binding of many atoms in the quantum gas to the Rydberg impurity [1]. Because of the absence of a p-wave shape resonance in e-Sr scattering, the molecular spectrum in Sr provides a sensitive probe of the excitation dynamics in a quantum gas in a different regime than is accessible using Rb [2]. \\ $\left[1\right]$ R. Schmidt et al, arXiv: 1510.09183\\ $[2]$ M. Schlagmüller et al, arXiv: 1510.07003

*Research supported by the AFOSR under Grant No. FA9550-14-1-0007, the NSF under Grants No. 1301773 and No. 1205946, the Robert A, Welch Foundation under Grants No. C-0734 and No. C-1844

Authors

  • Joseph D. Whalen

    • Rice Univ
    • Rice University
  • F. Camargo

    • Rice Univ
    • Rice University
  • Roger Ding

    • Rice Univ
  • Germano Woehl Jr.

    • Rice Univ
    • Instituto de Estudos Avancados (IEAv)
  • F.Barry Dunning

    • Rice Univ
    • Rice University
    • Department of Physics and Astronomy, Rice University
  • Thomas Killian

    • Rice University
    • Rice Univ