English

Precision spectroscopy of negative-ion resonances in ultralong-range Rydberg molecules

Atomic Physics 2019-08-19 v2 Quantum Gases

Abstract

The level structure of negative-ions near the electron detachment limit dictates the low-energy scattering of an electron with the parent neutral atom. We demonstrate that a single ultracold atom bound inside a Rydberg orbit forming an ultralong-range Rydberg molecule provides an atomic-scale system which is highly sensitive to electron-neutral scattering and thus allows for detailed insights into the underlying near-threshold anion states. Our measurements reveal the so far unobserved fine structure of the 3PJ^3P_J triplet of Rb^- and allow us to extract parameters of the associated pp-wave scattering resonances which deviate from previous theoretical estimates. Moreover, we observe a novel alignment mechanism for Rydberg molecules mediated by spin-orbit coupling in the negative ion.

Keywords

Cite

@article{arxiv.1904.08372,
  title  = {Precision spectroscopy of negative-ion resonances in ultralong-range Rydberg molecules},
  author = {Felix Engel and Thomas Dieterle and Frederic Hummel and Christian Fey and Peter Schmelcher and Robert Löw and Tilman Pfau and Florian Meinert},
  journal= {arXiv preprint arXiv:1904.08372},
  year   = {2019}
}

Comments

11 pages, 6 figures