Observation of spin singlet butterfly Rydberg molecules in an ultracold atomic Rb gas

Oral

Abstract

We report the observation of spin-singlet ultra-long range Rydberg butterfly molecules consisting of a ground-state atom bound to a Rydberg atom by $P$-wave scattering of $^{87}$Rb Rydberg electrons from $^{87}$Rb(5s) atoms. A three-photon excitation scheme enables the photoassociation of these molecules by weakly admixing Rb($18f_{7/2}$) states. The measured binding energies, kilo-Debye permanent electric dipole moments, and lifetimes are in excellent agreement with theory. Two long-lived vibrational levels, red detuned from the Rb($18f_{7/2}$) threshold, are observed. This experiment is a foundational step in the production of ultra-cold anions and heavy Rydberg ion-pair systems.

Publication: https://arxiv.org/pdf/2510.21620

Presenters

  • Matthew Eiles

    • Purdue University- West Lafayette

Authors

  • Matthew Eiles

    • Purdue University- West Lafayette
  • Markus Exner

    • Technical University of Kaiserslautern
  • Rohan Srikumar

  • Richard Blaettner

  • Hossein Sadeghpour

    • Harvard - Smithsonian Center for Astrophysics
  • Peter Schmelcher

    • University of Hamburg
  • Herwig Ott