English

Probing dipolar interactions between Rydberg atoms and ultracold polar molecules

Atomic Physics 2025-04-10 v1 Quantum Physics

Abstract

We probe resonant dipolar interactions between ultracold 40^{40}K87^{87}Rb molecules and Rydberg 87^{87}Rb atoms in an optically trapped ensemble. Through state-selective ionization detection of the KRb molecules, we observe resonant energy transfer at 2.227 GHz from Rydberg atoms to molecules under a tunable external electric field. We measure a broadening up to 3.5 MHz, for the Rb Rydberg excitation spectrum, which matches a Monte Carlo simulation that describes a Rydberg atom and neighboring molecules evolving under a dipole-dipole interacting Hamiltonian. The demonstrated interspecies dipolar interaction is a key ingredient for hybrid Rydberg-polar molecule systems, where the advantages of each system can be leveraged and combined.

Keywords

Cite

@article{arxiv.2504.06977,
  title  = {Probing dipolar interactions between Rydberg atoms and ultracold polar molecules},
  author = {Lingbang Zhu and Jeshurun Luke and Roy Shaham and Yi-Xiang Liu and Kang-Kuen Ni},
  journal= {arXiv preprint arXiv:2504.06977},
  year   = {2025}
}