Ultracold long-range van der Waals Rydberg trimer
Abstract
Rydberg molecules, Rydberg-atom or Rydberg-molecule, are an essential ingredient of cold molecular sciences. However, due to the richness of Rydberg-neutral interactions, new kinds of Rydberg molecules and binding mechanisms are still to be discovered. In this work, we predict the existence of ultra-long-range van der Waals trimers in dilute atom-gas mixtures. These are bound states of a Rydberg atom and a diatomic polar molecule mediated by the long-range van der Waals interaction. This new binding mechanism gives rise to trimers with sizes between 5-500~nm and binding energies between 2 MHz and 0.2 kHz depending on the atomic principal quantum number and orbital angular momentum . We show that these molecules can be produced via two-photon photoassociation, with rates on the order of (10 - 10) cms for temperatures in the range of (0.5 - 10), and discuss the feasibility of observing trimer resonances.
Keywords
Cite
@article{arxiv.2502.10555,
title = {Ultracold long-range van der Waals Rydberg trimer},
author = {Mateo Londoño and Vanessa C. Olaya-Agudelo and Felipe Herrera and Jesús Pérez-Ríos},
journal= {arXiv preprint arXiv:2502.10555},
year = {2025}
}
Comments
arXiv admin note: text overlap with arXiv:2109.06411