APS Logo

High precision spectroscopy of trilobite Rydberg molecules

ORAL

Abstract

In this study, we present high-resolution spectra of 87Rb trilobite dimers with principal quantum numbers n in the range of 22 to 27. These exotic molecules exhibit very large permanent dipole moments of nearly 3000 Debye, making them among the most polar molecular systems known. Their substantial binding energies, combined with a relative spectral resolution of 10-4, provide a stringent test for current theoretical models.

Using a recently developed Green's function framework, we accurately reproduce the vibrational spectra, overcoming previous convergence issues. The molecular binding energies are primarily governed by the low-energy s-wave electron-atom scattering length. This enables us to extract the 3S1 scattering phase shift with unprecedented precision at low energy regimes, which are inaccessible to free electrons.

Our findings not only provide a powerful benchmark for advancing electron-atom scattering theories but also highlight the unique properties of trilobite Rydberg molecules, including their extreme polarity and high-angular-momentum character.

Publication: https://arxiv.org/abs/2412.19710<br>https://www.nature.com/articles/s41467-023-43818-7

Presenters

  • Markus Exner

    RPTU Kaiserslautern-Landau

Authors

  • Markus Exner

    RPTU Kaiserslautern-Landau

  • Rohan Srikumar

    University of Hamburg

  • Richard Blaettner

    RPTU Kaiserslautern-Landau

  • Peter Schmelcher

    Zentrum für Optische Quantentechnologien, University of Hamburg, Hamburg, Germany, University of Hamburg

  • Herwig Ott

    RPTU Kaiserslautern-Landau, University of Kaiserslautern

  • Matthew T Eiles

    Max Planck Institute for the Physics of Complex Systems