English

Vibrationally highly excited trilobite molecules stabilized by non-adiabatic coupling

Atomic Physics 2025-04-22 v2 Quantum Physics

Abstract

We report on the observation of highly excited (ν100)\nu \sim 100) vibrational states of a trilobite ultralong-range Rydberg molecule in 87^{87}Rb. These states manifest spectroscopically in a regularly spaced series of peaks red-detuned from the 25f7/225f_{7/2} dissociation threshold. The existence and observed stability of these states requires the almost complete suppression of the adiabatic decay pathway induced by the PP-wave shape resonance of Rb. This stabilization is predicted to occur only for certain Rydberg levels where the avoided crossing between trilobite and PP-wave dominated butterfly potential energy curves nearly vanishes, allowing the vibrational states to diabatically traverse the crossing with almost unit probability. This is the first direct measurement of beyond-Born-Oppenheimer physics in long-range Rydberg molecules, and paves the way for future experiments to access and manipulate wavepackets formed from high-lying vibrational states.

Keywords

Cite

@article{arxiv.2502.15509,
  title  = {Vibrationally highly excited trilobite molecules stabilized by non-adiabatic coupling},
  author = {Rohan Srikumar and Markus Exner and Richard Blättner and Peter Schmelcher and Matthew T. Eiles and Herwig Ott},
  journal= {arXiv preprint arXiv:2502.15509},
  year   = {2025}
}