Non-adiabatic decay of Rydberg-atom-ion molecules
Abstract
The decay of Rydberg-atom-ion molecules (RAIMs) due to non-adiabatic couplings between electronic potential energy surfaces is investigated. We employ the Born-Huang representation and perform numerical simulations using a Crank-Nicolson algorithm. The non-adiabatic lifetimes of rubidium RAIMs for the lowest ten vibrational states, , are computed for selected Rydberg principal quantum numbers, . The non-adiabatic lifetimes are found to generally exceed the radiative Rydberg-atom lifetimes. We observe and explain a trend of the lifetimes as a function of and , and attribute irregularities to quantum interference arising from a shallow potential well in an inner potential surface. Our results will be useful for future spectroscopic studies of RAIMs.
Keywords
Cite
@article{arxiv.2108.10475,
title = {Non-adiabatic decay of Rydberg-atom-ion molecules},
author = {Alisher Duspayev and Georg Raithel},
journal= {arXiv preprint arXiv:2108.10475},
year = {2022}
}
Comments
7 pages, 3 figures, 1 table