Long-range interactions in the ozone molecule: spectroscopic and dynamical points of view
Abstract
Using the multipolar expansion of the electrostatic energy, we have characterized the asymptotic interactions between an oxygen atom O and an oxygen molecule O, both in their electronic ground state. We have calculated the interaction energy induced by the permanent electric quadrupoles of O and O and the van der Waals energy. On one hand we determined the 27 electronic potential energy surfaces including spin-orbit connected to the O + O dissociation limit of the O--O complex. On the other hand we computed the potential energy curves characterizing the interaction between O and a O molecule in its lowest vibrational level and in a low rotational level. Such curves are found adiabatic to a good approximation, namely they are only weakly coupled to each other. These results represent a first step for modeling the spectroscopy of ozone bound levels close to the dissociation limit, as well as the low energy collisions between O and O thus complementing the knowledge relevant for the ozone formation mechanism.
Keywords
Cite
@article{arxiv.1210.7728,
title = {Long-range interactions in the ozone molecule: spectroscopic and dynamical points of view},
author = {Maxence Lepers and Béatrice Bussery-Honvault and Olivier Dulieu},
journal= {arXiv preprint arXiv:1210.7728},
year = {2017}
}
Comments
Submitted to J. Chem. Phys. after revision