Extracting vibrational anharmonicities from short driven molecular dynamics trajectories
Abstract
Anharmonicities provide a wealth of information about the vibrational dynamics, mode coupling and energy transfer within a polyatomic system. In this contribution we show how driven molecular dynamics trajectories can be used to extract anharmonicity properties under very short times of a few hundreds of vibrational periods, using two exciting fields at- and slightly off-resonance. Detailed analyses on generic quartic potential energy surfaces and applications to various model systems are presented, giving good agreement with perturbation theory. Application to a realistic molecule, cubane (CH), modeled with a tight-binding quantum force field, further indicates how the method can be applied in practical cases.
Cite
@article{arxiv.2312.03449,
title = {Extracting vibrational anharmonicities from short driven molecular dynamics trajectories},
author = {Pascal Parneix and Romain Maupin and Loïse Attal and Florent Calvo and Cyril Falvo},
journal= {arXiv preprint arXiv:2312.03449},
year = {2023}
}
Comments
Published in Theoretical Chemistry Accounts. 17 pages, 5 figures, 2 tables