Atomic momentum distributions in polyatomic molecules in rotational-vibrational eigenstates
Chemical Physics
2024-06-10 v1
Abstract
We report a quantum mechanical method for calculating the momentum distributions of constituent atoms of polyatomic molecules in rotational-vibrational eigenstates. Application of the present theory to triatomic molecules in the rovibrational ground state revealed that oscillatory changes appear on the proton momentum distribution in the nonlinear molecule, whilst no such modulation is present in the case of an oxygen atom in the linear molecule. The atomic momentum distributions were analyzed in detail by means of a rigid rotor model, and it was found that the oscillation originates from quantum-mechanical delocalization of the target atom with respect to the other atoms.
Cite
@article{arxiv.2406.04832,
title = {Atomic momentum distributions in polyatomic molecules in rotational-vibrational eigenstates},
author = {Sota Sakaguchi and Yasuhiro Ohshima and Masakazu Yamazaki},
journal= {arXiv preprint arXiv:2406.04832},
year = {2024}
}
Comments
29 pages, 7 figures