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Cold collisions of rovibrationally excited D$_2$ molecules

Chemical Physics 2022-12-20 v1 Atomic Physics

Abstract

The H2_2+H2_2 system has long been considered as a benchmark system for ro-vibrational energy transfer in bimolecular collisions. However, most studies thus far have focused on collisions involving H2_2 molecules in the ground vibrational level or in the first excited vibrational state. While H2_2+H2_2/HD collisions have received wide attention due to the important role they play in astrophysics, D2_2+D2_2 collisions have received much less attention. Recently, Zhou et al. [Nat. Chem. 4 658 (2022)] examined stereodynamic aspects of rotational energy transfer in collisions of two aligned D2_2 molecules prepared in the v=2v=2 vibrational level and j=2j=2 rotational level. Here, we report quantum calculations of rotational and vibrational energy transfer in collisions of two D2_2 molecules prepared in vibrational levels up to v=2v=2 and identify key resonance features that contribute to the angular distribution in the experimental results of Zhou et al. The quantum scattering calculations were performed in full dimensionality and using the rigid-rotor approximation using a recently-developed highly-accurate six-dimensional potential energy surface for the H4_4 system that allows descriptions of collisions involving highly vibrationally excited H2_2 and its isotopologues.

Keywords

Cite

@article{arxiv.2212.09204,
  title  = {Cold collisions of rovibrationally excited D$_2$ molecules},
  author = {James F. E. Croft and Pablo G. Jambrina and F. Javier Aoiz and Hua Guo and N. Balakrishnan},
  journal= {arXiv preprint arXiv:2212.09204},
  year   = {2022}
}

Comments

9 pages, 12 figures