English

Energy Redistribution following CO$_2$ Formation on Cold Amorphous Solid Water

Chemical Physics 2021-12-02 v1

Abstract

The formation of molecules in and on amorphous solid water (ASW) as it occurs in interstellar space releases appreciable amounts of energy that need to be dissipated to the environment. Here, energy transfer between CO2_2 formed within and on the surface of amorphous solid water (ASW) and the surrounding water is studied. Following CO(1Σ+^1 \Sigma^+) + O(1^1D) recombination the average translational and internal energy of the water molecules increases on the 10\sim 10 ps time scale by 15 % to 20 % depending on whether the reaction takes place on the surface or in an internal cavity of ASW. Due to tight coupling between CO2_2 and the surrounding water molecules the internal energy exhibits a peak at early times which is present for recombination on the surface but absent for the process inside ASW. Energy transfer to the water molecules is characterized by a rapid 10\sim 10 ps and a considerably slower 1\sim 1 ns component. Within 50 ps a mostly uniform temperature increase of the ASW across the entire surface is found. The results suggest that energy transfer between a molecule formed on and within ASW is efficient and helps to stabilize the products generated.

Keywords

Cite

@article{arxiv.2112.00482,
  title  = {Energy Redistribution following CO$_2$ Formation on Cold Amorphous Solid Water},
  author = {Meenu Upadhyay and Markus Meuwly},
  journal= {arXiv preprint arXiv:2112.00482},
  year   = {2021}
}

Comments

25 pages

R2 v1 2026-06-24T07:59:35.593Z