Electronic Friction-Based Vibrational Lifetimes of Molecular Adsorbates: Beyond the Independent-Atom Approximation
Abstract
We assess the accuracy of vibrational damping rates of diatomic adsorbates on metal surfaces as calculated within the local-density friction approximation (LDFA). An atoms-in-molecules (AIM) type charge partitioning scheme accounts for intramolecular contributions and overcomes the systematic underestimation of the nonadiabatic losses obtained within the prevalent independent-atom approximation. The quantitative agreement obtained with theoretical and experimental benchmark data suggests the LDFA-AIM scheme as an efficient and reliable approach to account for electronic dissipation in ab initio molecular dynamics simulations of surface chemical reactions.
- Publication:
-
Physical Review Letters
- Pub Date:
- July 2015
- DOI:
- arXiv:
- arXiv:1506.06877
- Bibcode:
- 2015PhRvL.115d6102R
- Keywords:
-
- 82.65.+r;
- 34.50.Bw;
- 68.43.Pq;
- 82.20.Gk;
- Surface and interface chemistry;
- heterogeneous catalysis at surfaces;
- Energy loss and stopping power;
- Adsorbate vibrations;
- Electronically non-adiabatic reactions;
- Condensed Matter - Materials Science
- E-Print:
- 5 pages including 2 figures