Energy Loss of Atoms at Metal Surfaces due to Electron-Hole Pair Excitations: First-Principles Theory of “Chemicurrents”

J. R. Trail, M. C. Graham, D. M. Bird, M. Persson, and S. Holloway
Phys. Rev. Lett. 88, 166802 – Published 8 April 2002
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Abstract

A method is presented for calculating electron-hole pair excitation due to an incident atom or molecule interacting with a metal surface. Energy loss is described using an ab initio approach that obtains a position-dependent friction coefficient for an adsorbate moving near a metal surface from a total energy pseudopotential calculation. A semiclassical forced oscillator model is constructed to describe excitation of the electron gas due to the incident molecule. This approach is applied to H and D atoms incident on a Cu(111) surface, and we obtain theoretical estimates of the “chemicurrents” measured by Nienhaus et al. [Phys. Rev. Lett. 82, 446 (1999)] for these atoms incident on the surface of a Schottky diode.

  • Received 30 October 2001

DOI:https://doi.org/10.1103/PhysRevLett.88.166802

©2002 American Physical Society

Authors & Affiliations

J. R. Trail*, M. C. Graham, and D. M. Bird

  • Department of Physics, University of Bath, Bath BA2 7AY, United Kingdom

M. Persson

  • Department of Applied Physics, Chalmers/Göteborg University, S-412 96 Göteborg, Sweden

S. Holloway

  • Surface Science Research Centre, University of Liverpool, Liverpool L69 3BX, United Kingdom

  • *Electronic address: j.r.trail@bath.ac.uk

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Vol. 88, Iss. 16 — 22 April 2002

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