Surface phonons ofp(2×2) structures: The effect bond-stretching interactions
- 15 October 1986
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 34 (8) , 5017-5029
- https://doi.org/10.1103/physrevb.34.5017
Abstract
We present here lattice-dynamical calculations of the dispersion of the surface phonons of p(2×2) structures of oxygen on Pt(111) and Ni(100) to illustrate the importance of bond-stretching interactions between the adsorbate atom and nearest-neighbor substrate atoms. We show that only with the inclusion of such an interaction can we explain the observed gap in the Rayleigh wave frequency at the reduced-Brillouin-zone boundary and the presence of several modes along the Γ¯-M¯ direction for the oxygen overlayer on Pt(111). In the case of the same overlayer on Ni(100), this interaction is essential in reproducing the observed dispersion of the adsorbate modes along the Γ¯-X¯ direction and in understanding the origin of the low-lying resonance modes in the spectrum.Keywords
This publication has 16 references indexed in Scilit:
- Adsorbate-Induced Rayleigh-Phonon Gap ofPhysical Review Letters, 1986
- Surface phonon dispersion of platinum (111)Physical Review B, 1986
- Observation of a Kohn Anomaly in the Surface-Phonon Dispersion Curves of Pt(111)Physical Review Letters, 1985
- Cluster analysis of the vibrations of the p(2 × 2) oxygen structure on Ni(100)Surface Science, 1984
- Electron energy loss spectroscopy measurement of surface vibration dispersion on clean and oxygen-covered Ni(100)Surface Science, 1984
- Single-phonon helium-atom scattering from Au(111)Physical Review B, 1983
- Dispersion of Adsorbate Vibrational Modes—theOxygen Overlayer on Ni(100)Physical Review Letters, 1983
- Surface Phonon Dispersion of Ni(100) Measured by Inelastic Electron ScatteringPhysical Review Letters, 1983
- Observation of Surface Phonons in Inelastic Scattering of He Atoms from LiF(001) Crystal SurfacesPhysical Review Letters, 1980
- Theory of Surface Optical Phonons on Reconstructed SurfacesPhysical Review B, 1973