Pseudofunction method: Application to a monolayer of CO and to the Si(111) surface
- 15 August 1986
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 34 (4) , 2656-2663
- https://doi.org/10.1103/physrevb.34.2656
Abstract
The newly developed pseudofunction method has been developed to provide ab initio energy bands and binding-energy curves for molecules, surfaces, and bulk. The effectiveness of this approach is demonstrated by computing the electronic properties of a CO molecule in a monolayer configuration. We find the CO bond length, dipole moment derivative, and the vibrational frequency are close to that of a free CO molecule. We have further demonstrated this new method by computing the surface relaxation of a Si(111)(1×1) four-layer film with one surface saturated by H. The unsaturated surface relaxes inwards by 0.086 Å with a vibrational excitation of 0.038 eV, nearly identical to generalized-valence-bond cluster calculations.Keywords
This publication has 27 references indexed in Scilit:
- Spin-polarized electronic structure of the Ni(001) surface and thin filmsPhysical Review B, 1982
- Self-consistent extended-muffin-tin orbital energy-band method: Application to LiPhysical Review B, 1982
- Spin Polarization and Atomic Geometry of the Si(111) SurfacePhysical Review Letters, 1981
- Full-potential self-consistent linearized-augmented-plane-wave method for calculating the electronic structure of molecules and surfaces:moleculePhysical Review B, 1981
- Initial oxidation of the A1(001) surface: Self-consistent electronic structure of clean A1(001) andPhysical Review B, 1981
- Reliability of Pseudopotential Charge DensitiesPhysical Review Letters, 1979
- Self-Consistent Calculation of Work Function, Charge Densities, and Local Densities of States for Cu(100)Physical Review Letters, 1977
- Linear methods in band theoryPhysical Review B, 1975
- Self-Consistent Equations Including Exchange and Correlation EffectsPhysical Review B, 1965
- Electronic Structure of CO and BFThe Journal of Chemical Physics, 1965