M.A. Lutz, R.M. Feenstra, et al.
Surface Science
A plane-wave basis has great advantages for many calculations in the physics solids. To apply this basis to a wider class of materials, the atomic characteristic of a pseudopotential is identified which leads to rapid convergence in the solid, and a new method for generating pseudopotentials optimized according to this criterion is shown. As a test case, an ab initio plane-wave basis determination of the structural properties of fcc copper is performed. The results indicate that these optimized pseudopotentials will facilitate study of transition metals and first-row nonmetals. © 1990 The American Physical Society.
M.A. Lutz, R.M. Feenstra, et al.
Surface Science
G. Will, N. Masciocchi, et al.
Zeitschrift fur Kristallographie - New Crystal Structures
R. Ghez, J.S. Lew
Journal of Crystal Growth
U. Wieser, U. Kunze, et al.
Physica E: Low-Dimensional Systems and Nanostructures