Daniel J. Coady, Amanda C. Engler, et al.
ACS Macro Letters
Properties of liquid arsenic are calculated by molecular-dynamics simulations using both ab initio local-density functional theory and pair potentials based on second-order perturbation theory. Radial distribution functions from both procedures compare well with experiment, in spite of small but significant differences in short-range order between the two calculations. Coordination is predicted to evolve from three-fold to six-fold when density is increased, and optical properties are predicted. © 1990 The American Physical Society.
Daniel J. Coady, Amanda C. Engler, et al.
ACS Macro Letters
J.V. Harzer, B. Hillebrands, et al.
Journal of Magnetism and Magnetic Materials
Julian J. Hsieh
Journal of Vacuum Science and Technology A: Vacuum, Surfaces and Films
M.A. Lutz, R.M. Feenstra, et al.
Surface Science