B.A. Hutchins, T.N. Rhodin, et al.
Surface Science
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.
B.A. Hutchins, T.N. Rhodin, et al.
Surface Science
Kigook Song, Robert D. Miller, et al.
Macromolecules
K.N. Tu
Materials Science and Engineering: A
I. Morgenstern, K.A. Müller, et al.
Physica B: Physics of Condensed Matter