Tj. Raeker et Ae. Depristo, MOLECULAR-DYNAMICS AND KINETIC MONTE-CARLO SIMULATIONS OF FE ISLAND GROWTH ON CU(111), Surface science, 317(3), 1994, pp. 283-294
We have performed extensive molecular dynamics (MD) simulations of a 0
.07 ML coverage of Fe adatoms on Cu(111) at 300 K using a many-body in
teraction potential from the molecular dynamics/Monte-Carlo corrected
effective medium theory. The Fe atoms were deposited randomly and then
followed for two hundred picoseconds (ps) while annealing at a temper
ature of 300 K. The results of these MD simulations were analyzed to u
nderstand the general features of island growth. One finding was that
islands as large as four atoms are only one of magnitude less mobile t
han monomers. Thus, the mobility of small islands played a significant
role in the growth of large islands. In addition, the presence of nex
t-nearest neighbor attractions was found to increase the speed of this
growth. Another finding was that the Fe islands obtained their equili
brium structures only very slowly compared to the times of aggregation
or coalescence. The MD results were used to construct and test severa
l kinetic Monte Carlo models that incorporated the newly identified pr
ocesses. Considering these MC models, we discuss some details of islan
d structure, stability and aggregation.