Effects of deposition dynamics on epitaxial growth
arXiv:cond-mat/0604243 · doi:10.1088/0953-8984/19/48/486001
Abstract
The dynamic effects, such as the steering and the screening effects during deposition, on an epitaxial growth (Cu/Cu(001)), is studied by kinetic Monte Carlo simulation that incorporates molecular dynamic simulation to rigorously take the interaction of the deposited atom with the substrate atoms into account. We find three characteristic features of the surface morphology developed by grazing angle deposition: (1) enhanced surface roughness, (2) asymmetric mound, and (3) asymmetric slopes of mound sides. Regarding their dependence on both deposition angle and substrate temperature, a reasonable agreement of the simulated results with the previous experimental ones is found. The characteristic growth features by grazing angle deposition are mainly caused by the inhomogeneous deposition flux due to the steering and screening effects, where the steering effects play the major role rather than the screening effects. Newly observed in the present simulation is that the side of mound in each direction is composed of various facets instead of all being in one selected mound angle even if the slope selection is attained, and that the slope selection does not necessarily mean the facet selection.
9 pages, 10 figures
References in corpus (5)
- Effects of shadowing in oblique-incidence metal(100) epitaxial growth
- Epitaxial growth of Cu on Cu(001): experiments and simulations
- Steering effect on the shape of islands for homoepitaxial growth of Cu on Cu(100)
- Steering effects on growth instability during step-flow growth of Cu on Cu(1,1,17)
- Impact-driven effects in thin-film growth: steering and transient mobility at the Ag(110) surface