Different Regimes in the Ehrlich-Schwoebel Instability
نویسنده
چکیده
A one-dimensional high-symmetry growing surface in presence of step-edge barriers is studied numerically and analytically, through a discrete /continuous model which neglects thermal detachment from steps. The morphology of the film at different times and/or different sizes of the sample is analyzed in the overall range of possible step-edge barriers: for a small barrier, we have a strong up-down asymmetry of the interface, and a coarsening process with an increasing size of mounds takes place; at high barriers no coarsening exists, and for infinite barriers the up-down symmetry is asymptotically recovered. The transition between the two regimes occurs when the so-called Schwoebel length is of order of the diffusion length.
منابع مشابه
O ct 1 99 7 Single - Particle Diffusion - Coefficient on Surfaces with Ehrlich - Schwoebel - Barriers
The diffusion coefficient of single particles in the presence of Ehrlich-Schwoebel barriers (ESB)is considered. An exact expression is given for the diffusion coefficient on linear chains with random arrangements of ESB. The results are extended to surfaces having ESB with uniform extension in one or both directions. All results are verified by Monte Carlo simulations.
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