The morphological development of step edge patterns in the presence of meandering instability during step flow growth is studied by simulations and numerical integration of a continuum model. It is demonstrated that the kink Ehrlich-Schwoebel barrier responsible for the instability leads to an invariant shape of the step profiles. The step morphologies change with increasing coverage from a somewhat triangular shape to a more flat, invariant steady state form. The average pattern shape extracted from the simulations is shown to be in good agreement with that obtained from numerical integration of the continuum theory.Peer reviewe
Epitaxial growth on a surface vicinal to a high-symmetry crystallographic plane occurs through the p...
We study the morphological equilibration of a periodically corrugated one-dimensional crystalline su...
Contains fulltext : 60551.pdf (publisher's version ) (Closed access)During crystal...
We study the onset and development of ledge instabilities during growth of vicinal metal surfaces us...
We consider a simple model for the growth of isolated steps on a vicinal crystal surface. It incorpo...
Vicinal surfaces can exhibit a number of different instabilities and step pattern formation that ar...
We consider a simple model for the growth of isolated steps on a vicinal crystal surface. It incorpo...
We study the step meandering instability on a surface characterized by the alternation of terraces w...
Vicinal surfaces consist of terraces separated by atomic steps. In the step-flow regime, deposited a...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
Molecular beam epitaxy has recently been applied to the growth and self assembly of nanostructures o...
8 pages, 5 figures.-- PACS nrs.: 81.10.Aj, 68.35.Ct, 81.15.Hi, 81.15.Aa.We formulate a phase-field d...
Simultaneous island nucleation and step flow growth on vicinal surfaces are studied by Monte Carlo s...
An extension of the Burton-Cabrera-Frank model including diffusion along steps and entropic step-ste...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mathematics, 2006.Includes bibliogr...
Epitaxial growth on a surface vicinal to a high-symmetry crystallographic plane occurs through the p...
We study the morphological equilibration of a periodically corrugated one-dimensional crystalline su...
Contains fulltext : 60551.pdf (publisher's version ) (Closed access)During crystal...
We study the onset and development of ledge instabilities during growth of vicinal metal surfaces us...
We consider a simple model for the growth of isolated steps on a vicinal crystal surface. It incorpo...
Vicinal surfaces can exhibit a number of different instabilities and step pattern formation that ar...
We consider a simple model for the growth of isolated steps on a vicinal crystal surface. It incorpo...
We study the step meandering instability on a surface characterized by the alternation of terraces w...
Vicinal surfaces consist of terraces separated by atomic steps. In the step-flow regime, deposited a...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
Molecular beam epitaxy has recently been applied to the growth and self assembly of nanostructures o...
8 pages, 5 figures.-- PACS nrs.: 81.10.Aj, 68.35.Ct, 81.15.Hi, 81.15.Aa.We formulate a phase-field d...
Simultaneous island nucleation and step flow growth on vicinal surfaces are studied by Monte Carlo s...
An extension of the Burton-Cabrera-Frank model including diffusion along steps and entropic step-ste...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Mathematics, 2006.Includes bibliogr...
Epitaxial growth on a surface vicinal to a high-symmetry crystallographic plane occurs through the p...
We study the morphological equilibration of a periodically corrugated one-dimensional crystalline su...
Contains fulltext : 60551.pdf (publisher's version ) (Closed access)During crystal...