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- W56221396 abstract "The results of a detailed study of the evolution, scaling and percolation of islands in a model of submonolayer molecular-beam epitaxy appropriate for the case of dendritic island growth are presented. The scaling of the island density, monomer density, island-size distribution, structure factor, and pair-correlation function are studied as a function of the coverage θ and the ratio R = D/F of the diffusion rate D to the deposition rate F. Our results span the full range of coverage starting from very low coverage all the way through the coalescence and percolation regimes. For small coverage the islands are fractal while at higher coverages they become compact, similar to what has been observed in Au/Ru(0001). For large R, four distinct scaling regimes are found: a low-coverage nucleation regime, an intermediate-coverage regime, an aggregation regime, and a coalescence and percolation regime. The scaling behavior in the first three regimes is compared with results obtained using a generalised rate equation approach. A novel “fractal” scaling form for the structure factor in the aggregation regime is derived. The dependence of the percolation threshold on R is also studied and found to show interesting non-monotonic behavior." @default.
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- W56221396 date "1994-01-01" @default.
- W56221396 modified "2023-09-24" @default.
- W56221396 title "Dynamical Scaling of the Island-Size Distribution and Percolation in Submonolayer Molecular Beam Epitaxy" @default.
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- W56221396 doi "https://doi.org/10.1007/978-3-642-79293-9_6" @default.
- W56221396 hasPublicationYear "1994" @default.
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