Kinetics of Facile Bilayer Island Formation for Ag on NiAl(110)
ORAL
Abstract
STM studies reveal that deposition of Ag on NiAl(110) at 127 K and above leads to bilayer-by-bilayer growth of a nearly-strain-free film with Ag(110) structure [1]. This growth mode is attributed to Quantum Size Effects (QSE) associated with electron confinement in the Ag film. Our focus here is on analysis the initial nucleation and growth of bilayer Ag(110) islands on NiAl(110) which is facile even at 127K despite requiring uphill transport of Ag. DFT analysis for supported Ag films determines adatom adsorption energies (which display QSE), interaction energies, and various relevant diffusion barriers. Kinetic Monte Carlo simulation of an atomistic lattice-gas model incorporating these energies highlights the role of strongly anisotropic interactions in facilitating bilayer island formation. \newline [1] B. Unal et al., Phys. Rev. B 76 (2007) 195410.
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Authors
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J.W. Evans
Iowa State University
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Yong Han
Iowa State University
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D.-J. Liu
Iowa State University
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Baris Unal
Iowa State University
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F. Qin
Iowa State University
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D. Jin
Iowa State University
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C.J. Jenks
Iowa State University
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P.A. Thiel
Iowa State University