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Theoretical study of the Ni growth on Pt stepped surfaces
Authors:Essolaani Wafa  Garbouj Hedi  Said Moncef  Picaud Fabien  Ramseyer Christophe  Spanjaard Daniel  Desjonqures Marie-Catherine
Institution:aUR Physique des Solides, Université de Monastir, Faculté des Sciences de Monastir, Monastir, Tunisia;bUTINAM-B, UMR 6213, Université de Franche-Comté, 25030 Besançon, France;cLaboratoire de Physique des Solides, UMR 8502, Université de Paris Sud, Bat. 510, 91405 Orsay, France;dCEA Saclay, DSM/IRAMIS/SPCSI Bat. 462, 91191 Gif sur Yvette, France
Abstract:We have investigated the growth of Ni on Pt stepped surfaces with (1 1 1) terraces by means of potentials derived from the second moment approximation in a tight-binding model. The activation energies associated to these processes are determined. The Schwoebel barriers of Ni atoms descending steps of Pt stepped surfaces are calculated for different kinds of straight steps (A and B steps) differing by the orientation of the ledge. In addition, we study the diffusion of Ni adatoms at fcc or hcp sites in the presence of small adislands on the terraces, in the vicinity of the A and B steps. We show that a good estimate of the potential wells and diffusion barriers could be given by introducing a lateral effective pair interaction model, the interactions extending up to the next nearest neighbors. Finally, we have carried out Kinetic Monte-Carlo simulations to investigate the Ni wire formation at Pt step edges and the influence of the exchange processes in the alloy formation.
Keywords:Computer simulations  Construction and use of effective interatomic interactions  Monte-Carlo simulations  Semi-empirical models and model calculations  Diffusion and migration  Growth  Surface energy
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