International audienceBased on the embedded-atom method (EAM), an analytical effective potential is developed to model the interaction of a metallic adsorbate on a perfect crystalline substrate, which is also metallic. The many-body character of the original EAM potential is preserved in the adsorbate energy and in the alteration of the substrate energy due to the presence of the adsorbate. A mean-field-type version neglecting corrugation of the substrate is first derived based on rigorous integration of individual monolayers, followed by an approximate form for the perturbation of the substrate energy. Lateral corrugation is subsequently included by additional phenomenological terms respecting the symmetry of the substrate, again preservin...
The minimum energy arrangements of atoms adsorbed on a crystalline surface display a very rich set o...
The energetic stability of a set of 36 adsorbate/substrate(111) couples involving An, Ag, Cu, Ni, Pt...
The potential energy landscape of a monolayer adsorbed on well-ordered (111) surface is analyzed for...
A comparative investigation to assess embedded atom methods for the calculation of the suitability o...
Within full relativistic four-component ab initio density functional calculations, we examined the a...
The Lennard-Jones 6-12 atom interaction potential is applied to the cal-culation of adsorption energ...
Embedded-atom methods (EAM) are among the most popular classical force fields for pure metals and al...
An atomistic interaction potential for adsorbate/surface systems is presented, based on the modified...
A good transferability of a force field between environments of varying coordination numbers is gene...
A modern theory of metallic bonding, the Embedded Atom Method (EAM) provides a simple but accurate m...
The molecular cluster model approach for the description of processes at surfaces is presented. It i...
A modem theory of metallic bonding, the Embedded Atom Method (EAM) provides a simple but accurate me...
In this study, we evaluate the functionals of different embedded-atom methods (EAM) by fitting their...
A new formulation of EAM potential is developed for the description of interatomic interactions in m...
The results of kinetic MC simulations of the reversible pattern formation during the adsorption of ...
The minimum energy arrangements of atoms adsorbed on a crystalline surface display a very rich set o...
The energetic stability of a set of 36 adsorbate/substrate(111) couples involving An, Ag, Cu, Ni, Pt...
The potential energy landscape of a monolayer adsorbed on well-ordered (111) surface is analyzed for...
A comparative investigation to assess embedded atom methods for the calculation of the suitability o...
Within full relativistic four-component ab initio density functional calculations, we examined the a...
The Lennard-Jones 6-12 atom interaction potential is applied to the cal-culation of adsorption energ...
Embedded-atom methods (EAM) are among the most popular classical force fields for pure metals and al...
An atomistic interaction potential for adsorbate/surface systems is presented, based on the modified...
A good transferability of a force field between environments of varying coordination numbers is gene...
A modern theory of metallic bonding, the Embedded Atom Method (EAM) provides a simple but accurate m...
The molecular cluster model approach for the description of processes at surfaces is presented. It i...
A modem theory of metallic bonding, the Embedded Atom Method (EAM) provides a simple but accurate me...
In this study, we evaluate the functionals of different embedded-atom methods (EAM) by fitting their...
A new formulation of EAM potential is developed for the description of interatomic interactions in m...
The results of kinetic MC simulations of the reversible pattern formation during the adsorption of ...
The minimum energy arrangements of atoms adsorbed on a crystalline surface display a very rich set o...
The energetic stability of a set of 36 adsorbate/substrate(111) couples involving An, Ag, Cu, Ni, Pt...
The potential energy landscape of a monolayer adsorbed on well-ordered (111) surface is analyzed for...