2D-drop model applied to the calculation of step formation energies on a (111) substrate


Autoria(s): Rojas, M.I.; Amilibia, G.E.; Del Popolo, Mario; Leiva, E.P.M.
Data(s)

01/02/2002

Resumo

A model is presented for obtaining the step formation energy for metallic islands on (1 1 1) surfaces from Monte Carlo simulations. This model is applied to homo (Cu/Cu(1 1 1), Ag/Ag(1 1 1)) and heteroepitaxy (Ag/Pt(1 1 1)) systems. The embedded atom method is used to represent the interaction between the particles of the system, but any other type of potential could be used as well. The formulation can also be employed to consider the case of other single crystal surfaces, since the higher barriers for atom motion on other surfaces are not a hindrance for the simulation scheme proposed.

Identificador

http://pure.qub.ac.uk/portal/en/publications/2ddrop-model-applied-to-the-calculation-of-step-formation-energies-on-a-111-substrate(cc8468a5-f9d1-4145-b81d-785d1af9ce07).html

Idioma(s)

eng

Direitos

info:eu-repo/semantics/restrictedAccess

Fonte

Rojas , M I , Amilibia , G E , Del Popolo , M & Leiva , E P M 2002 , ' 2D-drop model applied to the calculation of step formation energies on a (111) substrate ' Surface Science , vol 499 , pp. L135-L140 .

Tipo

article