Atomistically thin adsorbate layers on surfaces with a lattice mismatch display complex spatial patterns and ordering due to strain-driven self-organization. In this work, a general formalism to model such ultrathin adsorption layers that properly takes into account the competition between strain and adhesion energy of the layers is presented. The model is based on the amplitude expansion of the two-dimensional phase field crystal (PFC) model, which retains atomistic length scales but allows relaxation of the layers at diffusive time scales. The specific systems considered here include cases where both the film and the adsorption potential can have either honeycomb (H) or triangular (T) symmetry. These systems include the so-called (1×1), (...
We study the phase diagram and the commensurate-incommensurate phase transitions of a two-dimensiona...
The minimum energy arrangements of atoms adsorbed on a crystalline surface display a very rich set o...
The evolution of a monoatomic layer, deposited on a substrate, is described by a dynamical model of ...
Atomistically thin adsorbate layers on surfaces with a lattice mismatch display complex spatial patt...
A comprehensive study is presented for the influence of misfit strain, adhesion strength, and lattic...
A comprehensive study is presented for the influence of misfit strain, adhesion strength, and lattic...
© 2016 Author(s).A comprehensive study is presented for the influence of misfit strain, adhesion str...
We investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
We investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
We utilize reactive empirical bond order (REBO)-based interatomic potentials to explore the potentia...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
We investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
This paper presents a systematic classification of multilayer-adsorption phenomena on attractive sub...
© EPLA, 2016.We introduce an effective one-mode phase-field crystal model for studying the commensur...
We study the phase diagram and the commensurate-incommensurate phase transitions of a two-dimensiona...
The minimum energy arrangements of atoms adsorbed on a crystalline surface display a very rich set o...
The evolution of a monoatomic layer, deposited on a substrate, is described by a dynamical model of ...
Atomistically thin adsorbate layers on surfaces with a lattice mismatch display complex spatial patt...
A comprehensive study is presented for the influence of misfit strain, adhesion strength, and lattic...
A comprehensive study is presented for the influence of misfit strain, adhesion strength, and lattic...
© 2016 Author(s).A comprehensive study is presented for the influence of misfit strain, adhesion str...
We investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
We investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
We utilize reactive empirical bond order (REBO)-based interatomic potentials to explore the potentia...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
We investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
This paper presents a systematic classification of multilayer-adsorption phenomena on attractive sub...
© EPLA, 2016.We introduce an effective one-mode phase-field crystal model for studying the commensur...
We study the phase diagram and the commensurate-incommensurate phase transitions of a two-dimensiona...
The minimum energy arrangements of atoms adsorbed on a crystalline surface display a very rich set o...
The evolution of a monoatomic layer, deposited on a substrate, is described by a dynamical model of ...