Using a simple atomistic model of anharmonic nearest-neighbors interaction, we have calculated the step energies of strained hexagonal monolayer islands. These have been found to decrease with the absolute value of the misfit due to the strain relaxation at steps. The effect is significantly more pronounced in the case of positive misfit owing to the stronger repulsive interatomic forces. Furthermore, (111)-faceted steps are favored at positive misfit (compressed islands) and, to a lesser extent, (100)-faceted steps at negative misfits (tensile islands). The result is rationalized in terms of the different bonding geometries at step edges and a comparison with experiments is included. Thus, the equilibrium shape transforms from regular hexa...
Atomistic computer simulations are used to study the zero-temperature interaction between steps in v...
By exploiting a fully three-dimensional finite-element modeling of strain fields, we investigate the...
By means of lattice and molecular dynamics we study the theoretical strength of homogeneously strain...
The equilibrium shape of a monatomic strained island on a substrate depends on the step free energie...
An analytical expression of the free energy consisting of the strain energy, surface energy and int...
An analytical expression of the free energy consisting of the strain energy, surface energy and int...
We study numerically the equilibrium shape, shape transition and dislocation nucleation in strained ...
Journal ArticleWe show that the equilibrium shape anisotropy of two-dimensional islands in heteroepi...
We study numerically the equilibrium shapes, shape transitions, and dislocation nucleation of small ...
We present simple models based on isotropic elasticity for determining the stress fields in the vici...
The effect of misfit strain on the equilibrium aspect ratio of isotropic islands has been investigat...
We investigate the role of excluded volume interactions instabilising different structures in monola...
We present an analytical, elastic analysis for the energy and relaxation of stepped surfaces. The an...
International audienceSi(001) vicinals with monoatomic steps present an alternation of (1 x 2) and (...
We have derived within the framework of a solid-on-solid model with anisotropic nearest-neighbor int...
Atomistic computer simulations are used to study the zero-temperature interaction between steps in v...
By exploiting a fully three-dimensional finite-element modeling of strain fields, we investigate the...
By means of lattice and molecular dynamics we study the theoretical strength of homogeneously strain...
The equilibrium shape of a monatomic strained island on a substrate depends on the step free energie...
An analytical expression of the free energy consisting of the strain energy, surface energy and int...
An analytical expression of the free energy consisting of the strain energy, surface energy and int...
We study numerically the equilibrium shape, shape transition and dislocation nucleation in strained ...
Journal ArticleWe show that the equilibrium shape anisotropy of two-dimensional islands in heteroepi...
We study numerically the equilibrium shapes, shape transitions, and dislocation nucleation of small ...
We present simple models based on isotropic elasticity for determining the stress fields in the vici...
The effect of misfit strain on the equilibrium aspect ratio of isotropic islands has been investigat...
We investigate the role of excluded volume interactions instabilising different structures in monola...
We present an analytical, elastic analysis for the energy and relaxation of stepped surfaces. The an...
International audienceSi(001) vicinals with monoatomic steps present an alternation of (1 x 2) and (...
We have derived within the framework of a solid-on-solid model with anisotropic nearest-neighbor int...
Atomistic computer simulations are used to study the zero-temperature interaction between steps in v...
By exploiting a fully three-dimensional finite-element modeling of strain fields, we investigate the...
By means of lattice and molecular dynamics we study the theoretical strength of homogeneously strain...