Monte Carlo simulations are reported for an atomistic model of heteroepitaxial growth. Dislocations are excluded but lattice misfit is assumed to encourage atom detachment from islands by reducing the barrier for his process by a morphology-dependent strain energy. Three-dimensional, coherent islands of nearly uniform size are found to form spontaneously for misfit above a critical value
An off-lattice, continuous space Kinetic Monte Carlo (KMC) algorithm is discussed and applied in the...
The nucleation and growth of two-dimensional islands is studied with Monte Carlo simulations of a pa...
A theoretical model is developed to study the strain effect on the instability of island formation i...
Monte Carlo simulations are reported for an atomistic model of heteroepitaxial growth. Dislocations ...
We introduce an algorithm for off-lattice kinetic Monte Carlo simulations of heteroepitaxial crystal...
We determine the critical layer thickness for the appearance of misfit dislocations as a function of...
We determine the critical layer thickness for the appearance of misfit dislocations as a function ...
We investigate various phenomena of strained heteroepitaxial growth. To this end, we study a model i...
We introduce a simulation algorithm which allows the off-lattice simulation of various phenomena obs...
We study the morphological evolution of strained heteroepitaxial films using kinetic Monte Carlo sim...
A solid-on-solid model is generalized to study the formation of Ge pyramid islands bounded by (105) ...
We investigate the formation of misfit dislocations in strained heteroepitaxial crystal growth and t...
An off-lattice, continuous space Kinetic Monte Carlo (KMC) algorithm is discussed and applied in the...
An off-lattice, continuous space Kinetic Monte Carlo (KMC) algorithm is discussed and applied in the...
The nucleation and growth of two-dimensional islands is studied with Monte Carlo simulations of a pa...
A theoretical model is developed to study the strain effect on the instability of island formation i...
Monte Carlo simulations are reported for an atomistic model of heteroepitaxial growth. Dislocations ...
We introduce an algorithm for off-lattice kinetic Monte Carlo simulations of heteroepitaxial crystal...
We determine the critical layer thickness for the appearance of misfit dislocations as a function of...
We determine the critical layer thickness for the appearance of misfit dislocations as a function ...
We investigate various phenomena of strained heteroepitaxial growth. To this end, we study a model i...
We introduce a simulation algorithm which allows the off-lattice simulation of various phenomena obs...
We study the morphological evolution of strained heteroepitaxial films using kinetic Monte Carlo sim...
A solid-on-solid model is generalized to study the formation of Ge pyramid islands bounded by (105) ...
We investigate the formation of misfit dislocations in strained heteroepitaxial crystal growth and t...
An off-lattice, continuous space Kinetic Monte Carlo (KMC) algorithm is discussed and applied in the...
An off-lattice, continuous space Kinetic Monte Carlo (KMC) algorithm is discussed and applied in the...
The nucleation and growth of two-dimensional islands is studied with Monte Carlo simulations of a pa...
A theoretical model is developed to study the strain effect on the instability of island formation i...