We use a simple density functional approach on a diffusional time scale, to address freezing to the body-centered cubic (bcc), hexagonal close-packed (hcp), and face-centered cubic (fcc) structures. We observe faceted equilibrium shapes and diffusion-controlled layerwise crystal growth consistent with twodimensional nucleation. The predicted growth anisotropies are discussed in relation with results from experiment and atomistic simulations. We also demonstrate that varying the lattice constant of a simple cubic substrate, one can tune the epitaxially growing body-centered tetragonal structure between bcc and fcc, and observe a Mullins-Sekerka–Asaro-Tiller-Grinfeld-type instability
An anisotropic heat diffusion coefficient is introduced in order to study some interfacial growth ph...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
An anisotropic heat diffusion coefficient is introduced in order to study some interfacial growth ph...
The official published version of the article can be accessed from the link below - Copyright @ 2009...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We use a simple density functional approach on a diffusional time scale, to address freezing to the ...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We discuss the formation of polycrystalline microstructures within the framework of phase field theo...
We determine the full kinetic phase diagram for nucleation and growth of crystal phases in a suspens...
Targeting specific technological applications requires the control of nanoparticles properties and e...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
Targeting specific technological applications requires the control of nanoparticle properties, espec...
Using atomic scale time-dependent density functional calculations we confirm that both diffusion-con...
Molecular dynamics simulations are used to explore the atomic mechanism of formation of polymorphic ...
An anisotropic heat diffusion coefficient is introduced in order to study some interfacial growth ph...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
An anisotropic heat diffusion coefficient is introduced in order to study some interfacial growth ph...
The official published version of the article can be accessed from the link below - Copyright @ 2009...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We use a simple density functional approach on a diffusional time scale, to address freezing to the ...
We apply a simple dynamical density functional theory, the phase-field crystal (PFC) model of overda...
We discuss the formation of polycrystalline microstructures within the framework of phase field theo...
We determine the full kinetic phase diagram for nucleation and growth of crystal phases in a suspens...
Targeting specific technological applications requires the control of nanoparticles properties and e...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
We determine the kinetic phase diagram for nucleation and growth of crystal phases in a suspension o...
Targeting specific technological applications requires the control of nanoparticle properties, espec...
Using atomic scale time-dependent density functional calculations we confirm that both diffusion-con...
Molecular dynamics simulations are used to explore the atomic mechanism of formation of polymorphic ...
An anisotropic heat diffusion coefficient is introduced in order to study some interfacial growth ph...
We report the results of computer simulations of epitaxial growth in the presence of a large Schwoeb...
An anisotropic heat diffusion coefficient is introduced in order to study some interfacial growth ph...