We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorbates during submonolayer heteroepitaxy. We evaluate the influence of two mechanisms considered in the literature: (i) strain relaxation by alternating arrangement of the adsorbate species and (ii) kinetic segregation due to chemically induced diffusion barriers. A model ternary system of two adsorbates with opposite misfit relative to the substrate, and symmetric binding is investigated by off-lattice as well as lattice kinetic Monte Carlo simulations. We find that neither of the mechanisms (i) or (ii) alone can account for known experimental observations. Rather, a combination of both is needed. We present an off-lattice model which allows f...
It is shown that coverage evolution during atomic deposition on a substrate may be described, on mes...
The evolution of a monoatomic layer, deposited on a substrate, is described by a dynamical model of ...
Nanoscale pattern formation in reactive adsorbates on single crystal surfaces is investigated theore...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
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 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 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 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 investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
It is shown that coverage evolution, during atomic deposition on a substrate, may be described, on m...
It is shown that coverage evolution during atomic deposition on a substrate may be described, on mes...
The evolution of a monoatomic layer, deposited on a substrate, is described by a dynamical model of ...
Nanoscale pattern formation in reactive adsorbates on single crystal surfaces is investigated theore...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
We study the formation of nanostructures with alternating stripes composed of bulk-immiscible adsorb...
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 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 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 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 investigate the formation of nanostructures in 2D strained alloys on face centered cubic (111) su...
It is shown that coverage evolution, during atomic deposition on a substrate, may be described, on m...
It is shown that coverage evolution during atomic deposition on a substrate may be described, on mes...
The evolution of a monoatomic layer, deposited on a substrate, is described by a dynamical model of ...
Nanoscale pattern formation in reactive adsorbates on single crystal surfaces is investigated theore...