We present a zinc-blende lattice gas model of II-VI(001) surfaces, which is investigated by means of kinetic Monte Carlo simulations. Anisotropic effective interactions between surface metal atoms allow for the description of, e.g., the sublimation of CdTe(001), including the reconstruction of Cd-terminated surfaces and its dependence on the substrate temperature T. Our model also includes Te dimerization and the potential presence of excess Te in a reservoir of weakly bound atoms at the surface. We study the self-regulation of atomic layer epitaxy (ALE) and demonstrate how the interplay of the reservoir occupation with the surface kinetics results in two different regimes: at high T the growth rate is limited to 0.5 layers per ALE cycle, w...
Surface dynamics dominate the incorporation and segregation of atoms in the molecular beam epitaxy (...
A systematic investigation on the mechanisms of nucleation and surface morphology evolution was perf...
The theoretical study of Molecular Beam Epitaxy allows us to model and construct an experiment with ...
We present a zinc-blende lattice gas model of II-VI(001) surfaces, which is investigated by means of...
We present a zinc-blende lattice gas model of II-VI(001) surfaces, which is investigated by means of...
We introduce an anisotropic two-dimensional lattice gas model of metal-terminated II-VI(001) semicon...
We examine the morphological evolution of growing surfaces using Monte Carlo simulations of a solid ...
Atomic deposition techniques are investigated for binary semiconductors of the telluride family, nam...
For part II see ibid., vol.5, p.36 (1990). In parts I and II models are derived in which diffusion o...
This thesis examines various atomistic mechanisms associated with the production of cadmium tellurid...
A discussion of epitaxial growth is presented for those situations (OMVPE, CBE, ALE, MOMBE, GSMBE, e...
We present the results of growth of CdTe layer on (013)GaAs substrate. The sequence processes includ...
For pt.I see ibid., vol.5, p.16 (1990). Analytical descriptions are given of the growth rate in meta...
We present a solid-on-solid model of a binary AB compound, where atoms of type A in the topmost laye...
The dynamics of epitaxial growth of metal films on FCC(001) metal substrates are investigated in thi...
Surface dynamics dominate the incorporation and segregation of atoms in the molecular beam epitaxy (...
A systematic investigation on the mechanisms of nucleation and surface morphology evolution was perf...
The theoretical study of Molecular Beam Epitaxy allows us to model and construct an experiment with ...
We present a zinc-blende lattice gas model of II-VI(001) surfaces, which is investigated by means of...
We present a zinc-blende lattice gas model of II-VI(001) surfaces, which is investigated by means of...
We introduce an anisotropic two-dimensional lattice gas model of metal-terminated II-VI(001) semicon...
We examine the morphological evolution of growing surfaces using Monte Carlo simulations of a solid ...
Atomic deposition techniques are investigated for binary semiconductors of the telluride family, nam...
For part II see ibid., vol.5, p.36 (1990). In parts I and II models are derived in which diffusion o...
This thesis examines various atomistic mechanisms associated with the production of cadmium tellurid...
A discussion of epitaxial growth is presented for those situations (OMVPE, CBE, ALE, MOMBE, GSMBE, e...
We present the results of growth of CdTe layer on (013)GaAs substrate. The sequence processes includ...
For pt.I see ibid., vol.5, p.16 (1990). Analytical descriptions are given of the growth rate in meta...
We present a solid-on-solid model of a binary AB compound, where atoms of type A in the topmost laye...
The dynamics of epitaxial growth of metal films on FCC(001) metal substrates are investigated in thi...
Surface dynamics dominate the incorporation and segregation of atoms in the molecular beam epitaxy (...
A systematic investigation on the mechanisms of nucleation and surface morphology evolution was perf...
The theoretical study of Molecular Beam Epitaxy allows us to model and construct an experiment with ...