Epitaxial growth is an important technique for the fabrication of film structures with good crystalline quality, e.g., monoatomic overlayers, multilayers, compound materials, and ordered alloys. Such epitaxially grown films are technologically important materials with, e.g., adjustable electronic, magnetic, and optical properties. In case of coherent or pseudomorphic epitaxy, the overlayer adapts the in-plane lattice parameters of the substrate, i.e., the overlayer is strained to match the lattice parameters parallel to the substrate surface (in-plane directions). Simultaneously, a relaxation of the film dimension perpendicular to the substrate-film interface occurs (out-of-plane direction). Thus, coherent epitaxy provides a method to put p...
When wetting is complete, coherent epitaxies on a thick planar substrate B build up z continuous pse...
This work presents new development and applications of ab-initio simulation tools for material scien...
Smallest variations of the lattice parameter result in significant changes in material properties. W...
Epitaxial growth is an important technique for the fabrication of film structures with good crystall...
Coherent epitaxial growth allows us to produce strained crystalline films with structures that are u...
We present a theory of epitaxial growth appropriate to overlayer materials that can adopt a bulk met...
Growth of epitaxial transition-metal superlattices; has proven essential in elucidating the role of ...
A general description of epitaxy between thin films and substrates of any crystal symmetry was devel...
A continuous fcc-to-bcc crystallographic transition via a homogeneous tetragonal lattice deformation...
It is well known that a variation of lattice constants can strongly influence the functional propert...
Strain relaxation studies in epitaxial magnetite, Fe3O4, thin films grown on MgAl2O4(100) substrates...
Strained coherent film growth is commonly either limited to ultrathin films or low strains. Here, we...
Thin layers of orthorhombic uranium ({\alpha}-U) have been grown onto buffered sapphire substrates b...
High-quality single crystals and alloys have been synthesized by molecular beam epitaxy (MBE). These...
Tantalum (Ta) is a metal that is highly prized for its applications in a variety of industries, incl...
When wetting is complete, coherent epitaxies on a thick planar substrate B build up z continuous pse...
This work presents new development and applications of ab-initio simulation tools for material scien...
Smallest variations of the lattice parameter result in significant changes in material properties. W...
Epitaxial growth is an important technique for the fabrication of film structures with good crystall...
Coherent epitaxial growth allows us to produce strained crystalline films with structures that are u...
We present a theory of epitaxial growth appropriate to overlayer materials that can adopt a bulk met...
Growth of epitaxial transition-metal superlattices; has proven essential in elucidating the role of ...
A general description of epitaxy between thin films and substrates of any crystal symmetry was devel...
A continuous fcc-to-bcc crystallographic transition via a homogeneous tetragonal lattice deformation...
It is well known that a variation of lattice constants can strongly influence the functional propert...
Strain relaxation studies in epitaxial magnetite, Fe3O4, thin films grown on MgAl2O4(100) substrates...
Strained coherent film growth is commonly either limited to ultrathin films or low strains. Here, we...
Thin layers of orthorhombic uranium ({\alpha}-U) have been grown onto buffered sapphire substrates b...
High-quality single crystals and alloys have been synthesized by molecular beam epitaxy (MBE). These...
Tantalum (Ta) is a metal that is highly prized for its applications in a variety of industries, incl...
When wetting is complete, coherent epitaxies on a thick planar substrate B build up z continuous pse...
This work presents new development and applications of ab-initio simulation tools for material scien...
Smallest variations of the lattice parameter result in significant changes in material properties. W...