A continuous fcc-to-bcc crystallographic transition via a homogeneous tetragonal lattice deformation (Bain trans-formation) with increasing Fe coverage was observed in molecular-beam grown epitaxial Fe ultrathin flms on Cu3Au(001), contrary to the usual case of a discontinuous martensitic transformation of Fe. With increasing Fe Film thickness, a continuous compression of the interlayer distance perpendicular to the film plane and a simultaneouscontinuous expansion of the in-plane atomic distance was observed. We did not find evidence for the coexistence of fcc and bcc phases. In the ~ 1-12 ML (monolayer) thickness range, the films do exhibit some atomic disorder and do not grow pseudomorphous, but form twisted crystallographic domains that...
Epitaxial Fe wedges with a thickness gradation from 0--20 {angstrom} were grown on diamond(100) at r...
Very peculiar electronic structure and local magnetic moment distribution for fcc Fe ultrathin films...
Fcc Fe wedges of 0-12 monolayer (ML) were grown by means of molecular beam epitaxy onto a novel subs...
Strained coherent film growth is commonly either limited to ultrathin films or low strains. Here, we...
he structure of Fe films grown on the (001) surface of a Cu3Au single crystal at room temperature ha...
The structural and magnetic properties of Fe films grown by molecular beam epitaxy on Cu3Au(001) and...
We investigated the electronic structure of the bcc metastable phases involved in the fcc to bcc tra...
We have investigated the atomic geometry of Fe films on a Ni(001) crystal in the thickness range 0-2...
A clear understanding of the mechanisms of interfacial magnetic anisotropy rests on the structural c...
Ultrathin Fe and Mn films were deposited on single crystal substrates to investigate the correlation...
Using photoelectron diffraction in the scanned-energy mode we show that at 300 K iron grows pseudomo...
We have studied the correlation between the magnetic properties and the structure of ultrathin ferro...
We have made in-situ investigations of ultrathin films of Fe grown on a Ag(100) single crystal. This...
Epitaxial growth is an important technique for the fabrication of film structures with good crystall...
Nous avons étudié par LEED, par microscopie électronique (TME) et par l'effet Mössbauer des électron...
Epitaxial Fe wedges with a thickness gradation from 0--20 {angstrom} were grown on diamond(100) at r...
Very peculiar electronic structure and local magnetic moment distribution for fcc Fe ultrathin films...
Fcc Fe wedges of 0-12 monolayer (ML) were grown by means of molecular beam epitaxy onto a novel subs...
Strained coherent film growth is commonly either limited to ultrathin films or low strains. Here, we...
he structure of Fe films grown on the (001) surface of a Cu3Au single crystal at room temperature ha...
The structural and magnetic properties of Fe films grown by molecular beam epitaxy on Cu3Au(001) and...
We investigated the electronic structure of the bcc metastable phases involved in the fcc to bcc tra...
We have investigated the atomic geometry of Fe films on a Ni(001) crystal in the thickness range 0-2...
A clear understanding of the mechanisms of interfacial magnetic anisotropy rests on the structural c...
Ultrathin Fe and Mn films were deposited on single crystal substrates to investigate the correlation...
Using photoelectron diffraction in the scanned-energy mode we show that at 300 K iron grows pseudomo...
We have studied the correlation between the magnetic properties and the structure of ultrathin ferro...
We have made in-situ investigations of ultrathin films of Fe grown on a Ag(100) single crystal. This...
Epitaxial growth is an important technique for the fabrication of film structures with good crystall...
Nous avons étudié par LEED, par microscopie électronique (TME) et par l'effet Mössbauer des électron...
Epitaxial Fe wedges with a thickness gradation from 0--20 {angstrom} were grown on diamond(100) at r...
Very peculiar electronic structure and local magnetic moment distribution for fcc Fe ultrathin films...
Fcc Fe wedges of 0-12 monolayer (ML) were grown by means of molecular beam epitaxy onto a novel subs...