We report on the Structural and magnetic properties of thin Fe films grown on the Cu(1 1 0) surface. In-plane grazing-incidence X-ray diffraction has been Used to Measure the lateral lattice spacing of the Fe films. Complementary information about the structure of the topmost layers has been obtained by means of Auger and photoelectron diffraction. The Fe film grows pseudomorphic with the substrate up to a thickness of about 0.8 nm. The diffraction feature of a new phase is observed at 1.6 nm, with a corresponding interplanar distance close to the bulk body centered cubic (bee) Fe one, which is eventually recovered at higher thickness (6.4 nm). From comparison between X-ray diffraction and photoelectron diffraction, it is suggested that the...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
Ultrathin Fe and Mn films were deposited on single crystal substrates to investigate the correlation...
Ultrathin films of Cobalt, Iron and Manganese have been thermally evaporated onto an fcc Copper (111...
Fcc Fe wedges of 0-12 monolayer (ML) were grown by means of molecular beam epitaxy onto a novel subs...
Using photoelectron diffraction in the scanned-energy mode we show that at 300 K iron grows pseudomo...
The magnetic properties of bcc Fe(110) bilayers separated by fcc(111) Cu films of variable thickness...
Using photoelectron diffraction in the scanned energy mode we have investigated the structure of ult...
The magnetic properties of bcc Fe(110) bilayers separated by fcc(111) Cu films of variable thicknes...
The magnetic properties of bcc Fe(110) bilayers separated by fcc(111) Cu films of variable thicknes...
The growth mode, the crystallographic structure, and the magnetic properties of ultrathin iron films...
Using photoelectron diffraction in the scanned-energy mode we show that at 300 K iron grows pseudomo...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
Ultrathin Fe and Mn films were deposited on single crystal substrates to investigate the correlation...
Ultrathin films of Cobalt, Iron and Manganese have been thermally evaporated onto an fcc Copper (111...
Fcc Fe wedges of 0-12 monolayer (ML) were grown by means of molecular beam epitaxy onto a novel subs...
Using photoelectron diffraction in the scanned-energy mode we show that at 300 K iron grows pseudomo...
The magnetic properties of bcc Fe(110) bilayers separated by fcc(111) Cu films of variable thickness...
Using photoelectron diffraction in the scanned energy mode we have investigated the structure of ult...
The magnetic properties of bcc Fe(110) bilayers separated by fcc(111) Cu films of variable thicknes...
The magnetic properties of bcc Fe(110) bilayers separated by fcc(111) Cu films of variable thicknes...
The growth mode, the crystallographic structure, and the magnetic properties of ultrathin iron films...
Using photoelectron diffraction in the scanned-energy mode we show that at 300 K iron grows pseudomo...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
We investigated the growth of ultra-thin Fe films on Ir(111) by means of in-situ low energy electron...
Ultrathin Fe and Mn films were deposited on single crystal substrates to investigate the correlation...
Ultrathin films of Cobalt, Iron and Manganese have been thermally evaporated onto an fcc Copper (111...