We present a combined study of the growth, structure, and related magnetic properties of Fe/W(001) using low-energy electron diffraction, scanning tunneling microscopy, the magneto-optic Kerr effect, and scanning electron microscopy with polarization analysis. Different growth regimes arise due to a competition between the stress-related elastic energy and diffusion barriers. By increasing the growth temperature, diffusion mechanisms may be switched on, activating more and more diffusion paths that lead to a reduction of the elastic energy stored in the growing films. This results in strong variations of the structure and morphology of the films. The influence of each structural and morphological phase of the Fe films on the magnetic proper...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
12 pags, 10 figsWe have grown epitaxial films a few atomic layers thick of iron oxides on ruthenium....
The growth of Fe nanoclusters on the Ge(001) surface has been studied using low-temperature scanning...
The growth of Fe nanoclusters on the Ge(001) surface has been studied using low-temperature scanning...
The magnetism of ultrathin magnetic film depends strongly upon the morphology and microstructure of ...
An ultra-high vacuum Scanning Tunneling Microscope (STM) is converted into a lens-less low-energy Sc...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
[[abstract]]Co and Fe films grown on W(111) were studied. After low temperature (100K) deposition wi...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
The evolution of the structural and magnetic properties of Fe films during growth on the W(001) surf...
12 pags, 10 figsWe have grown epitaxial films a few atomic layers thick of iron oxides on ruthenium....
The growth of Fe nanoclusters on the Ge(001) surface has been studied using low-temperature scanning...
The growth of Fe nanoclusters on the Ge(001) surface has been studied using low-temperature scanning...
The magnetism of ultrathin magnetic film depends strongly upon the morphology and microstructure of ...
An ultra-high vacuum Scanning Tunneling Microscope (STM) is converted into a lens-less low-energy Sc...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
[[abstract]]Co and Fe films grown on W(111) were studied. After low temperature (100K) deposition wi...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...
The electronic, magnetic, and structural properties of Fe thin films epitaxially grown on ZnSe(001) ...