Thin films of Co and Co/Cu/Co trilayers with wedged Cu interlayers were grown epitaxially on Cu buffer layers on hydrogen passivated Si(001) wafers. We find that single Co layers have a well-defined four-fold anisotropy but with smaller in-plane anisotropies than observed in Co grown on Cu crystals. Ruderman–Kittel–Kasuya–Yosida (RKKY) interlayer coupling is observed in one Co/Cu/Co sample which is the smoothest of the films as measured by atomic force microscopy. Some of the films also form a dot-like structure on the surface. Intermixing at elevated temperatures between the Cu buffer and Si limits the ability to form flat surfaces to promote RKKY coupling
Perpendicular magnetic anisotropy (PMA) up to 6.15±1.25 angstroms Co thickness is found for ferromag...
In the last few years ferromagnetic / non-ferromagnetic rnultilayers have reccived considerable atte...
Layer-resolved magnetic domain images of epitaxially grown Co/Cu/Ni trilayers on Cu(001) have been s...
Thin films of Co and Co/Cu/Co trilayers with wedged Cu interlayers were grown epitaxially on Cu buff...
Using magnetic circular X-ray dichroism (MCXD), Co/Ni, Cu/Co and Cu/Ni trilayers and Co/Cu/Ni and Ni...
I have investigated the influence of an ultra-thin Au interface layer on the magnetic anisotropy of ...
The as-grown magnetic domain patterns of epitaxial single-crystalline Co/FeMn bilayers and Co/Cu/FeM...
Structural and magnetic properties of Co/Cu multilayers deposited in the ultra-high vacuum molecular...
In situ polar Kerr effect measurements have been used to study the magnetic anisotropy of Au(111)/Co...
In this work, we have investigated the magnetic anisotropy of Fe/Co layers epitaxially grown on Cu3A...
Co films of 1000- thickness were grown by molecular-beam epitaxy on substrates of mica, oxidized sil...
International audienceWe report a combined scanning tunneling microscopy and x-ray magnetic circular...
The study of magnetic multilayers consisting of electrodeposited Co layers is gaining significant im...
The magnetic properties of perpendicularly magnetized Ni/Cu/Ni epitaxial trilayers grown on Si(0 0 1...
A strong oscillatory exchange coupling has been discovered in epitaxial (111) and (110) Co/Cu/Co san...
Perpendicular magnetic anisotropy (PMA) up to 6.15±1.25 angstroms Co thickness is found for ferromag...
In the last few years ferromagnetic / non-ferromagnetic rnultilayers have reccived considerable atte...
Layer-resolved magnetic domain images of epitaxially grown Co/Cu/Ni trilayers on Cu(001) have been s...
Thin films of Co and Co/Cu/Co trilayers with wedged Cu interlayers were grown epitaxially on Cu buff...
Using magnetic circular X-ray dichroism (MCXD), Co/Ni, Cu/Co and Cu/Ni trilayers and Co/Cu/Ni and Ni...
I have investigated the influence of an ultra-thin Au interface layer on the magnetic anisotropy of ...
The as-grown magnetic domain patterns of epitaxial single-crystalline Co/FeMn bilayers and Co/Cu/FeM...
Structural and magnetic properties of Co/Cu multilayers deposited in the ultra-high vacuum molecular...
In situ polar Kerr effect measurements have been used to study the magnetic anisotropy of Au(111)/Co...
In this work, we have investigated the magnetic anisotropy of Fe/Co layers epitaxially grown on Cu3A...
Co films of 1000- thickness were grown by molecular-beam epitaxy on substrates of mica, oxidized sil...
International audienceWe report a combined scanning tunneling microscopy and x-ray magnetic circular...
The study of magnetic multilayers consisting of electrodeposited Co layers is gaining significant im...
The magnetic properties of perpendicularly magnetized Ni/Cu/Ni epitaxial trilayers grown on Si(0 0 1...
A strong oscillatory exchange coupling has been discovered in epitaxial (111) and (110) Co/Cu/Co san...
Perpendicular magnetic anisotropy (PMA) up to 6.15±1.25 angstroms Co thickness is found for ferromag...
In the last few years ferromagnetic / non-ferromagnetic rnultilayers have reccived considerable atte...
Layer-resolved magnetic domain images of epitaxially grown Co/Cu/Ni trilayers on Cu(001) have been s...