We have investigated the possibility of isolating the step-induced in-plane uniaxial magnetic anisotropy in Fe=Ag(001) films on which nanoscale surface ripples were fabricated by the ion sculpting technique. For rippled Fe films deposited on flat Ag(001), the steps created along the ripple sidewalls are shown to be the only source of uniaxial anisotropy. Ion sculpting of ultrathin magnetic films allows one to selectively study the step-induced anisotropy and to investigate the correlation between local atomic environment and magnetic properties
To design custom magnetic nanostructures, it is indispensable to acquire precise knowledge about the...
The evolution of the uniaxial magnetic anisotropy of ultrathin epitaxial Fe films grown on InAs(100)...
International audienceThe morphology, the atomic structure, and the strain of very thin Fe epilayers...
Ion sculpting of ultrathin Fe/Ag(001) films induces the self-assembled formation of nanometric surfa...
We have investigated the growth of surface nanostructures on a Co/Cu(001) film and the growth of Co ...
We report on investigations of the crystallographic structure and the magnetic anisotropies of epita...
The ‘atomic saw' method, initially developed for semiconductor heterostructures, has been successful...
Ferromagnetic resonance and Brillouin light scattering have been used to measure the uniaxial magnet...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
We acquired direct measurements for in-plane and perpendicular-to-plane magnetic moments of Fe films...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
6.11 Non-monotone step-induced magnetic anisotropy of Fe films prepared on vicinal Au(001) surfaces ...
We present a joint experimental and theoretical study that demonstrates how to efficiently control a...
In the highly strained system Fe/W(001) the formation of parallel dislocation bundles upon nucleatio...
Nanoscale modifications of strain and magnetic anisotropy can open pathways to engineering magnetic ...
To design custom magnetic nanostructures, it is indispensable to acquire precise knowledge about the...
The evolution of the uniaxial magnetic anisotropy of ultrathin epitaxial Fe films grown on InAs(100)...
International audienceThe morphology, the atomic structure, and the strain of very thin Fe epilayers...
Ion sculpting of ultrathin Fe/Ag(001) films induces the self-assembled formation of nanometric surfa...
We have investigated the growth of surface nanostructures on a Co/Cu(001) film and the growth of Co ...
We report on investigations of the crystallographic structure and the magnetic anisotropies of epita...
The ‘atomic saw' method, initially developed for semiconductor heterostructures, has been successful...
Ferromagnetic resonance and Brillouin light scattering have been used to measure the uniaxial magnet...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
We acquired direct measurements for in-plane and perpendicular-to-plane magnetic moments of Fe films...
We present a study of the magnetic properties of arrays of nanostructures produced in a focussed ion...
6.11 Non-monotone step-induced magnetic anisotropy of Fe films prepared on vicinal Au(001) surfaces ...
We present a joint experimental and theoretical study that demonstrates how to efficiently control a...
In the highly strained system Fe/W(001) the formation of parallel dislocation bundles upon nucleatio...
Nanoscale modifications of strain and magnetic anisotropy can open pathways to engineering magnetic ...
To design custom magnetic nanostructures, it is indispensable to acquire precise knowledge about the...
The evolution of the uniaxial magnetic anisotropy of ultrathin epitaxial Fe films grown on InAs(100)...
International audienceThe morphology, the atomic structure, and the strain of very thin Fe epilayers...