International audienceMagnetic properties of nanometer-thick Co films intercalated at the graphene/Ir(111) interface are investigated using spin-polarized low-energy electron microscopy and Auger electron spectroscopy. We show that the graphene top layer promotes perpendicular magnetic anisotropy in the Co film underneath, even for relatively thick intercalated deposits. The magnetic anisotropy energy is significantly larger for the graphene/Co interface than for the free Co surface. Hybridization of the graphene and Co electron orbitals is believed to be at the origin of the observed perpendicular magnetic anisotropy
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Le sujets de cette thèse sont l'évolution structurelle et la réponse magnétique particulière des fil...
International audienceUsing X-ray reflectivity, grazing incidence X-ray diffraction, scanning tunnel...
International audienceWe report strongly enhanced perpendicular magnetic anisotropy (PMA) of Co film...
Magnetic domain structure and spin-dependent reflectivity measurements on cobalt thin films intercal...
Magnetic domain structure and spin-dependent reflectivity measurements on cobalt thin films intercal...
The local atomic structure and the magnetic response of Co films intercalated between Graphene and I...
The local atomic structure and the magnetic response of Co films intercalated between Graphene and I...
Using a combination of photoemission and x-ray magnetic circular dichroism (XMCD), we characterize t...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
Ferromagnetism with perpendicular magnetic anisotropy (PMA) was observed at room temperature in coba...
Le sujets de cette thèse sont l'évolution structurelle et la réponse magnétique particulière des fil...
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Le sujets de cette thèse sont l'évolution structurelle et la réponse magnétique particulière des fil...
International audienceUsing X-ray reflectivity, grazing incidence X-ray diffraction, scanning tunnel...
International audienceWe report strongly enhanced perpendicular magnetic anisotropy (PMA) of Co film...
Magnetic domain structure and spin-dependent reflectivity measurements on cobalt thin films intercal...
Magnetic domain structure and spin-dependent reflectivity measurements on cobalt thin films intercal...
The local atomic structure and the magnetic response of Co films intercalated between Graphene and I...
The local atomic structure and the magnetic response of Co films intercalated between Graphene and I...
Using a combination of photoemission and x-ray magnetic circular dichroism (XMCD), we characterize t...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
Thin Co films intercalated between a Graphene capping layer and the Ir(111) surface are of interest ...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
Ferromagnetism with perpendicular magnetic anisotropy (PMA) was observed at room temperature in coba...
Le sujets de cette thèse sont l'évolution structurelle et la réponse magnétique particulière des fil...
3 figuresInternational audienceUsing low-energy electron microscopy, we study Co intercalation under...
Le sujets de cette thèse sont l'évolution structurelle et la réponse magnétique particulière des fil...
International audienceUsing X-ray reflectivity, grazing incidence X-ray diffraction, scanning tunnel...