International audienceGraphene is attractive for spintronics due to its long spin life time and high mobility. So far only thick and polycrystalline slabs have been used as ferromagnetic electrodes. We report the growth of flat, epitaxial ultrathin Co films on graphene. These display perpendicular magnetic anisotropy in the thickness range 0.5-1nm, which is confirmed by theory. PMA, epitaxy and ultrathin thickness bring new perspectives for graphene-based spintronic devices such as the zero-field control of an arbitrary magnetization direction, band matching between electrodes and graphene, and interface effects such as Rashba and electric field control of magnetism
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
International audienceWe report strongly enhanced perpendicular magnetic anisotropy (PMA) of Co film...
Nanometer-thick epitaxial Co films intercalated between graphene (Gr) and a heavy metal (HM) substra...
Nanometer-thick epitaxial Co films intercalated between graphene (Gr) and a heavy metal (HM) substra...
We report on the large-scale integration of graphene layers over a FePd perpendicular magnetic aniso...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
J. Friedel (président), G. Bayreuther (rapporteur), F. Gautier (rapporteur), J.B. Theeten (examinate...
A major challenge for future spintronics is to develop suitable spin transport channels with long sp...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
International audienceGraphene is attractive for spintronics due to its long spin life time and high...
International audienceWe report strongly enhanced perpendicular magnetic anisotropy (PMA) of Co film...
Nanometer-thick epitaxial Co films intercalated between graphene (Gr) and a heavy metal (HM) substra...
Nanometer-thick epitaxial Co films intercalated between graphene (Gr) and a heavy metal (HM) substra...
We report on the large-scale integration of graphene layers over a FePd perpendicular magnetic aniso...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
J. Friedel (président), G. Bayreuther (rapporteur), F. Gautier (rapporteur), J.B. Theeten (examinate...
A major challenge for future spintronics is to develop suitable spin transport channels with long sp...
The present work reports experimental and theoretical results for electrodeposited Co/Au(111) ultrat...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...
International audienceWe demonstrate that a C 60 overlayer enhances the perpendicular magnetic aniso...