International audienceUsing transport measurements and micromagnetic simulations we have investigated the domain wall motion driven by spin-transfer torques in all-perpendicular hexagonal nanopillar spin-valves. In particular, we probe domain walls nucleated in the free layer of the spin-valves, which are then pinned in the devices. We have determined both the field-current state diagrams for the domain-wall state and the thermally activated dynamics of the nucleation and depinning processes. We show that the nucleation process is well-described by a modified Néel-Brown model taking into account the spin-transfer torque, whereas the depinning process is independent of the current. This is confirmed by an analytical calculation which shows t...
International audienceTime-resolved scanning transmission x-ray microscopy measurements were perform...
Current induced domain wall (DW) motion in perpendicularly magnetized nanos-tripes in the presence o...
Published version, Applied Physics Express 2, 023003 (2009) http://dx.doi.org/10.1143/APEX.2.023003I...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe present a study of the t...
The discover of spin-transfer opens a new way to control the magnetization of a nanomagnet using a s...
The discover of spin-transfer opens a new way to control the magnetization of a nanomagnet using a s...
International audienceHere we examine current driven magneti-zation switching and domain wall propag...
Current-driven domain wall dynamics is studied theoretically in the spin-valve nanostrips ...
Here we examine current driven magneti-zation switching and domain wall propa-gation in nanopillar s...
Here we examine current driven magneti-zation switching and domain wall propa-gation in nanopillar s...
International audienceTelegraph noise induced by stochastic domain wall nucleation, pinning, and ann...
International audienceTelegraph noise induced by stochastic domain wall nucleation, pinning, and ann...
International audienceTelegraph noise induced by stochastic domain wall nucleation, pinning, and ann...
International audienceThe spin-torque switching of metallic nanopillar spin valves showing strong pe...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
International audienceTime-resolved scanning transmission x-ray microscopy measurements were perform...
Current induced domain wall (DW) motion in perpendicularly magnetized nanos-tripes in the presence o...
Published version, Applied Physics Express 2, 023003 (2009) http://dx.doi.org/10.1143/APEX.2.023003I...
Équipe 101 : Nanomagnétisme et électronique de spinInternational audienceWe present a study of the t...
The discover of spin-transfer opens a new way to control the magnetization of a nanomagnet using a s...
The discover of spin-transfer opens a new way to control the magnetization of a nanomagnet using a s...
International audienceHere we examine current driven magneti-zation switching and domain wall propag...
Current-driven domain wall dynamics is studied theoretically in the spin-valve nanostrips ...
Here we examine current driven magneti-zation switching and domain wall propa-gation in nanopillar s...
Here we examine current driven magneti-zation switching and domain wall propa-gation in nanopillar s...
International audienceTelegraph noise induced by stochastic domain wall nucleation, pinning, and ann...
International audienceTelegraph noise induced by stochastic domain wall nucleation, pinning, and ann...
International audienceTelegraph noise induced by stochastic domain wall nucleation, pinning, and ann...
International audienceThe spin-torque switching of metallic nanopillar spin valves showing strong pe...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
International audienceTime-resolved scanning transmission x-ray microscopy measurements were perform...
Current induced domain wall (DW) motion in perpendicularly magnetized nanos-tripes in the presence o...
Published version, Applied Physics Express 2, 023003 (2009) http://dx.doi.org/10.1143/APEX.2.023003I...