By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin transfer torque as well as the critical current densities for different domain wall types. Periodic domain wall transformations from transverse to vortex walls and vice versa are observed, and the transformation mechanism occurs by vortex core displacement perpendicular to the wire. The results imply that the nonadiabaticity parameter β does not equal the damping α, in agreement with recent theoretical predictions. The vortex core motion perpendicular to the current is further studied in disks revealing that the displacement in opposite directions can be attributed to different polarities of the vortex core
We report on low temperature current induced domain wall depinning experiments on (Co/Pt) multilayer...
We study the relationship between the damping (α) and the nonadiabaticity of the spin transport (β) ...
We investigate current-driven domain wall (DW) propagation in magnetic nanowires in the framework of...
By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin trans...
By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin trans...
Many future concepts for spintronic devices are based on the current-driven motion of magnetic domai...
We study the relationship between the damping (alpha) and the nonadiabaticity of the spin transpor...
Copyright © 2010 The American Physical SocietyUsing pulsed-current measurements we investigate the d...
We use a pump-probe photoemission electron microscopy technique to image the displacement of vortex ...
Current induced domain wall (DW) depinning of a narrow DW in out-of-plane magnetized (Pt/Co)3/Pt mul...
The relation between the nonadiabaticity parameter beta and the damping parameter alpha is investiga...
Nontrivial topology of interfaces separating phases with opposite chirality in helical magnetic meta...
Time-resolved soft X-ray transmission microscopy is applied to image the current-induced resonant dy...
We investigate current-driven domain wall (DW) propagation in magnetic nanowires in the framework of...
The current-induced motion of magnetic domain walls (DWs) confined to nanostructures is of great int...
We report on low temperature current induced domain wall depinning experiments on (Co/Pt) multilayer...
We study the relationship between the damping (α) and the nonadiabaticity of the spin transport (β) ...
We investigate current-driven domain wall (DW) propagation in magnetic nanowires in the framework of...
By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin trans...
By direct imaging we determine spin structure changes in Permalloy wires and disks due to spin trans...
Many future concepts for spintronic devices are based on the current-driven motion of magnetic domai...
We study the relationship between the damping (alpha) and the nonadiabaticity of the spin transpor...
Copyright © 2010 The American Physical SocietyUsing pulsed-current measurements we investigate the d...
We use a pump-probe photoemission electron microscopy technique to image the displacement of vortex ...
Current induced domain wall (DW) depinning of a narrow DW in out-of-plane magnetized (Pt/Co)3/Pt mul...
The relation between the nonadiabaticity parameter beta and the damping parameter alpha is investiga...
Nontrivial topology of interfaces separating phases with opposite chirality in helical magnetic meta...
Time-resolved soft X-ray transmission microscopy is applied to image the current-induced resonant dy...
We investigate current-driven domain wall (DW) propagation in magnetic nanowires in the framework of...
The current-induced motion of magnetic domain walls (DWs) confined to nanostructures is of great int...
We report on low temperature current induced domain wall depinning experiments on (Co/Pt) multilayer...
We study the relationship between the damping (α) and the nonadiabaticity of the spin transport (β) ...
We investigate current-driven domain wall (DW) propagation in magnetic nanowires in the framework of...