In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic field induced motion in Ta/CoFeB/MgO and Pt/Co/Pt wires with perpendicular magnetic anisotropy. In wires of 20 mu m and 25 mu m, a large edge pinning potential produces the anchoring of the DW ends to the wire edges, which is evidenced as a significant curvature of the DW front as it propagates. As the driving magnetic field is increased, the curvature reduces as a result of the system moving away from the creep regime of DW motion, which implies a weaker dependence of the DW dynamics on the interaction between the DW and the wire edge defects. A simple model is derived to describe the dependence of the DW curvature on the driving magnetic fi...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this work, we have studied the mechanism of domain wall motion in 0.2-1.5 μm wide nanowires based...
[EN] While edge pinning is known to play an important role in sub-mu m wires, we demonstrate that st...
While edge pinning is known to play an important role in sub-μm wires, we demonstrate that strong de...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this study, we report on the analysis of the magnetic domain wall (DW) curvature due to magnetic ...
In this work, we have studied the mechanism of domain wall motion in 0.2-1.5 μm wide nanowires based...
[EN] While edge pinning is known to play an important role in sub-mu m wires, we demonstrate that st...
While edge pinning is known to play an important role in sub-μm wires, we demonstrate that strong de...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
The pinning of a magnetic domain wall in a curved Permalloy (NiFe) nanostrip is experimentally studi...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...
Controlled domain wall motion and pinning in nanowires with perpendicular magnetic anisotropy are of...