In a combined numerical and experimental study, we demonstrate that current pulses of different polarity can reversibly and controllably displace a magnetic domain wall (DW) in submicrometer permalloy (NiFe) ring structures. The critical current densities for DW displacement are correlated with the specific spin structure of the DWs and are compared to results of micromagnetic simulations including a spin-torque term. Using a notch, an attractive local pinning potential is created for the DW resulting in a highly reproducible spin structure of the DW, critical for reliable current-induced switching
When combining transport with magnetic materials on the nanoscale, a range of exciting and novel phe...
The manipulation of the magnetic moments in ferromagnetic (FM) layers via various spin torques has e...
We report the direct transmission electron microscopy observation of spin structure transformations ...
The magnetoresistance in submicrometer Permalloy square ring structures has been experimentally meas...
International audienceThe precise manipulation of transversemagnetic domain walls in finite/infinite...
International audienceThe precise manipulation of transversemagnetic domain walls in finite/infinite...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
We review the details of domain wall (DW) propagation due to spin-polarized currents that could pote...
An experimental study of domain wall motion in Ni80Fe20 ring structures induced by current pulses as...
We review the details of domain wall (DW) propagation due to spin-polarized currents that could pote...
An experimental study of domain wall motion in Ni80Fe20 ring structures induced by current pulses as...
We review the details of domain wall (DW) propagation due to spin-polarized currents that could pote...
The prevalent data storage devices today rely on a controlled magnetization modification of thin fer...
Herein, different concepts for domain wall propagation based on currents and fields that could poten...
Herein, different concepts for domain wall propagation based on currents and fields that could poten...
When combining transport with magnetic materials on the nanoscale, a range of exciting and novel phe...
The manipulation of the magnetic moments in ferromagnetic (FM) layers via various spin torques has e...
We report the direct transmission electron microscopy observation of spin structure transformations ...
The magnetoresistance in submicrometer Permalloy square ring structures has been experimentally meas...
International audienceThe precise manipulation of transversemagnetic domain walls in finite/infinite...
International audienceThe precise manipulation of transversemagnetic domain walls in finite/infinite...
In this work we study the controlled propagation of magnetic domain walls in ferromagnetic nanowires...
We review the details of domain wall (DW) propagation due to spin-polarized currents that could pote...
An experimental study of domain wall motion in Ni80Fe20 ring structures induced by current pulses as...
We review the details of domain wall (DW) propagation due to spin-polarized currents that could pote...
An experimental study of domain wall motion in Ni80Fe20 ring structures induced by current pulses as...
We review the details of domain wall (DW) propagation due to spin-polarized currents that could pote...
The prevalent data storage devices today rely on a controlled magnetization modification of thin fer...
Herein, different concepts for domain wall propagation based on currents and fields that could poten...
Herein, different concepts for domain wall propagation based on currents and fields that could poten...
When combining transport with magnetic materials on the nanoscale, a range of exciting and novel phe...
The manipulation of the magnetic moments in ferromagnetic (FM) layers via various spin torques has e...
We report the direct transmission electron microscopy observation of spin structure transformations ...