The microscopic magnetization variation in magnetic domain walls in thin films is a crucial property when considering the torques driving their dynamic behaviour. For films possessing out-of-plane anisotropy normally the presence of Néel walls is not favoured due to magnetostatic considerations. However, they have the right structure to respond to the torques exerted by the spin Hall effect. Their existence is an indicator of the interfacial Dzyaloshinskii–Moriya interaction (DMI). Here we present direct imaging of Néel domain walls with a fixed chirality in device-ready Pt/Co/AlOx films using Lorentz transmission electron and Kerr microscopies. It is shown that any independently nucleated pair of walls in our films form winding pairs when ...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
We present direct imaging of domain walls in perpendicularly magnetized Pt/Co/AlOx films using Lore...
The microscopic magnetization variation in magnetic domain walls in thin films is a crucial property...
We present direct imaging of domain walls in perpendicularly magnetized Pt/Co/AlOx films using Lore...
The capacity to propagate magnetic domain walls with spin-polarized currents underpins several schem...
International audienceThe capacity to propagate magnetic domain walls with spin-polarized currents u...
X-ray photoemission electron microscopy (XPEEM) and magneto-optic Kerr effect (MOKE) microscopy have...
Chiral domain walls in ultrathin perpendicularly magnetised layers have a N\'{e}el structure stabili...
Chiral magnetic domain walls are of great interest because lifting the energetic degeneracy of left-...
Chiral magnetic domain walls are of great interest because lifting the energetic degeneracy of left-...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
We present direct imaging of domain walls in perpendicularly magnetized Pt/Co/AlOx films using Lore...
The microscopic magnetization variation in magnetic domain walls in thin films is a crucial property...
We present direct imaging of domain walls in perpendicularly magnetized Pt/Co/AlOx films using Lore...
The capacity to propagate magnetic domain walls with spin-polarized currents underpins several schem...
International audienceThe capacity to propagate magnetic domain walls with spin-polarized currents u...
X-ray photoemission electron microscopy (XPEEM) and magneto-optic Kerr effect (MOKE) microscopy have...
Chiral domain walls in ultrathin perpendicularly magnetised layers have a N\'{e}el structure stabili...
Chiral magnetic domain walls are of great interest because lifting the energetic degeneracy of left-...
Chiral magnetic domain walls are of great interest because lifting the energetic degeneracy of left-...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
The stabilization of chiral magnetic domain walls and skyrmions has been attributed to the actively ...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...
X ray photoemission electron microscopy XPEEM and magneto optic Kerr effect MOKE microscopy have...