We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-plane field in ultrathin Pt/Co/Pt films. Specifically, using sputter deposition, we vary the Ar pressure during the growth of the top Pt layer. This induces a large change in the interfacial structure as evidenced by a factor three change in the effective perpendicular magnetic anisotropy. Strikingly, a discrepancy between the current theory for domain-wall propagation based on a simple domain-wall energy density and our experimental results is found. This calls for further theoretical development of domain-wall creep under in-plane fields and varying structural asymmetry
[EN]Chiral domain walls in ultrathin perpendicularly magnetized layers have a Néel structure stabili...
The effects of spin-orbit coupling and symmetry breaking at the interface between a ferromagnet and ...
It is now commonly accepted that materials exhibiting high perpendicular magnetic anisotropy are exc...
We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-p...
We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-p...
We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-p...
We report experimentally obtained magnetic domain wall (DW) velocities of current-assisted field-dri...
The interfacial morphology and the Dzyaloshinskii-Moriya interaction (DMI) have been investigated in...
The interfacial Dzyaloshinskii-Moriya interaction (DMI) is important for chiral domain walls (DWs) a...
Chiral domain walls in ultrathin perpendicularly magnetized layers have a Néel structure stabilized ...
We study the effect of sputter-deposition conditions, namely, substrate temperature and chamber base...
Understanding the effect of fabrication conditions on domain wall (DW) motion in thin films with per...
We study the magnetic properties of perpendicularly magnetized Pt/Co/Ir thin films and investigate t...
Different models have been used to evaluate the interfacial Dzyaloshinskii-Moriya interaction (DMI) ...
We investigate the Dzyaloshinskii-Moriya interactions (DMIs) in perpendicularly magnetized thin film...
[EN]Chiral domain walls in ultrathin perpendicularly magnetized layers have a Néel structure stabili...
The effects of spin-orbit coupling and symmetry breaking at the interface between a ferromagnet and ...
It is now commonly accepted that materials exhibiting high perpendicular magnetic anisotropy are exc...
We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-p...
We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-p...
We analyze the impact of growth conditions on the asymmetric magnetic bubble expansion under an in-p...
We report experimentally obtained magnetic domain wall (DW) velocities of current-assisted field-dri...
The interfacial morphology and the Dzyaloshinskii-Moriya interaction (DMI) have been investigated in...
The interfacial Dzyaloshinskii-Moriya interaction (DMI) is important for chiral domain walls (DWs) a...
Chiral domain walls in ultrathin perpendicularly magnetized layers have a Néel structure stabilized ...
We study the effect of sputter-deposition conditions, namely, substrate temperature and chamber base...
Understanding the effect of fabrication conditions on domain wall (DW) motion in thin films with per...
We study the magnetic properties of perpendicularly magnetized Pt/Co/Ir thin films and investigate t...
Different models have been used to evaluate the interfacial Dzyaloshinskii-Moriya interaction (DMI) ...
We investigate the Dzyaloshinskii-Moriya interactions (DMIs) in perpendicularly magnetized thin film...
[EN]Chiral domain walls in ultrathin perpendicularly magnetized layers have a Néel structure stabili...
The effects of spin-orbit coupling and symmetry breaking at the interface between a ferromagnet and ...
It is now commonly accepted that materials exhibiting high perpendicular magnetic anisotropy are exc...