We study the energy and creep velocity of magnetic domain walls in perpendicularly magnetised Pt/Co/Ir thin films under strain. We find that the enhancement of domain wall creep velocity under strain from piezoelectric transducers is largest in films with the thinnest Co layers (0.56 nm), in which the strain causes the smallest relative change in perpendicular magnetic anisotropy and the largest relative change in domain wall creep velocity. We show how domain wall energy is predictive of the sensitivity of domain wall creep velocity to changes in strain, and thus provide a route to designing magnetic thin film systems for optimum strain control
Magnetic multilayers with perpendicular anisotropy and an interfacial Dzyaloshinskii-Moriya interact...
It is now commonly accepted that materials exhibiting high perpendicular magnetic anisotropy are exc...
Domain walls in magnetic thin films are being explored for memory applications and the speed at whic...
We study the energy and creep velocity of magnetic domain walls in perpendicularly magnetised Pt/Co/...
The effect of strain from piezoelectric transducers on the perpendicular magnetic anisotropy (PMA), ...
The perpendicular magnetic anisotropy Keff, magnetization reversal, and field-driven domain wall vel...
We study the magnetic properties of perpendicularly magnetized Pt/Co/Ir thin films and investigate t...
The motion of domain walls in thin ferromagnetic films is of both fundamental and technological inte...
We study the magnetic properties of perpendicularly magnetised Pt/Co/Ir thin films and investigate t...
The magnetoelectric (ME) effect is one of the methods for electrically controlling the magnetization...
We report on magnetic domain-wall velocity measurements in ultrathin Pt/Co(0.5–0.8 nm)/Pt films wit...
We observed the magnetoelectric induced domain wall propagation in a Pt/Co/Au/Cr2O3/Pt stacked thin ...
International audienceWe report on magnetic domain-wall velocity measurements in ultrathin Pt=Co0:5-...
The control of perpendicular magnetic anisotropy (PMA) in thin films by strain has considerable pote...
We investigate the Dzyaloshinskii-Moriya interactions (DMIs) in perpendicularly magnetized thin film...
Magnetic multilayers with perpendicular anisotropy and an interfacial Dzyaloshinskii-Moriya interact...
It is now commonly accepted that materials exhibiting high perpendicular magnetic anisotropy are exc...
Domain walls in magnetic thin films are being explored for memory applications and the speed at whic...
We study the energy and creep velocity of magnetic domain walls in perpendicularly magnetised Pt/Co/...
The effect of strain from piezoelectric transducers on the perpendicular magnetic anisotropy (PMA), ...
The perpendicular magnetic anisotropy Keff, magnetization reversal, and field-driven domain wall vel...
We study the magnetic properties of perpendicularly magnetized Pt/Co/Ir thin films and investigate t...
The motion of domain walls in thin ferromagnetic films is of both fundamental and technological inte...
We study the magnetic properties of perpendicularly magnetised Pt/Co/Ir thin films and investigate t...
The magnetoelectric (ME) effect is one of the methods for electrically controlling the magnetization...
We report on magnetic domain-wall velocity measurements in ultrathin Pt/Co(0.5–0.8 nm)/Pt films wit...
We observed the magnetoelectric induced domain wall propagation in a Pt/Co/Au/Cr2O3/Pt stacked thin ...
International audienceWe report on magnetic domain-wall velocity measurements in ultrathin Pt=Co0:5-...
The control of perpendicular magnetic anisotropy (PMA) in thin films by strain has considerable pote...
We investigate the Dzyaloshinskii-Moriya interactions (DMIs) in perpendicularly magnetized thin film...
Magnetic multilayers with perpendicular anisotropy and an interfacial Dzyaloshinskii-Moriya interact...
It is now commonly accepted that materials exhibiting high perpendicular magnetic anisotropy are exc...
Domain walls in magnetic thin films are being explored for memory applications and the speed at whic...