We study the heavy metal layer thickness dependence of the current-induced spin-orbit torque (SOT) in perpendicularly magnetized Hf|CoFeB|MgO multilayer structures. The damping-like (DL) current-induced SOT is determined by vector anomalous Hall effect measurements. A non-monotonic behavior in the DL-SOT is found as a function of the thickness of the heavy-metal layer. The sign of the DL-SOT changes with increasing the thickness of the Hf layer in the trilayer structure. As a result, in the current-driven magnetization switching, the preferred direction of switching for a given current direction changes when the Hf thickness is increased above ~7 nm. Although there might be a couple of reasons for this unexpected behavior in DL-SOT, such as...
Abstract Quantifying the spin–orbit torque (SOT) efficiency with changing the layer thickness is cru...
We investigate the connections between current-induced spin-orbit torques and unidirectional magneto...
Antiferromagnetic insulators have recently been proved to support spin current efficiently. Here, we...
WOS: 000381155200037We study the heavy metal layer thickness dependence of the current-induced spin-...
We study the effect of the oxide layer on the current-induced spin-orbit torques (SOTs) in perpendic...
We have studied the spin-orbit torques in perpendicularly magnetized Hf/CoFeB/MgO system, by systema...
WOS: 000348381000044We study the effect of the oxide layer on the current-induced spin-orbit torques...
We study the effect of the oxide layer on current-induced perpendicular magnetization switching prop...
When a current is passed through a non-magnetic metal with strong spin-orbit coupling, an orthogonal...
In this paper, we present the results of our study into current-induced spin-orbit torque (SOT) swit...
We present a comprehensive study of the current-induced spin-orbit torques in perpendicularly magnet...
The spin-orbit torque (SOT) effective fields, namely field-like and damping-like terms, depend on th...
We investigate and quantify spin-orbit torque (SOT) strength by current induced effective in-plane m...
Xiao, John Q.Lorenz, Virginia O.Spin-orbit coupling in heavy-metal/ferromagnet (HM/FM) bilayer heter...
arXiv:1301.3573.-- et al.Recent demonstrations of magnetization switching induced by in-plane curren...
Abstract Quantifying the spin–orbit torque (SOT) efficiency with changing the layer thickness is cru...
We investigate the connections between current-induced spin-orbit torques and unidirectional magneto...
Antiferromagnetic insulators have recently been proved to support spin current efficiently. Here, we...
WOS: 000381155200037We study the heavy metal layer thickness dependence of the current-induced spin-...
We study the effect of the oxide layer on the current-induced spin-orbit torques (SOTs) in perpendic...
We have studied the spin-orbit torques in perpendicularly magnetized Hf/CoFeB/MgO system, by systema...
WOS: 000348381000044We study the effect of the oxide layer on the current-induced spin-orbit torques...
We study the effect of the oxide layer on current-induced perpendicular magnetization switching prop...
When a current is passed through a non-magnetic metal with strong spin-orbit coupling, an orthogonal...
In this paper, we present the results of our study into current-induced spin-orbit torque (SOT) swit...
We present a comprehensive study of the current-induced spin-orbit torques in perpendicularly magnet...
The spin-orbit torque (SOT) effective fields, namely field-like and damping-like terms, depend on th...
We investigate and quantify spin-orbit torque (SOT) strength by current induced effective in-plane m...
Xiao, John Q.Lorenz, Virginia O.Spin-orbit coupling in heavy-metal/ferromagnet (HM/FM) bilayer heter...
arXiv:1301.3573.-- et al.Recent demonstrations of magnetization switching induced by in-plane curren...
Abstract Quantifying the spin–orbit torque (SOT) efficiency with changing the layer thickness is cru...
We investigate the connections between current-induced spin-orbit torques and unidirectional magneto...
Antiferromagnetic insulators have recently been proved to support spin current efficiently. Here, we...