Interfacial spin-orbit torques (SOTs) enable the manipulation of the magnetization through in-plane charge currents, which has drawn increasing attention for spintronic applications. The search for material systems providing efficient SOTs, has been focused on polycrystalline ferromagnetic metal/non-magnetic metal bilayers. In these systems, currents flowing in the non-magnetic layer generate-due to strong spin-orbit interaction-spin currents via the spin Hall effect and induce a torque at the interface to the ferromagnet. Here we report the observation of robust SOT occuring at a single crystalline Fe/GaAs (001) interface at room temperature. We find that the magnitude of the interfacial SOT, caused by the reduced symmetry at the interface...
Current-induced spin-orbit torque (SOT) in normal metal/ferromagnet (NM/FM) bilayers bears great pro...
Recently discovered relativistic spin torques induced by a lateral current at a ferromagnet/paramagn...
Efficient electrical control of magnetic moments is essential for future spintronics applications, i...
Interfacial spin-orbit torques (SOTs) enable the manipulation of the magnetization through in-plane ...
Interfacial spin-orbit torques (SOTs) enable the manipulation of the magnetization through in-plane ...
Current-induced spin–orbit magnetic fields, which arise in single-crystalline ferromagnets with brok...
The desire for higher information capacities drives the components of electronic devices to ever sma...
The microscopic structure of spin-orbit fields for the technologically important Fe/GaAs interface i...
In this article we give a review of our recent theoretical studies of the influence of Fe(001) surfa...
UTokyo FOCUS Press releases "Small currents for big gains in spintronics : A new low-power magnetic ...
In recent years, there has been a growing interest in spin-orbit torques (SOTs) for manipulating the...
Spintronic devices are based on heterojunctions of two materials with different magnetic and electro...
Today's society relies on efficient ways to write and read digital information due to the ever incre...
Xiao, John Q.Spin-orbit coupling (SOC) is a relativistic interaction between spin and orbital moment...
Thesis: Sc. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Current-induced spin-orbit torque (SOT) in normal metal/ferromagnet (NM/FM) bilayers bears great pro...
Recently discovered relativistic spin torques induced by a lateral current at a ferromagnet/paramagn...
Efficient electrical control of magnetic moments is essential for future spintronics applications, i...
Interfacial spin-orbit torques (SOTs) enable the manipulation of the magnetization through in-plane ...
Interfacial spin-orbit torques (SOTs) enable the manipulation of the magnetization through in-plane ...
Current-induced spin–orbit magnetic fields, which arise in single-crystalline ferromagnets with brok...
The desire for higher information capacities drives the components of electronic devices to ever sma...
The microscopic structure of spin-orbit fields for the technologically important Fe/GaAs interface i...
In this article we give a review of our recent theoretical studies of the influence of Fe(001) surfa...
UTokyo FOCUS Press releases "Small currents for big gains in spintronics : A new low-power magnetic ...
In recent years, there has been a growing interest in spin-orbit torques (SOTs) for manipulating the...
Spintronic devices are based on heterojunctions of two materials with different magnetic and electro...
Today's society relies on efficient ways to write and read digital information due to the ever incre...
Xiao, John Q.Spin-orbit coupling (SOC) is a relativistic interaction between spin and orbital moment...
Thesis: Sc. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Current-induced spin-orbit torque (SOT) in normal metal/ferromagnet (NM/FM) bilayers bears great pro...
Recently discovered relativistic spin torques induced by a lateral current at a ferromagnet/paramagn...
Efficient electrical control of magnetic moments is essential for future spintronics applications, i...