UTokyo FOCUS Press releases "Small currents for big gains in spintronics : A new low-power magnetic switching component could aid spintronic devices" https://www.u-tokyo.ac.jp/focus/en/press/z0508_00053.htm
In this study, current-induced partial magnetization-based switching was realized through the spin–o...
International audienceModern computing technology is based on writing, storing and retrieving inform...
© 1965-2012 IEEE. We demonstrate ultra-fast (down to 400 ps) bipolar magnetization switching of a th...
peer reviewedElectrical manipulation of magnetization is essential for integration of magnetic funct...
Current-induced control of magnetization in ferromagnets using spin–orbit torque (SOT) has drawn att...
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 ...
International audiencecharge-spin conversion and ii) the speed of SOT switching. Generally, SOT in a...
Electrical manipulation of spin textures inside antiferromagnets represents a new opportunity for de...
Leveraging on interfacial Dzyaloshinskii-Moriya interaction (DMI) induced intrinsic magnetization ti...
Today's society relies on efficient ways to write and read digital information due to the ever incre...
Spintronic devices provide an energy-efficient platform for implementing non-volatile memory and log...
Spin orbit torque (SOT) has been considered as one of the promising technologies for the next-genera...
Current-induced spin-orbit torques provide a versatile tool for switching magnetic devices. In perpe...
A major issue in the development of spintronic memory devices is the reduction of the power consumpt...
In this study, current-induced partial magnetization-based switching was realized through the spin–o...
International audienceModern computing technology is based on writing, storing and retrieving inform...
© 1965-2012 IEEE. We demonstrate ultra-fast (down to 400 ps) bipolar magnetization switching of a th...
peer reviewedElectrical manipulation of magnetization is essential for integration of magnetic funct...
Current-induced control of magnetization in ferromagnets using spin–orbit torque (SOT) has drawn att...
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 ...
International audiencecharge-spin conversion and ii) the speed of SOT switching. Generally, SOT in a...
Electrical manipulation of spin textures inside antiferromagnets represents a new opportunity for de...
Leveraging on interfacial Dzyaloshinskii-Moriya interaction (DMI) induced intrinsic magnetization ti...
Today's society relies on efficient ways to write and read digital information due to the ever incre...
Spintronic devices provide an energy-efficient platform for implementing non-volatile memory and log...
Spin orbit torque (SOT) has been considered as one of the promising technologies for the next-genera...
Current-induced spin-orbit torques provide a versatile tool for switching magnetic devices. In perpe...
A major issue in the development of spintronic memory devices is the reduction of the power consumpt...
In this study, current-induced partial magnetization-based switching was realized through the spin–o...
International audienceModern computing technology is based on writing, storing and retrieving inform...
© 1965-2012 IEEE. We demonstrate ultra-fast (down to 400 ps) bipolar magnetization switching of a th...