Abstract Voltage control of exchange bias is desirable for spintronic device applications, however dynamic modulation of the unidirectional coupling energy in ferromagnet/antiferromagnet bilayers has not yet been achieved. Here we show that by solid-state hydrogen gating, perpendicular exchange bias can be enhanced by > 100% in a reversible and analog manner, in a simple Co/Co0.8Ni0.2O heterostructure at room temperature. We show that this phenomenon is an isothermal analog to conventional field-cooling and that sizable changes in average coupling energy can result from small changes in AFM grain rotatability. Using this method, we show that a bi-directionally stable ferromagnet can be made unidirectionally stable, with gate voltage alone. ...
Exchange coupling between a magnetoelectric (111)-oriented Cr2O3 single crystal and a CoPt multilaye...
Exchange coupling between a magnetoelectric (111)-oriented Cr2O3 single crystal and a CoPt multilaye...
Interfaces in magnetically coupled bilayer heterostructures play a vital role in novel spintronics d...
Voltage- and temperature-tuned ferromagnetic hysteresis is investigated by a superconducting quantum...
The electrical manipulation of magnetization and exchange bias in antiferromagnet/ferromagnet thin f...
The electrical manipulation of magnetization and exchange bias in antiferromagnet/ferromagnet thin f...
Controlling magnetism via voltage in the virtual absence of electric current is the key to reduce po...
Controlling magnetism via voltage in the virtual absence of electric current is the key to reduce po...
Controlling magnetism via voltage in the virtual absence of electric current is the key to reduce po...
Manipulation of exchange bias with electric field is appealing to boost energy efficiency in spintro...
Voltage-controlled spin electronics is crucial for continued progress in information technology. It ...
Voltage- and temperature-tuned ferromagnetic hysteresis is investigated by a superconducting quantum...
The exchange bias effect refers to the shift of the hysteresis loop of a ferromagnet in direct conta...
The exchange bias effect refers to the shift of the hysteresis loop of a ferromagnet in direct conta...
The exchange bias effect refers to the shift of the hysteresis loop of a ferromagnet in direct conta...
Exchange coupling between a magnetoelectric (111)-oriented Cr2O3 single crystal and a CoPt multilaye...
Exchange coupling between a magnetoelectric (111)-oriented Cr2O3 single crystal and a CoPt multilaye...
Interfaces in magnetically coupled bilayer heterostructures play a vital role in novel spintronics d...
Voltage- and temperature-tuned ferromagnetic hysteresis is investigated by a superconducting quantum...
The electrical manipulation of magnetization and exchange bias in antiferromagnet/ferromagnet thin f...
The electrical manipulation of magnetization and exchange bias in antiferromagnet/ferromagnet thin f...
Controlling magnetism via voltage in the virtual absence of electric current is the key to reduce po...
Controlling magnetism via voltage in the virtual absence of electric current is the key to reduce po...
Controlling magnetism via voltage in the virtual absence of electric current is the key to reduce po...
Manipulation of exchange bias with electric field is appealing to boost energy efficiency in spintro...
Voltage-controlled spin electronics is crucial for continued progress in information technology. It ...
Voltage- and temperature-tuned ferromagnetic hysteresis is investigated by a superconducting quantum...
The exchange bias effect refers to the shift of the hysteresis loop of a ferromagnet in direct conta...
The exchange bias effect refers to the shift of the hysteresis loop of a ferromagnet in direct conta...
The exchange bias effect refers to the shift of the hysteresis loop of a ferromagnet in direct conta...
Exchange coupling between a magnetoelectric (111)-oriented Cr2O3 single crystal and a CoPt multilaye...
Exchange coupling between a magnetoelectric (111)-oriented Cr2O3 single crystal and a CoPt multilaye...
Interfaces in magnetically coupled bilayer heterostructures play a vital role in novel spintronics d...