Controlling and designing quantum magnetic properties by an external electric field is a key challenge in modern magnetic physics. Here, from first principles, the effects of an external electric field on the magnetocrystalline anisotropy (MCA) in ferromagnetic transition-metal monolayers are demonstrated which show that the MCA in an Fe(001) monolayer [but not in Co(001) and Ni(001) monolayers] can be controlled by the electric field through a change in band structure, in which small components of the p orbitals near the Fermi level, which are coupled to the d states by the electric field, play a key role. This prediction obtained opens a way to control the MCA by the electric field and invites experiments
Voltage-controlled magnetic anisotropy (VCMA) is an efficient way to manipulate the magnetization st...
The behavior of Mn overlayers on Fe(001) under the influence of external magnetic fields is investig...
We consider the details of the near-surface electronic band structure of a prototypical ferromagnet,...
We report results of first principles calculations for effects of an external electric field (E-fiel...
The magnetocrystalline anisotropy (MCA) for an Fe monolayer on MgO substrate (Fe/MgO) and that sandw...
First-principles full-potential linearized augmented plane-wave studies reveal that a surface magnet...
Abstract Magnetic anisotropy energy (MAE) is one of the most important properties in two-dimensional...
Magnetic anisotropy energy (MAE) of a Ru monolayer on MgO(001) substrate under...
International audienceA large electric field at the surface of a ferromagnetic metal is expected to ...
A large electric field at the surface of a ferromagnetic metal is expected to appreciably change its...
The search for ultrathin magnetic films with large perpendicular magnetocrystalline anisotropy (PMA)...
Significant enhancement of the magnetocrystalline anisotropy (MCA) of an Fe(001) surface capped by 4...
We explore possibilities for control of magnons in two-dimensional heterostructures by an external e...
International audienceThe charge-mediated effect of electric field on the perpendicular magnetic ani...
金沢大学理工研究域数物科学系We investigate crystalline magnetic anisotropy in the electric field (EF) for the FePt...
Voltage-controlled magnetic anisotropy (VCMA) is an efficient way to manipulate the magnetization st...
The behavior of Mn overlayers on Fe(001) under the influence of external magnetic fields is investig...
We consider the details of the near-surface electronic band structure of a prototypical ferromagnet,...
We report results of first principles calculations for effects of an external electric field (E-fiel...
The magnetocrystalline anisotropy (MCA) for an Fe monolayer on MgO substrate (Fe/MgO) and that sandw...
First-principles full-potential linearized augmented plane-wave studies reveal that a surface magnet...
Abstract Magnetic anisotropy energy (MAE) is one of the most important properties in two-dimensional...
Magnetic anisotropy energy (MAE) of a Ru monolayer on MgO(001) substrate under...
International audienceA large electric field at the surface of a ferromagnetic metal is expected to ...
A large electric field at the surface of a ferromagnetic metal is expected to appreciably change its...
The search for ultrathin magnetic films with large perpendicular magnetocrystalline anisotropy (PMA)...
Significant enhancement of the magnetocrystalline anisotropy (MCA) of an Fe(001) surface capped by 4...
We explore possibilities for control of magnons in two-dimensional heterostructures by an external e...
International audienceThe charge-mediated effect of electric field on the perpendicular magnetic ani...
金沢大学理工研究域数物科学系We investigate crystalline magnetic anisotropy in the electric field (EF) for the FePt...
Voltage-controlled magnetic anisotropy (VCMA) is an efficient way to manipulate the magnetization st...
The behavior of Mn overlayers on Fe(001) under the influence of external magnetic fields is investig...
We consider the details of the near-surface electronic band structure of a prototypical ferromagnet,...