Electric field control of magnetization and anisotropy in layered structures with perpendicular magnetic anisotropy is expected to increase the versatility of spintronic devices. As a model system for reversible voltage induced changes of magnetism by magnetoionic effects, we present several oxide/metal heterostructures polarized in an electrolyte. Room temperature magnetization of Fe-O/Fe layers can be changed by 64% when applying only a few volts in 1M KOH. In a next step, the bottom interface of the in-plane magnetized Fe layer is functionalized by an L10 FePt(001) underlayer exhibiting perpendicular magnetic anisotropy. During subsequent electrocrystallization and electrooxidation, well defined epitaxial Fe3O4/Fe/FePt heterostructures e...
One of the main strategies to control magnetism by voltage is the use of magnetostrictive-piezoelect...
This paper reports on the temperature evolution of local elastic interactions between ferromagnetic ...
Recently, the use of an electric field (E-field) to control the magnetic properties of thin magnetic...
Electric field control of magnetization and anisotropy in layered structures with perpendicular magn...
It is predicted that magnetic anisotropy of a thin magnetic film may be affected by the polarization...
The interfacial coupling between the switchable polarization and neighboring magnetic order makes fe...
Spintronic devices currently rely on magnetic switching or controlled motion of domain walls by an e...
We demonstrate unambiguous evidence of the electric field control of magnetic anisotropy in a wedge-...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
The magneto-ionic effect is a promising method to control the magnetic properties electrically. Char...
We identified and investigated some of the scientific and technically most challenging issues in thi...
The interaction between ferromagnetic and ferroelectric films, the magnetoelectric effect, is a fasc...
Magnetoelectric coupling in metal/oxide heterostructures has opened up the possibility of controllin...
Supplementary files for article: Superconductivity assisted change of the perpendicular magnetic ani...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
One of the main strategies to control magnetism by voltage is the use of magnetostrictive-piezoelect...
This paper reports on the temperature evolution of local elastic interactions between ferromagnetic ...
Recently, the use of an electric field (E-field) to control the magnetic properties of thin magnetic...
Electric field control of magnetization and anisotropy in layered structures with perpendicular magn...
It is predicted that magnetic anisotropy of a thin magnetic film may be affected by the polarization...
The interfacial coupling between the switchable polarization and neighboring magnetic order makes fe...
Spintronic devices currently rely on magnetic switching or controlled motion of domain walls by an e...
We demonstrate unambiguous evidence of the electric field control of magnetic anisotropy in a wedge-...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
The magneto-ionic effect is a promising method to control the magnetic properties electrically. Char...
We identified and investigated some of the scientific and technically most challenging issues in thi...
The interaction between ferromagnetic and ferroelectric films, the magnetoelectric effect, is a fasc...
Magnetoelectric coupling in metal/oxide heterostructures has opened up the possibility of controllin...
Supplementary files for article: Superconductivity assisted change of the perpendicular magnetic ani...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
One of the main strategies to control magnetism by voltage is the use of magnetostrictive-piezoelect...
This paper reports on the temperature evolution of local elastic interactions between ferromagnetic ...
Recently, the use of an electric field (E-field) to control the magnetic properties of thin magnetic...