Spintronic devices currently rely on magnetic switching or controlled motion of domain walls by an external magnetic field or spin-polarized current. Achieving the same degree of magnetic controllability using an electric field has potential advantages including enhanced functionality and low power consumption. Here we report on an approach to electrically control local magnetic properties, including the writing and erasure of regular ferromagnetic domain patterns and the motion of magnetic domain walls, in CoFe-BaTiO3 heterostructures. Our method is based on recurrent strain transfer from ferroelastic domains in ferroelectric media to continuous magnetostrictive films with negligible magnetocrystalline anisotropy. Optical polarization micr...
Domain pattern transfer from ferroelectric to ferromagnetic materials is a critical step for the ele...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
Domain pattern transfer from ferroelectric to ferromagnetic materials is a critical step for the ele...
Spintronic devices currently rely on magnetic switching or controlled motion of domain walls by an e...
We report on the evolution of ferromagnetic domain walls during magnetization reversal in elasticall...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Magnetoelectric coupling in multiferroic heterostructures can produce large lateral modulations of m...
This paper reports on the temperature evolution of local elastic interactions between ferromagnetic ...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
In this thesis, strain-mediated coupling between magnetic films and ferroelectric BaTiO3 substrates ...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
We investigate magnetic domain wall (MDW) dynamics induced by applied electric fields in ferromagnet...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
Domain pattern transfer from ferroelectric to ferromagnetic materials is a critical step for the ele...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
Domain pattern transfer from ferroelectric to ferromagnetic materials is a critical step for the ele...
Spintronic devices currently rely on magnetic switching or controlled motion of domain walls by an e...
We report on the evolution of ferromagnetic domain walls during magnetization reversal in elasticall...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Magnetoelectric coupling in multiferroic heterostructures can produce large lateral modulations of m...
This paper reports on the temperature evolution of local elastic interactions between ferromagnetic ...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
In this thesis, strain-mediated coupling between magnetic films and ferroelectric BaTiO3 substrates ...
Control of magnetic domain-wall motion by electric fields has recently attracted scientific attentio...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
We investigate magnetic domain wall (MDW) dynamics induced by applied electric fields in ferromagnet...
San Diego, California, United StatesInternational audienceUntil now, spintronics devices have relied...
Domain pattern transfer from ferroelectric to ferromagnetic materials is a critical step for the ele...
Manipulation of magnetically ordered states by electrical means is a promising approach towards nove...
Domain pattern transfer from ferroelectric to ferromagnetic materials is a critical step for the ele...