Electric field control of magnetic properties and magneto-transport in composite multiferroics
arXiv:1404.6671 · doi:10.1088/0953-8984/27/18/186001
Abstract
We study magnetic state and electron transport properties of composite multiferroic system consisting of a granular ferromagnetic thin film placed above the ferroelectric substrate. Ferroelectricity and magnetism in this case are coupled by the long-range Coulomb interaction. We show that magnetic state and magneto-transport strongly depend on temperature, external electric field, and electric polarization of the substrate. Ferromagnetic order exists at finite temperature range around ferroelectric Curie point. Outside the region the film is in the superparamagnetic state. We demonstrate that magnetic phase transition can be driven by an electric field and magneto-resistance effect has two maxima associated with two magnetic phase transitions appearing in the vicinity of the ferroelectric phase transition. We show that positions of these maxima can be shifted by the external electric field and that the magnitude of the magneto-resistance effect depends on the mutual orientation of external electric field and polarization of the substrate.
22 pages 11 figures
References in corpus (7)
- Spin current and magneto-electric effect in non-collinear magnets
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Surface Magnetoelectric Effect in Ferromagnetic Metal Films
- Robust isothermal electric switching of interface magnetization: A route to voltage-controlled spintronics
- Electric field control of exchange bias in multiferroic epitaxial heterostructures
- Dielectric sensing by charging energy modulation in a nano-granular metal
- Proximity coupling of granular film with ferroelectric substrate and giant electro-resistance effect
Cited by in corpus (4)
- Neutron Scattering Studies of the Ferroelectric Distortion and Spin Dynamics in the Type-1 Multiferroic Perovskite Sr0.56Ba0.44MnO3
- Competition of the Coulomb and hopping based exchange interactions in granular magnets
- Magneto-electric effect in doped magnetic ferroelectrics
- Influence of image forces on the interlayer exchange interaction in magnetic tunnel junctions with ferroelectric barrier