Applied Physics Letters · 2010 · 20 citations · 19 references
Magnetic PropertiesEngineeringMagnetoelastic MaterialsMagnetic MaterialsMagnetoresistanceMagnetismMultiferroicsVinylidene FluorideFerroelectric ApplicationMagnetic Thin FilmsMaterials SciencePhysicsMagnetoelectric EffectsDomain WallsMagnetoelasticityMagnetic MaterialMagnetoelectric MaterialsFerromagnetismNatural SciencesIn-plane Strain GradientsApplied PhysicsThin FilmsFunctional Materials
Interactions between a ferromagnet, cobalt, and a ferroelectric copolymer, poly(vinylidene fluoride with trifluoroethylene) in thin film heterostructures result in a 5% change in the ferroelectric polarization on application of a perpendicular 6 kG magnetic field corresponding to a magnetoelectric coupling coefficient of α=5.45 V/cm Oe. The effect disappears on magnetic saturation, ruling out conventional strain coupling. A simple model posits that the ferroelectric film develops in-plane strain gradients, a consequence of the coupling to strain gradients present at the domain walls in the multidomain Co layer, resulting in the measured polarization change via the flexoelectric effect.
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Physical Properties of Crystals
Materials Today · 2007 · 7.8K citations · Full text
Magnetic control of ferroelectric polarization
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Multiferroic BaTiO <sub>3</sub> -CoFe <sub>2</sub> O <sub>4</sub> Nanostructures
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A. V. Bune, V. M. Fridkin, Stephen Ducharme et al. · Nature · 1998 · 812 citations
Materials Science, Multiferroics, Two-dimensional Ferroelectric Films +7