Journal of Applied Physics · 2013 · 47 citations · 27 references
EngineeringMechanical EngineeringMagnetic ResonanceMagnetoelastic MaterialsMagnetismMechanicsPiezoelectric MaterialMagnetic Thin FilmsMagnetic AnisotropyVoltage-induced Magnetic AnisotropyAnisotropic MaterialMaterials ScienceSolid MechanicsPiezoelectricityMagnetic MaterialMagnetic MediumFerroelasticsFlexible ElectronicsMicrofabricationApplied PhysicsPiezoelectric ActuationNi Thin FilmVoltage-induced Strain ControlThin FilmsMagnetic DeviceMechanics Of MaterialsPiezoelectric Actuator
Voltage-induced magnetic anisotropy has been quantitatively studied in polycrystalline Ni thin film deposited on flexible substrate using microstrip ferromagnetic resonance. This anisotropy is induced by a piezoelectric actuator on which the film/substrate system was glued. In our work, the control of the anisotropy through the applied elastic strains is facilitated by the compliant elastic behavior of the substrate. The in-plane strains in the film induced by the piezoelectric actuation have been measured by the digital image correlation technique. Non-linear variation of the resonance field as function of the applied voltage is found and well reproduced by taking into account the non linear and hysteretic variations of the induced in-plane strains as function of the applied voltage. Moreover, we show that initial uniaxial anisotropy attributed to compliant substrate curvature is fully compensated by the voltage induced anisotropy.
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Multiferroics: a magnetic twist for ferroelectricity
Sang‐Wook Cheong, Maxim Mostovoy · Nature Materials · 2007 · 4.5K citations · Full text
The Renaissance of Magnetoelectric Multiferroics
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Engineering, Spontaneous Magnetization, Magnetic Resonance +17
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S. I. Kiselev, Jack C. Sankey, I. N. Krivorotov et al. · Nature · 2003 · 2K citations · Full text