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Voltage control of spin wave resonance in La0.5Sr0.5MnO3/PMN-PT (001) multiferroic heterostructures
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Citations
21
References
2017
Year
EngineeringSpin-charge ConversionSpin SystemsVoltage ControlMagnetic ResonanceMagnonicsSpintronic MaterialSpin WavesSpin DynamicMagnetic MaterialsSpin PhenomenonMagnetoresistanceMagnetismMultiferroicsSlc EffectMultiferroic HeterostructuresQuantum MaterialsElectric FieldSpin-orbit EffectsSpin-charge-orbit ConversionPhysicsQuantum MagnetismSpintronicsNatural SciencesApplied PhysicsCondensed Matter PhysicsCritical Angle
The voltage modulation in spin dynamics via the spin-lattice coupling (SLC) effect has been investigated in epitaxial La0.5Sr0.5MnO3/PMN-PT multiferroic heterostructures. The critical angle for the disappearance of the first exchange (FEX) spin wave has been observed around 67° experimentally and been shifted about 4° by applying an electric field (E-field). In particular, at the critical angle, the FEX spin wave can be switched “on” and “off” by voltages, showing great potential in realizing magnonic devices. Moreover, the FEX spin wave resonance shift of 187 Oe at 173 K has been realized by the voltage driven SLC effect, which is a little larger than piezostrain-induced ferromagnetic resonance shift of 169 Oe. The experimental results can be well-explained by the modified Puszkarski spin wave theory.
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