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Dipolar field-induced spin-wave waveguides for spin-torque magnonics
57
Citations
24
References
2015
Year
EngineeringMagnetic ResonanceMagnonicsSpintronic MaterialSpin WavesSpin DynamicSpin PhenomenonMagnetismMagnetohydrodynamicsSpin TransportPhotonicsPhysicsNano-oscillatorsMagnonic DevicesQuantum MagnetismSpintronicsNatural SciencesApplied PhysicsMagnonic WaveguidesSpin-torque MagnonicsMagnetic Device
We use high-resolution imaging to study the propagation of spin waves in magnonic waveguides created by the dipolar magnetic fields of microscopic patterns. We show that the characteristics of spin-wave modes in such waveguides depend strongly on their geometry. In particular, by tuning the geometrical parameters, field-induced confinement for both the edge and the center waveguide modes can be achieved, enabling control over the spin-wave transmission characteristics. The studied waveguiding structures are particularly promising for the implementation of magnonic devices utilizing spin-torque phenomena.
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