Publication | Open Access
Spin orbit torque switching of synthetic Co/Ir/Co trilayers with perpendicular anisotropy and tunable interlayer coupling
22
Citations
26
References
2020
Year
Spin TorqueEngineeringMagnetic ResonanceSynthetic Co/ir/co TrilayersSpintronic MaterialSpin DynamicSpin PhenomenonPerpendicular AnisotropyMagnetoresistanceMagnetismNanoelectronicsInterlayer Coupling StrengthTunable InterlayerSpin Orbit TorqueMaterials ScienceElectrical EngineeringPhysicsMagnetic MaterialSpintronicsFerromagnetismSot SwitchingSpin-orbit TorqueNatural SciencesCondensed Matter PhysicsApplied PhysicsMagnetic Device
Spin orbit torque (SOT) has attracted much attention as an energy efficient electrical method to switch the magnetization in single magnetic layer with both in-plane and perpendicular anisotropy. Here, we report SOT switching of synthetic antiferromagnetic and ferrimagnetic Co/Ir/Co trilayers, where the net magnetization and the interlayer coupling strength are highly controllable. A weak external field dependence of the SOT switching was observed due to the robust domain wall structure in the trilayer. The switching current density was observed to scale inversely with the net magnetization. For trilayers with the same net magnetization, switching current is independent of the layer order because switching in the thicker Co layer dominates. In both ferromagnetic and antiferromagetic regimes, the switching current reflects the interlayer coupling strength.
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