Publication | Closed Access
Spin-polarized quasiparticle injection devices using Au/YBa2Cu3O7/LaAlO3/Nd0.7Sr0.3MnO3 heterostructures
161
Citations
16
References
1997
Year
Superconducting MaterialEngineeringUnpolarized QuasiparticlesQuasiparticle Injection EffectsSpintronic MaterialMagnetoresistanceMagnetismSuperconductivityQuantum MaterialsHigh Tc SuperconductorsSuperconducting DevicesMaterials ScienceHigh-tc SuperconductivityPhysicsOxide ElectronicsNonmagnetic Metallic GateAu/yba2cu3o7/laalo3/nd0.7sr0.3mno3 HeterostructuresSpintronicsApplied PhysicsThin Films
Oxide heterostructures were used for studies of quasiparticle injection effects in high-Tc superconducting thin films. The effect of injection of spin polarized quasiparticles from a ferromagnetic gate layer was compared to that of unpolarized quasiparticles from a nonmagnetic metallic gate. Transport measurements of the superconducting layer showed strong suppression in the supercurrent by the injection of spin-polarized quasiparticles, and a current gain of as large as five was attained. This is 10 to 30 times larger than the gain of unpolarized injection devices. Such large effects could be useful in a variety of active high-Tc superconductor/colossal magnetoresistance heterostructure based devices.
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