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Electrical Detection of DC Spin Current Propagation Through an Epitaxial Antiferromagnetic NiO Layer

机译:通过外延反铁磁体层的直流旋转电流传播的电气检测

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摘要

A method for detecting dc spin current propagation through an epitaxial antiferromagnetic (AFM) NiO layer is presented. Spin current is generated by spin pumping from an adjoining ferromagnetic (FM) layer and detected in a non-magnetic metallic layer by the inverse spin Hall effect. Comparison is made with a YIG/Pt bilayer, where only the Pt layer is electrically conducting, but for which spin Hall magnetoresistance makes an additional contribution to the measured signal. The signal obtained from the multilayered stack containing the AFM NiO layer is found to contain additional contributions due to anisotropic magnetoresistance. By exciting the sample with out-of-plane rf magnetic field and making measurements with a static field applied at different orientations within the plane of the sample, a signal associated with the dc spin current may be identified.
机译:提出了一种通过外延反铁磁性(AFM)NIO层的DC旋转电流传播的方法。通过旋转邻接铁磁性(FM)层并通过逆旋转霍尔效应旋转并在非磁性金属层中检测到旋转电流。使用YIG / PT双层进行比较,其中仅PT层是导电的,但是旋转霍尔磁阻对测量信号进行了额外的贡献。发现从包含AFM NIO层的多层堆叠获得的信号包含由于各向异性磁阻引起的额外贡献。通过使用平面外RF磁场激励样品并用在样品平面内以不同取向施加的静态场进行测量,可以识别与DC旋转电流相关的信号。

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