Spin Hall magnetoresistance (SMR) has been investigated in Pt/NiO/YIG structures in a wide range of temperature and NiO thickness. The SMR shows a negative sign below a temperature which increases with the NiO thickness. This is contrary to a conventional SMR theory picture applied to Pt/YIG bilayer which always predicts a positive SMR. The negative SMR is found to persist even when NiO blocks the spin transmission between Pt and YIG, indicating it is governed by the spin current response of NiO layer. We explain the negative SMR by the NiO 'spin-flop' coupled with YIG, which can be overridden at higher temperatures by positive SMR contribution from YIG. This highlights the role of magnetic structure in antiferromagnets for transport of pure spin current in multilayers.
翻译:Pt/NiO/YIG在温度和NiO厚度的广度下对Pt/NiO/YIG结构的旋臂磁力进行了调查,发现在温度下有一个负值迹象,这与适用于Pt/YIG双层的常规的SMR理论图象相反,该图象总是预测SMR呈阳性。即使在NiO阻断Pt/NiO/YIG之间的旋转传输,表明它受NiO层当前旋转反应的制约时,SMR也存在负值,我们解释了NiO的“pin-flop”和YIG的负值SMR和负值,由于YIG的正面SMR贡献,这些负值在较高的温度下可能被高温压过。这凸显了磁性结构在抗发酵磁网中用于在多层中运输纯流流的作用。