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Writing and reading antiferromagnetic Mn 2 Au by Néel spin-orbit torques and large anisotropic magnetoresistance

机译:利用Néel自旋轨道转矩和大的各向异性磁阻来写入和读取反铁磁Mn 2 Au

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Using antiferromagnets as active elements in spintronics requires the ability to manipulate and read-out the Néel vector orientation. Here we demonstrate for Mn2Au, a good conductor with a high ordering temperature suitable for applications, reproducible switching using current pulse generated bulk spin-orbit torques and read-out by magnetoresistance measurements. Reversible and consistent changes of the longitudinal resistance and planar Hall voltage of star-patterned epitaxial Mn2Au(001) thin films were generated by pulse current densities of ?107?A/cm2. The symmetry of the torques agrees with theoretical predictions and a large read-out magnetoresistance effect of more than ?6% is reproduced by ab initio transport calculations.
机译:在自旋电子学中使用反铁磁体作为有源元件需要能够操纵和读出Néel矢量方向。在这里,我们为Mn2Au演示了一种良好的导体,该导体具有适用于应用的高有序温度,使用电流脉冲生成的大自旋轨道转矩可重复切换以及通过磁阻测量进行读出。星型外延Mn2Au(001)薄膜的纵向电阻和平面霍尔电压的可逆一致变化是由脉冲电流密度为?107?A / cm2产生的。扭矩的对称性与理论预测相符,并且从头算起的传输计算得出了大于6%的大读出磁阻效应。

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