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首页> 外文期刊>Journal of Physics. Condensed Matter >Modeling anisotropic magnetoresistance in layered antiferromagnets
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Modeling anisotropic magnetoresistance in layered antiferromagnets

机译:层间反霉菌造型各向异性磁阻

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We have investigated the electronic transport and the anisotropic magnetoresistance in systems consisting of pairs of antiferromagnetically aligned layers separated by a non-magnetic layer, across which an antiferromagnetic coupling between the double layers is established. Calculations have been performed within the framework of the tight-binding model, taking into account the exchange coupling within the ferromagnetic layers and the Rashba spin-orbit interaction. Conductivities have been evaluated in the ballistic regime, based on Kubo formula. We have systematically studied the dependence of the conductivity and of the anisotropic magnetoresistance on several material and structural parameters, such as the orientation of the magnetic moments relative to the crystalline axis, band filling, out-of-plane hopping and spin-orbit parameter.
机译:我们已经研究了由由非磁性层分开的对反铁磁性对齐层组成的系统中的电子传输和各向异性磁阻,在此建立双层之间的反铁磁耦合。 在紧密结合模型的框架内进行了计算,考虑到铁磁层内的交换耦合和Rashba旋转轨道相互作用。 基于Kubo公式,在弹道制度中已经评估了电导率。 我们系统地研究了电导率和各向异性磁阻对几种材料和结构参数的依赖性,例如相对于晶体轴,带填充,平面外跳跃和旋转轨道参数的磁矩的取向。

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