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Spin currents and magnetoresistance of graphene-based magnetic junctions

机译:石墨烯基磁性结的自旋电流和磁阻

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Using the tight-binding approximation and the nonequilibrium Greens function approach, we investigate the coherent spin-dependent transport in planar magnetic junctions consisting of two ferromagnetic (FM) electrodes separated by a graphene flake (GF) with zigzag or armchair interfaces. It is found that the electron conduction strongly depends on the geometry of contact between the GF and the FM electrodes. In the case of zigzag interfaces, the junction demonstrates a spin-valve effect with high magnetoresistance (MR) ratios and shows negative differential resistance features for a single spin channel at positive gate voltage. In the case of armchair interfaces, the current-voltage characteristics behave linearly at low bias voltages and hence, both spin channels are in on state with low MR ratios.
机译:使用紧密结合近似和非平衡格林函数方法,我们研究了平面磁结中的自旋依赖性运输,该平面磁结由两个铁磁(FM)电极组成,两个电极被石墨薄片(GF)隔开,带有锯齿形或扶手椅形界面。已经发现,电子传导强烈地取决于GF和FM电极之间的接触几何形状。在之字形界面的情况下,结表现出具有高磁阻(MR)比的自旋阀效应,并在正栅极电压下显示出单个自旋沟道的负微分电阻特性。在扶手椅式接口的情况下,电流-电压特性在低偏置电压下呈线性表现,因此,两个自旋通道均处于具有低MR比的导通状态。

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