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Spintronics with NSN junction of one-dimensional quantum wires: A study of pure spin current and magnetoresistance

机译:具有一维量子线的NSN结的自旋电子学:纯自旋电流和磁阻的研究

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摘要

We demonstrate possible scenarios for production of pure spin current and large tunnelling magnetoresistance ratios from elastic co-tunnelling and crossed Andreev reflection across a superconducting junction comprising of normal-metal-superconductor-normal-metal, where, the normal metal is a one-dimensional interacting quantum wire. We show that there are fixed points in the theory which correspond to the case of pure spin current. We analyze the influence of electron-electron interaction and see how it stabilizes or de-stabilizes the production of pure spin current. These fixed points can be of direct experimental relevance for spintronics application of normal-metal-superconductor-normal-metal junctions of one-dimensional quantum wires. We also calculate the power law temperature dependence of the crossed Andreev reflection enhanced tunnelling magnetoresistance ratio for the normal-metal-superconductor-normal-metal junction.
机译:我们演示了可能发生的情况,这些情况可能来自弹性共隧穿和跨越Andreev反射的纯自旋电流和较大的隧穿磁阻比,该反射跨越了由正常金属-超导体-正常金属组成的超导结,其中,正常金属是一维的相互作用的量子线。我们证明理论上有一些固定点与纯自旋电流的情况相对应。我们分析了电子-电子相互作用的影响,并观察它如何稳定或破坏稳定的纯自旋电流的产生。这些固定点可能与一维量子线的法向金属-超导体-法向金属结的自旋电子学应用具有直接的实验意义。我们还计算了法线-超导体-法线-金属结的交叉Andreev反射增强隧穿磁阻比的幂律温度依赖性。

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