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首页> 外文期刊>Journal of nanomaterials >Spin current switching and spin-filtering effects in Mn-doped boron nitride nanoribbons
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Spin current switching and spin-filtering effects in Mn-doped boron nitride nanoribbons

机译:Mn掺杂氮化硼纳米带的自旋电流切换和自旋滤波效应

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摘要

The spin transport properties are investigated by means of the first principle approach for boron nitride nanoribbons with one or two substitutional Mn impurities, connected to graphene electrodes. The spin current polarization is evaluated using the nonequilibrium Green's function formalism for each structure and bias. The structure with one Mn impurity reveals a transfer characteristics suitable for a spin current switch. In the case of two Mn impurities, the system behaves as an efficient spin-filter device, independent on the ferromagnetic or antiferromagnetic configurations of the magnetic impurities. The experimental availability of the building blocks as well as the magnitudes of the obtained spin current polarizations indicates a strong potential of the analyzed structures for future spintronic devices.
机译:通过第一种原理方法研究了具有一个或两个取代Mn杂质并连接到石墨烯电极的氮化硼纳米带的自旋输运性能。对于每个结构和偏置,使用非平衡格林函数形式来评估自旋电流极化。具有一种Mn杂质的结构显示出适用于自旋电流开关的传递特性。在存在两种Mn杂质的情况下,该系统的行为就像一个有效的自旋过滤器,与磁性杂质的铁磁或反铁磁结构无关。积木的实验可用性以及所获得的自旋电流极化的幅度表明,所分析的结构对于未来的自旋电子器件具有强大的潜力。

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