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Spin polarization of two-dimensional electron gas in hybrid ferromagnetic/semiconductor nanostructures

机译:铁磁/半导体混合纳米结构中二维电子气的自旋极化

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摘要

We present a theoretical study on the spin-dependent transport of electrons in hybrid ferromagnetic/semiconductor nanosystem under an applied bias voltage. Experimentally, this kind of nanosystem can be realized by depositing a magnetized ferromagnetic stripe with arbitrary magnetization direction on the surface of a semiconductor heterostructure. It is shown that large spin-polarized current can be achieved in such a nanosystem. It is also shown that the spin polarity of the electron transport can be switched by adjusting the applied bias voltage. These interesting properties may provide an alternative scheme to realize spin injection into semiconductors, and such a nanosystem may be used as a tunable spin-filter by bias voltage. (c) 2006 Elsevier Ltd. All rights reserved.
机译:我们提出了在施加偏置电压的情况下电子在铁磁/半导体混合纳米系统中电子的自旋依赖输运的理论研究。实验上,可以通过在半导体异质结构的表面上沉积具有任意磁化方向的磁化铁磁条来实现这种纳米系统。结果表明,在这种纳米系统中可以实现大的自旋极化电流。还显示出可以通过调节施加的偏压来切换电子传输的自旋极性。这些有趣的特性可以提供实现自旋注入半导体的替代方案,并且这种纳米系统可以通过偏置电压用作可调自旋滤波器。 (c)2006 Elsevier Ltd.保留所有权利。

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