首页> 外文会议>8th European Magnetic Materials and Applications Conference, Jun 7-10, 2000, Kyiv, Ukraine >Spin-Dependent Transport between Two Ferromagnets Separated by a Nonmagnetic Metallic Layer in the Effective-Mass Approximation
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Spin-Dependent Transport between Two Ferromagnets Separated by a Nonmagnetic Metallic Layer in the Effective-Mass Approximation

机译:在有效质量近似中由非磁性金属层分隔的两个铁磁体之间的自旋相关输运

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摘要

A theory describing a spin-dependent transport of electrons through a thin metallic nonmagnetic layer sandwiched between two ferromagnets is developed in the ballistic regime and current- perpendi-cular-to-plane (CPP) geometry. The theory is based on the Landauer formalism and the transmission amplitude for the electron Bloch waves with an arbitrary dispersion law travelling from one ferro-magnet to another through a nonmagnetic spacer. The semi-classical (nonoscillating) part of the magnetoresistance (MR) ratio is considered in the effective-mass approximation for the sandwich band structure. The parameters defining the value of the MR ratio are obtained. It is shown that the electron specular scattering on the interfaces may be the cause for the giant magnetoresistance (CPP GMR) effect. The influence of the electronic structure on the MR ratio has been numerically studied in the effective-mass approximation.
机译:在弹道状态和电流垂直于平面(CPP)的几何形状中,发展了一种描述电子通过自旋依赖的传输通过夹在两个铁磁体之间的薄金属非磁性层的理论。该理论基于Landauer形式主义和具有任意色散定律的电子布洛赫波的传输振幅,该布卢克波从一个铁磁体通过一个非磁性垫片传播到另一个。在三明治结构的有效质量近似中,考虑了磁阻(MR)比的半经典(非振荡)部分。获得定义MR比值的参数。结果表明,界面上的电子镜面散射可能是引起巨磁阻(CPP GMR)效应的原因。在有效质量近似中,已经对电子结构对MR比的影响进行了数值研究。

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