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Finite Element Modeling of Charge- and Spin-Currents in Magnetoresistive Pillars With Current Crowding Effects

机译:具有电流拥挤效应的磁阻柱中电荷和自旋电流的有限元建模

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摘要

Charge- and spin-diffusion equations, taking into account spin-diffusion and spin-transfer torque, were numerically solved using a finite element method in complex noncollinear geometry. As an illustration, this approach was used to study the spin-dependent transport in a two-dimensional model giant magnetoresistance metallic pillar sandwiched between extended electrodes as is the case in magnetoresistive heads for hard disk drives. In this model system, the charge current crowding around the boundaries between the electrodes and the pillar has a quite significant influence on the spin current within the magnetoresistive pillar.
机译:考虑到自旋扩散和自旋传递扭矩,利用有限元方法在复杂的非共线几何中对电荷和自旋扩散方程进行了数值求解。作为说明,此方法用于研究二维模型的巨型磁阻金属柱中的自旋相关输运,该柱夹在延伸的电极之间,硬盘驱动器的磁阻头就是这种情况。在该模型系统中,电荷电流拥挤在电极和支柱之间的边界周围,对磁阻支柱内的自旋电流有相当大的影响。

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