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Spin-dependent Seebeck coefficients of Ni80Fe20 and Co in nanopillar spin valves

机译:纳米柱自旋阀中Ni80Fe20和Co的自旋依赖性塞贝克系数

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摘要

We have experimentally determined the spin-dependent Seebeck coefficient of permalloy (Ni80Fe20) and cobalt (Co) using nanopillar spin valve devices, a stack of two ferromagnetic layers separated by a nonmagnetic layer. The devices were specifically designed to separate heat-related effects from charge-related effects. A heat current, with no accompanying charge current, through the nanopillar spin valve leads to a thermovoltage proportional to the spin-dependent Seebeck coefficient SS = S↑ − S↓ of the ferromagnet, where S↑ and S↓ are the Seebeck coefficient for spin-up and spin-down electrons. By using a three-dimensional finite-element model based on spin-dependent thermoelectric theory, whose input material parameters were measured in separate devices, we were able to accurately determine a spin-dependent Seebeck coefficient of −1.8 μV K−1 and −4.5 μV K−1 for cobalt and permalloy, respectively, corresponding to a Seebeck coefficient polarization PS = SS/SF of 0.08 and 0.25, where SF is the Seebeck coefficient of the ferromagnet. The results are in agreement with earlier theoretical work in Co/Cu multilayers and spin-dependent Seebeck and spin-dependent Peltier measurements in Ni80Fe20/Cu spin valve structures.
机译:我们已经使用纳米柱自旋阀装置通过实验确定了坡莫合金(Ni80Fe20)和钴(Co)的自旋依赖性塞贝克系数,这是由非磁性层分隔的两个铁磁层的堆叠。该器件经过专门设计,可将热相关效应与电荷相关效应区分开。流过纳米柱自旋阀的热电流(没有伴随的充电电流)导致与铁磁体自旋相关的塞贝克系数SS = S↑− S↓成比例的热电压,其中S↑和S↓是自旋的塞贝克系数上下电子。通过使用基于自旋相关热电理论的三维有限元模型,其输入材料参数在单独的设备中进行测量,我们能够准确地确定自旋相关的塞贝克系数-1.8μVK-1和-4.5钴和坡莫合金的μVK-1分别对应于塞贝克系数极化PS = SS / SF为0.08和0.25,其中SF为铁磁体的塞贝克系数。结果与先前在Co / Cu多层中的理论工作以及Ni80Fe20 / Cu自旋阀结构中自旋相关的塞贝克和自旋相关的珀耳帖测量结果相符。

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  • 年度 2012
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