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纯铁和稀铁合金纳米线网络中扩散和磁子拖拽热电压的相互作用。

Interplay between diffusion and magnon-drag thermopower in pure iron and dilute iron alloy nanowire networks.

机构信息

Institute of Condensed Matter and Nanosciences, Université catholique de Louvain, Place Croix du Sud 1, 1348, Louvain-la-Neuve, Belgium.

出版信息

Sci Rep. 2023 Jun 7;13(1):9280. doi: 10.1038/s41598-023-36391-y.

Abstract

Results of measurements on the thermoelectric power of 45 nm diameter interconnected nanowire networks consisting of pure Fe, dilute FeCu and FeCr alloys and Fe/Cu multilayers are presented. The thermopower values of Fe nanowires are very close to those found in bulk materials, at all temperatures studied between 70 and 320 K. For pure Fe, the diffusion thermopower at room temperature, estimated to be around - 15 [Formula: see text]V/K from our data, is largely supplanted by the estimated positive magnon-drag contribution, close to 30 [Formula: see text]V/K. In dilute FeCu and FeCr alloys, the magnon-drag thermopower is found to decrease with increasing impurity concentration to about 10 [Formula: see text]V/K at 10[Formula: see text] impurity content. While the diffusion thermopower is almost unchanged in FeCu nanowire networks compared to pure Fe, it is strongly reduced in FeCr nanowires due to pronounced changes in the density of states of the majority spin electrons. Measurements performed on Fe(7 nm)/Cu(10 nm) multilayer nanowires indicate a dominant contribution of charge carrier diffusion to the thermopower, as previously found in other magnetic multilayers, and a cancellation of the magnon-drag effect. The magneto-resistance and magneto-Seebeck effects measured on Fe/Cu multilayer nanowires allow the estimation of the spin-dependent Seebeck coefficient in Fe, which is about - 7.6 [Formula: see text]V/K at ambient temperature.

摘要

本文呈现了对由纯 Fe、稀 FeCu 和 FeCr 合金以及 Fe/Cu 多层膜组成的 45nm 直径互联纳米线网络的热电势进行测量的结果。在所有研究温度 70 到 320K 之间,Fe 纳米线的热电势值非常接近体材料中发现的值。对于纯 Fe,室温下的扩散热电势估计在-15[Formula: see text]V/K 左右,这主要被估计的正磁子拖拽贡献所取代,接近 30[Formula: see text]V/K。在稀 FeCu 和 FeCr 合金中,发现磁子拖拽热电势随杂质浓度的增加而降低,在 10[Formula: see text]杂质含量时约为 10[Formula: see text]V/K。与纯 Fe 相比,FeCu 纳米线网络中的扩散热电势几乎不变,但在 FeCr 纳米线中却大大降低,这是由于多数自旋电子态密度的显著变化所致。对 Fe(7nm)/Cu(10nm)多层膜纳米线的测量表明,热功率主要由载流子扩散贡献,这与其他磁性多层膜中的发现一致,并且磁子拖拽效应被抵消。在 Fe/Cu 多层膜纳米线中测量的磁电阻和磁 Seebeck 效应允许估计 Fe 中的自旋相关 Seebeck 系数,其在环境温度下约为-7.6[Formula: see text]V/K。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b28/10247722/59f7ac6f6bc3/41598_2023_36391_Fig1_HTML.jpg

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