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外延 L10 有序铁磁体 FePd 和 FePt 中反常霍尔效应的本征和外禀机制之间由自旋轨道强度驱动的交叉。

Spin-orbit strength driven crossover between intrinsic and extrinsic mechanisms of the anomalous hall effect in the epitaxial L1{0}-ordered ferromagnets FePd and FePt.

机构信息

School of Physics and Astronomy, University of Leeds, Leeds, LS2 9JT, United Kingdom.

出版信息

Phys Rev Lett. 2010 Feb 19;104(7):076402. doi: 10.1103/PhysRevLett.104.076402.

Abstract

We determine the composition of intrinsic as well as extrinsic contributions to the anomalous Hall effect (AHE) in the isoelectronic L1_{0} FePd and FePt alloys. We show that the AHE signal in our 30 nm thick epitaxially deposited films of FePd is mainly due to an extrinsic side jump, while in the epitaxial FePt films of the same thickness and degree of order the intrinsic contribution is dominating over the extrinsic mechanisms of the AHE. We relate this crossover to the difference in spin-orbit strength of Pt and Pd atoms and suggest that this phenomenon can be used for tuning the origins of the AHE in complex alloys.

摘要

我们确定了等电子 L1_{0} FePd 和 FePt 合金中反常霍尔效应 (AHE) 的本征和外禀贡献的组成。我们表明,我们在 30nm 厚外延沉积的 FePd 薄膜中的 AHE 信号主要归因于外禀侧跃,而在相同厚度和有序度的外延 FePt 薄膜中,本征贡献超过了 AHE 的外禀机制。我们将这种转变与 Pt 和 Pd 原子的自旋轨道强度的差异联系起来,并提出这种现象可用于调节复杂合金中 AHE 的起源。

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