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Sign reversal of the anomalous Hall effect in antiperovskite (110)-oriented Mn3.19Ga0.81N1-delta film

机译:反钙钛矿(110)取向的Mn3.19Ga0.81N1-δ薄膜中异常霍尔效应的符号逆转

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摘要

Antiperovskite compounds with abundant magnetic phase transitions provide an ideal platform for exploring nontrivial magnetotransport responses. In this study, the anomalous Hall effect (AHE) in an antiperovskite (110)-oriented Mn3.19Ga0.81N1-delta film up to room temperature was observed, and an unusual sign reversal was detected in the Hall measurements. The AHE reversal suggests that the carrier reversal corresponds to a magnetic transition from a ferrimagnetic order to noncollinear antiferromagnetic order at about 240 K. Analysis of the scaling relation of AHE indicates that the sign reversal originates from the transition from the skew scattering dominated AHE to the intrinsic mechanism dominated AHE. These findings will inspire effective control of the magnetic configuration and innovative applications for manipulating carrier transport in spintronic memory devices based on antiperovskite films. Published under an exclusive license by AIP Publishing.
机译:具有丰富磁相变的反钙钛矿化合物为探索非平凡的磁输运响应提供了理想的平台。在这项研究中,在室温下观察到反钙钛矿(110)取向的Mn3.19Ga0.81N1-δ薄膜中的异常霍尔效应(AHE),并在霍尔测量中检测到异常的符号反转。AHE反转表明,在大约240 K时,载流子反转对应于从亚铁磁级到非共线反铁磁级的磁跃迁,对AHE标度关系的分析表明,符号反转源于从偏散射主导的AHE到本征机制主导的AHE的转变。这些发现将激发对磁构型的有效控制以及基于反钙钛矿薄膜的自旋电子存储器件中操纵载流子传输的创新应用。在 AIP Publishing 的独家许可下发布。

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