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Interface-driven unusual anomalous Hall effect in MnxGa/Pt bilayers: No correlation with chiral spin structures

Authors :
Meng, Kangkang
Zhu, Lijun
Jin, Zhenhu
Liu, Enke
Zhao, Xupeng
Malik, Iftikhar Ahmed
Fu, Zhenguo
Wu, Yong
Miao, Jun
Xu, Xiaoguang
Zhang, Jinxing
Zhao, Jianhua
Jiang, Yong
Source :
Phys. Rev. B 100, 184410 (2019)
Publication Year :
2019

Abstract

The effects of spin-orbit coupling and symmetry breaking at the interface between a ferromagnet and heavy metal are particularly important for spin-based information storage and computation. Recent discoveries suggest they can create chiral spin structures (e.g. skyrmions), which have often been identified through the appearance of the bump/dip features of Hall signals, the so-called topological Hall effect (THE). In this work, however, we have present an unusual anomalous Hall effect (UAHE) in MnxGa/Pt bilayers and demonstrated that the features extremely similar to THE can be generated without involving any chiral spin structures. The low temperature magnetic force microscopy has been used to explore the magnetic field-dependent behavior of spin structures, and the UAHE as a function of magnetic field does not peak near the maximal density of magnetic bubbles. The results unambiguously evidence that the UAHE in MnxGa/Pt bilayers shows no correlation with chiral spin structures but is driven by the modified interfacial properties. The bump/dip features of Hall signals cannot be taken as an unambiguous signature for the emergence of chiral spin structures, and a wealth of underlying and interesting physics need explored.

Details

Database :
arXiv
Journal :
Phys. Rev. B 100, 184410 (2019)
Publication Type :
Report
Accession number :
edsarx.1901.05646
Document Type :
Working Paper
Full Text :
https://doi.org/10.1103/PhysRevB.100.184410