凝聚态物理
反铁磁性
磁性
霍尔效应
失真(音乐)
磁电阻
各向异性
拓扑(电路)
物理
材料科学
磁场
光学
量子力学
组合数学
光电子学
CMOS芯片
放大器
数学
作者
Linxuan Song,Bei Ding,Hang Li,Senhao Lv,Yuan Yao,Dongliang Zhao,Jun He,Wenhong Wang
摘要
The structure, magnetism, and topological transport properties of noncollinear antiferromagnetic hexagonal Mn3Ga magnets have been investigated. Structural analyses reveal that as the temperature decreases, hexagonal Mn3Ga shows a Jahn–Teller-like distortion at T = 120 K. The distortion results in the anisotropy decreasing with decreasing temperature. Positive magnetoresistance is observed, and humps occur at low magnetic fields, which can be understood by breaking the ordered antiferromagnetic configuration by an external field and the spin-dependent scattering mechanism, respectively. In addition, a large topological Hall effect is observed in Mn3Ga, which originates from the noncollinear triangular magnetic configuration with slight distortion. The results are discussed in the context of coupling with noncollinear spin canting, lattice distortion, and topological transport.
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