论文标题

分层的Ferrimagnet MNSB2TE4中的异常大厅效应4

Anomalous Hall Effect in Layered Ferrimagnet MnSb2Te4

论文作者

Shi, Gang, Zhang, Mingjie, Yan, Dayu, Feng, Honglei, Yang, Meng, Shi, Youguo, Li, Yongqing

论文摘要

我们报告了MNSB2TE4的低温电子传输性能,该特性是铁磁性Weyl半含量的候选者。长磁磁性表现为在异常大厅电阻中的几乎方形的磁滞回路,并且在磁性震荡中急剧跳跃。在低于4 K的温度下,纵向电阻的温度依赖性出现了LNT型上流,这可以归因于电子 - 电子相互作用(EEI),因为弱定位可以被磁势依赖的温度依赖性排除。尽管异常的大厅电阻在相同的温度范围内表现出相似的LNT型上流,但在异常的霍尔电导率中没有这种校正。我们的工作表明,MNSB2TE4微叶片为测试EEI校正理论的理想系统提供了对异常霍尔效应的理论。

We report on low-temperature electron transport properties of MnSb2Te4, a candidate of ferrimagnetic Weyl semimetal. Long -range magnetic order is manifested as a nearly square-shaped hysteresis loop in the anomalous Hall resistance, as well as sharp jumps in the magnetoresistance. At temperatures below 4 K, a lnT-type upturn appears in the temperature dependence of longitudinal resistance, which can be attributed to the electron-electron interaction (EEI), since the weak localization can be excluded by the temperature dependence of magnetoresistance. Although the anomalous Hall resistance exhibits a similar lnT-type upturn in the same temperature range, such correction is absent in the anomalous Hall conductivity. Our work demonstrates that MnSb2Te4 microflakes provide an ideal system to test the theory of EEI correction to the anomalous Hall effect.

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