论文标题

诱导Zrte5和Hfte5薄片中巨大的dirac费物的异常大厅效应

Induced anomalous Hall effect of massive Dirac fermions in ZrTe5 and HfTe5 thin flakes

论文作者

Liu, Yanzhao, Wang, Huichao, Fu, Huixia, Ge, Jun, Li, Yanan, Xi, Chuanying, Zhang, Jinglei, Yan, Jiaqiang, Mandrus, David, Yan, Binghai, Wang, Jian

论文摘要

关于异常大厅效应(AHE)的研究已经持续了一个世纪,以清除潜在的物理机制。通常,AHE出现在磁性材料中,其中与散射效应和与浆果曲率相关的内在贡献相关的外部过程至关重要。最近,在非磁性拓扑材料中观察到了AHE,归因于Weyl点的存在。但是,即使在大磁场中,Weyl点的情况也会导致不饱和的AHE,并与实验中几个Tesla(T)中AHE的饱和相矛盾。在这项工作中,我们研究了Zrte5和Hfte5薄片在静态超高磁场中的大厅效应,最高33吨。我们发现AHE饱和到55(70)ohm^-1*cm^-1,用于Zrte5(Hfte5)(Hfte5)(Hfte5)上方的薄片。 Weyl点可以负责非磁性拓扑材料ZRTE5和HFTE5薄片中的AHE。该模型可以识别我们的细片样品是弱拓扑绝缘子,并作为探测拓扑材料中带结构拓扑的新工具。

Researches on anomalous Hall effect (AHE) have been lasting for a century to make clear the underlying physical mechanism. Generally, the AHE appears in magnetic materials, in which extrinsic process related to scattering effects and intrinsic contribution connected with Berry curvature are crucial. Recently, AHE has been counterintuitively observed in non-magnetic topological materials and attributed to the existence of Weyl points. However, the Weyl point scenario would lead to unsaturated AHE even in large magnetic fields and contradicts the saturation of AHE in several tesla (T) in experiments. In this work, we investigate the Hall effect of ZrTe5 and HfTe5 thin flakes in static ultrahigh magnetic fields up to 33 T. We find the AHE saturates to 55 (70) Ohm^-1*cm^-1 for ZrTe5 (HfTe5) thin flakes above ~ 10 T. Combining detailed magnetotransport experiments and Berry curvature calculations, we clarify that the splitting of massive Dirac bands without Weyl points can be responsible for AHE in non-magnetic topological materials ZrTe5 and HfTe5 thin flakes. This model can identify our thin flake samples to be weak topological insulators and serve as a new tool to probe the band structure topology in topological materials.

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