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Observation of anomalous Hall effect in a non-magnetic two-dimensional electron system

机译:非磁性二维电子系统中霍尔效应的异常观测

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摘要

Anomalous Hall effect, a manifestation of Hall effect occurring in systems without time-reversal symmetry, has been mostly observed in ferromagnetically ordered materials. However, its realization in high-mobility two-dimensional electron system remains elusive, as the incorporation of magnetic moments deteriorates the device performance compared to non-doped structure. Here we observe systematic emergence of anomalous Hall effect in various MgZnO/ZnO heterostructures that exhibit quantum Hall effect. At low temperatures, our nominally non-magnetic heterostructures display an anomalous Hall effect response similar to that of a clean ferromagnetic metal, while keeping a large anomalous Hall effect angle θAHE≈20°. Such a behaviour is consistent with Giovannini–Kondo model in which the anomalous Hall effect arises from the skew scattering of electrons by localized paramagnetic centres. Our study unveils a new aspect of many-body interactions in two-dimensional electron systems and shows how the anomalous Hall effect can emerge in a non-magnetic system.
机译:霍尔效应异常是在没有时间反转对称性的系统中发生的霍尔效应的一种表现,大多数情况下是在铁磁有序材料中观察到的。然而,由于与非掺杂结构相比,磁矩的引入降低了器件性能,因此在高迁移率二维电子系统中的实现仍然难以实现。在这里,我们观察到表现出量子霍尔效应的各种MgZnO / ZnO异质结构中异常霍尔效应的系统出现。在低温下,我们名义上的非磁性异质结构表现出类似于干净铁磁金属的异常霍尔效应响应,同时保持较大的异常霍尔效应角θAHE≈20°。这种行为与Giovannini-Kondo模型相一致,在该模型中,异常霍尔效应起因于局部顺磁中心对电子的偏斜散射。我们的研究揭示了二维电子系统中多体相互作用的新方面,并展示了异常霍尔效应如何在非磁性系统中出现。

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