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少层碲烯在强磁场下的量子输运与能带结构演化

Quantum Transport and Band Structure Evolution under High Magnetic Field in Few-Layer Tellurene.

作者信息

Qiu Gang, Wang Yixiu, Nie Yifan, Zheng Yongping, Cho Kyeongjae, Wu Wenzhuo, Ye Peide D

机构信息

School of Electrical and Computer Engineering , Purdue University , West Lafayette , Indiana 47907 , United States.

Birck Nanotechnology Center , Purdue University , West Lafayette , Indiana 47907 , United States.

出版信息

Nano Lett. 2018 Sep 12;18(9):5760-5767. doi: 10.1021/acs.nanolett.8b02368. Epub 2018 Aug 22.

Abstract

Quantum Hall effect (QHE) is a macroscopic manifestation of quantized states that only occurs in confined two-dimensional electron gas (2DEG) systems. Experimentally, QHE is hosted in high-mobility 2DEG with large external magnetic field at low temperature. Two-dimensional van der Waals materials, such as graphene and black phosphorus, are considered interesting material systems to study quantum transport because they could unveil unique host material properties due to the easy accessibility of monolayer or few-layer thin films at the 2D quantum limit. For the first time, we report direct observation of QHE in a novel low-dimensional material system, tellurene. High-quality 2D tellurene thin films were acquired from recently reported hydrothermal method with high hole mobility of nearly 3000 cm/(V s) at low temperatures, which allows the observation of well-developed Shubnikov-de Haas (SdH) oscillations and QHE. A four-fold degeneracy of Landau levels in SdH oscillations and QHE was revealed. Quantum oscillations were investigated under different gate biases, tilted magnetic fields, and various temperatures, and the results manifest the inherent information on the electronic structure of Te. Anomalies in both temperature-dependent oscillation amplitudes and transport characteristics were observed that are ascribed to the interplay between the Zeeman effect and spin-orbit coupling, as depicted by the density functional theory calculations.

摘要

量子霍尔效应(QHE)是量子化状态的一种宏观表现,仅发生在受限的二维电子气(2DEG)系统中。在实验中,QHE出现在低温下具有大的外部磁场的高迁移率2DEG中。二维范德华材料,如石墨烯和黑磷,被认为是研究量子输运的有趣材料系统,因为在二维量子极限下,由于单层或少数层薄膜易于获得,它们可能揭示独特的主体材料特性。我们首次报道了在一种新型低维材料系统碲化铋中直接观察到QHE。通过最近报道的水热法获得了高质量的二维碲化铋薄膜,其在低温下具有近3000 cm/(V s)的高空穴迁移率,这使得能够观察到发育良好的舒布尼科夫-德哈斯(SdH)振荡和QHE。揭示了SdH振荡和QHE中朗道能级的四重简并。在不同的栅极偏置、倾斜磁场和各种温度下研究了量子振荡,结果表明了碲电子结构的固有信息。观察到与温度相关的振荡幅度和输运特性中的异常现象,这归因于塞曼效应和自旋轨道耦合之间的相互作用,如密度泛函理论计算所描述的那样。

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