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HfTe中的拓扑里夫希茨转变和一维外尔模式。

Topological Lifshitz transition and one-dimensional Weyl mode in HfTe.

作者信息

Wu Wenbin, Shi Zeping, Du Yuhan, Wang Yuxiang, Qin Fang, Meng Xianghao, Liu Binglin, Ma Yuanji, Yan Zhongbo, Ozerov Mykhaylo, Zhang Cheng, Lu Hai-Zhou, Chu Junhao, Yuan Xiang

机构信息

State Key Laboratory of Precision Spectroscopy, East China Normal University, Shanghai, China.

State Key Laboratory of Surface Physics and Institute for Nanoelectronic Devices and Quantum Computing, Fudan University, Shanghai, China.

出版信息

Nat Mater. 2023 Jan;22(1):84-91. doi: 10.1038/s41563-022-01364-5. Epub 2022 Sep 29.

Abstract

Landau band crossings typically stem from the intra-band evolution of electronic states in magnetic fields and enhance the interaction effect in their vicinity. Here in the extreme quantum limit of topological insulator HfTe, we report the observation of a topological Lifshitz transition from inter-band Landau level crossings using magneto-infrared spectroscopy. By tracking the Landau level transitions, we demonstrate that band inversion drives the zeroth Landau bands to cross with each other after 4.5 T and forms a one-dimensional Weyl mode with the fundamental gap persistently closed. The unusual reduction of the zeroth Landau level transition activity suggests a topological Lifshitz transition at 21 T, which shifts the Weyl mode close to the Fermi level. As a result, a broad and asymmetric absorption feature emerges due to the Pauli blocking effect in one dimension, along with a distinctive negative magneto-resistivity. Our results provide a strategy for realizing one-dimensional Weyl quasiparticles in bulk crystals.

摘要

朗道能带交叉通常源于磁场中电子态的带内演化,并增强其附近的相互作用效应。在拓扑绝缘体HfTe的极端量子极限下,我们利用磁红外光谱报告了从带间朗道能级交叉观测到的拓扑里夫希茨转变。通过追踪朗道能级跃迁,我们证明能带反转驱动第零朗道能带在4.5 T之后相互交叉,并形成一个基本能隙持续闭合的一维外尔模式。第零朗道能级跃迁活性的异常降低表明在21 T时发生了拓扑里夫希茨转变,这使得外尔模式靠近费米能级。结果,由于一维中的泡利阻塞效应,出现了一个宽且不对称的吸收特征,以及独特的负磁阻。我们的结果为在体晶体中实现一维外尔准粒子提供了一种策略。

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