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ZrTe5中体带反转和三维大质量狄拉克费米子的光谱证据。

Spectroscopic evidence for bulk-band inversion and three-dimensional massive Dirac fermions in ZrTe5.

作者信息

Chen Zhi-Guo, Chen R Y, Zhong R D, Schneeloch John, Zhang C, Huang Y, Qu Fanming, Yu Rui, Li Q, Gu G D, Wang N L

机构信息

Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China;

International Center for Quantum Materials, School of Physics, Peking University, Beijing 100871, China.

出版信息

Proc Natl Acad Sci U S A. 2017 Jan 31;114(5):816-821. doi: 10.1073/pnas.1613110114. Epub 2017 Jan 17.

Abstract

Three-dimensional topological insulators (3D TIs) represent states of quantum matters in which surface states are protected by time-reversal symmetry and an inversion occurs between bulk conduction and valence bands. However, the bulk-band inversion, which is intimately tied to the topologically nontrivial nature of 3D Tis, has rarely been investigated by experiments. Besides, 3D massive Dirac fermions with nearly linear band dispersions were seldom observed in TIs. Recently, a van der Waals crystal, ZrTe, was theoretically predicted to be a TI. Here, we report an infrared transmission study of a high-mobility [∼33,000 cm/(V ⋅ s)] multilayer ZrTe flake at magnetic fields (B) up to 35 T. Our observation of a linear relationship between the zero-magnetic-field optical absorption and the photon energy, a bandgap of ∼10 meV and a [Formula: see text] dependence of the Landau level (LL) transition energies at low magnetic fields demonstrates 3D massive Dirac fermions with nearly linear band dispersions in this system. More importantly, the reemergence of the intra-LL transitions at magnetic fields higher than 17 T reveals the energy cross between the two zeroth LLs, which reflects the inversion between the bulk conduction and valence bands. Our results not only provide spectroscopic evidence for the TI state in ZrTe but also open up a new avenue for fundamental studies of Dirac fermions in van der Waals materials.

摘要

三维拓扑绝缘体(3D TIs)代表着量子物质的状态,其中表面态受时间反演对称性保护,且体能带的导带和价带之间发生了反转。然而,与3D TIs的拓扑非平庸性质紧密相关的体能带反转,很少有实验进行研究。此外,在拓扑绝缘体中很少观察到具有近线性能带色散的三维大质量狄拉克费米子。最近,一种范德华晶体ZrTe在理论上被预测为拓扑绝缘体。在此,我们报道了对一种高迁移率[约33,000 cm/(V·s)]的多层ZrTe薄片在高达35 T的磁场(B)下进行的红外透射研究。我们观察到零磁场下的光吸收与光子能量之间存在线性关系、带隙约为10 meV以及低磁场下朗道能级(LL)跃迁能量的[公式:见原文]依赖性,这表明该系统中存在具有近线性能带色散的三维大质量狄拉克费米子。更重要的是,在高于17 T的磁场下LL内跃迁的重新出现揭示了两个零级LL之间的能量交叉,这反映了体能带的导带和价带之间的反转。我们的结果不仅为ZrTe中的拓扑绝缘体状态提供了光谱学证据,也为范德华材料中狄拉克费米子的基础研究开辟了一条新途径。

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