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Evidence of Topological Two-Dimensional Metallic Surface States in Thin Bismuth Nanoribbons

机译:薄铋纳米带中的拓扑二维金属表面态的证据

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摘要

Understanding the exotic quantum phenomena in bulk bismuth beyond its ultraquantum limit remains controversial and gives rise to renewed interest. The focus of the issues is whether these quantum properties have a conventional bulk nature or just the surface effect due to the significant spin-orbital interaction and in relation to the Bi-based topological insulators. Here, we present angular-dependent magnetoresistance (AMR) measurements on single-crystal bismuth nanoribbons of different thicknesses with magnetic fields up to 31 T. In thin nanoribbons with thickness of~40 nm, a two-fold rational symmetry of the low field AMR spectra and two sets of 1/2-shifted (i.e., γ = 1/2) Shubnikov-de Haas (SdH) quantum oscillations with exact two- dimensional (2D) character were obtained. However, when the thickness of the ribbon increases, a 3D bulk-like SdH oscillations with γ = 0 and a four-fold rotational symmetry of the AMR spectra appear. These results provided unambiguous transport evidence of the topological 2D metallic surface states in thinner nanoribbons with an insulating bulk. Our observations provide a promising pathway to understand the quantum phenomena in Bi arising from the surface states.
机译:了解超出其超量子极限的块状铋中的外来量子现象仍存在争议,并引起了新的兴趣。这些问题的焦点是这些量子性质是否具有常规的整体性质,还是由于显着的自旋轨道相互作用以及与基于Bi的拓扑绝缘体有关而仅具有表面效应。在这里,我们介绍了磁场强度高达31 T的不同厚度的单晶铋纳米带的角度依赖性磁阻(AMR)测量。在厚度约40 nm的薄纳米带中,低场AMR具有两倍的理性对称性光谱和两组具有精确二维(2D)特征的1/2位移(即γ= 1/2)Shubnikov-de Haas(SdH)量子振荡。但是,当碳带厚度增加时,会出现3D体状SdH振荡(γ= 0)和AMR光谱的四重旋转对称性。这些结果提供了在具有绝缘块的较薄纳米带中的二维二维金属表面态的明确传输证据。我们的观察提供了一种有前途的途径,以了解由表面态引起的Bi量子现象。

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