论文标题

磁场诱导的拓扑相过渡(BI,SB)$ _ 2 $ SE $ _3 $异质结构

Magnetic-field-induced topological phase transition in Fe-doped (Bi,Sb)$_2$Se$_3$ heterostructures

论文作者

Satake, Y., Shiogai, J., Mazur, G. P., Kimura, S., Awaji, S., Fujiwara, K., Nojima, T., Nomura, K., Souma, S., Sato, T., Dietl, T., Tsukazaki, A.

论文摘要

三维拓扑绝缘子(3D-TIS)具有特定的电子带的拓扑顺序,从而通过散装对应关系导致无间隙的表面状态。外来现象已在铁磁TI中实现,例如具有手性边缘传导的量子异常霍尔(QAH)效应和霍尔电阻的量化值$ {r_ {yx}} $。在这里,我们报告了顺磁掺杂(bi,sb)$ {_ 2} $ se $ {_ 3} $异质结构具有不同结构架构,掺杂以及磁场和电场的异质结构。从3D-TI开始,二维绝缘子在临界值以下的层厚度出现,它变成了Anderson绝缘子的Fe浓度,足以通过磁性障碍产生定位。通过应用磁场,发生从安德森绝缘子到QAH状态的拓扑过渡,这是由于巨型Zeeman分裂和减少磁性障碍而形成的交换间隙驱动的。 (BI,SB)$ {_ 2} $ SE $ {_ 3} $的拓扑相图允许探索拓扑保护,磁性障碍和交换分裂的复杂相互作用。

Three-dimensional topological insulators (3D-TIs) possess a specific topological order of electronic bands, resulting in gapless surface states via bulk-edge correspondence. Exotic phenomena have been realized in ferromagnetic TIs, such as the quantum anomalous Hall (QAH) effect with a chiral edge conduction and a quantized value of the Hall resistance ${R_{yx}}$. Here, we report on the emergence of distinct topological phases in paramagnetic Fe-doped (Bi,Sb)${_2}$Se${_3}$ heterostructures with varying structure architecture, doping, and magnetic and electric fields. Starting from a 3D-TI, a two-dimensional insulator appears at layer thicknesses below a critical value, which turns into an Anderson insulator for Fe concentrations sufficiently large to produce localization by magnetic disorder. With applying a magnetic field, a topological transition from the Anderson insulator to the QAH state occurs, which is driven by the formation of an exchange gap owing to a giant Zeeman splitting and reduced magnetic disorder. Topological phase diagram of (Bi,Sb)${_2}$Se${_3}$ allows exploration of intricate interplay of topological protection, magnetic disorder, and exchange splitting.

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