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Dual evidence of surface Dirac states in thin cylindrical topological insulator Bi2Te3 nanowires

机译:薄圆柱拓扑绝缘体Bi2Te3纳米线中表面狄拉克态的双重证据

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摘要

How the surface state (SS) develops and how the spin transport in a curved cylindrical topological insulator nanowire have attracted theoretical attention recently. However, experimental confirmation for the SS in such a real modeling system still remains insufficient. Here we carried out a systematic comparative study on the cylindrical single-crystal Bi2Te3 nanowires of various diameters, and report unambiguously dual evidence for the Dirac SS. Both the predicted anomalous Aharonov-Bohm (AB) quantum oscillations with a period of h/e in H// and the 1/2-shifted Shubnikov-de Haas (SdH) oscillations (i.e., γ = −1/2) in H⊥ were indentified below 1.4 K. In addition, Altshuler-Aronov-Spivak (AAS)-like oscillations with a period of h/2e and ordinary SdH oscillations with γ = 0 were also resolved. These data provide clear evidence of coexistence of the nontrivial topological Dirac state and trivial electron state on the surface of topological insulator nanowire.
机译:最近,如何发展表面状态(SS)以及如何在弯曲的圆柱形拓扑绝缘体纳米线中自旋输运。但是,在这样一个真实的建模系统中对SS的实验确认仍然不够。在这里,我们对各种直径的圆柱形单晶Bi2Te3纳米线进行了系统的比较研究,并明确报告了Dirac SS的双重证据。在H //周期为h / e的预测的异常Aharonov-Bohm(AB)量子振荡和在H中的1/2移位Shubnikov-de Haas(SdH)振荡(即γ= -1/2)被确定为低于1.4 K,此外,还解决了周期为h / 2e的类似Altshuler-Aronov-Spivak(AAS)的振荡和γ= 0的普通SdH振荡。这些数据提供了拓扑绝缘子纳米线表面上非平凡的拓扑狄拉克状态和平凡的电子状态共存的明确证据。

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