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Quantum Transport and Nano Angle-resolved Photoemission Spectroscopy on the Topological Surface States of Single Sb2Te3 Nanowires

机译:Sb2Te3纳米线拓扑表面态的量子传输和纳米角分辨光电子能谱

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摘要

We report on low-temperature transport and electronic band structure of p-type Sb2Te3 nanowires, grown by chemical vapor deposition. Magnetoresistance measurements unravel quantum interference phenomena, which depend on the cross-sectional dimensions of the nanowires. The observation of periodic Aharonov-Bohm-type oscillations is attributed to transport in topologically protected surface states in the Sb2Te3 nanowires. The study of universal conductance fluctuations demonstrates coherent transport along the Aharonov-Bohm paths encircling the rectangular cross-section of the nanowires. We use nanoscale angle-resolved photoemission spectroscopy on single nanowires (nano-ARPES) to provide direct experimental evidence on the nontrivial topological character of those surface states. The compiled study of the bandstructure and the magnetotransport response unambiguosly points out the presence of topologically protected surface states in the nanowires and their substantial contribution to the quantum transport effects, as well as the hole doping and Fermi velocity among other key issues. The results are consistent with the theoretical description of quantum transport in intrinsically doped quasi-one-dimensional topological insulator nanowires.
机译:我们报告通过化学气相沉积生长的p型Sb2Te3纳米线的低温传输和电子能带结构。磁阻测量揭示了量子干扰现象,该现象取决于纳米线的横截面尺寸。周期性的Aharonov-Bohm型振荡的观察归因于Sb2Te3纳米线中拓扑受保护的表面态的传输。普遍电导波动的研究表明,沿着围绕纳米线矩形截面的Aharonov-Bohm路径的相干传输。我们在单根纳米线上使用纳米级角度分辨光发射光谱(nano-ARPES),以提供有关这些表面态的非平凡拓扑特征的直接实验证据。对能带结构和磁传输响应的汇编研究明确指出了纳米线中存在拓扑保护的表面态及其对量子传输效应的重大贡献,以及空穴掺杂和费米速度等关键问题。结果与本征掺杂的准一维拓扑绝缘体纳米线中量子传输的理论描述相符。

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