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Quantum interference effects in topological nanowires in a longitudinal magnetic field

机译:纵向磁场中拓扑纳米线的量子干涉效应

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We study the magnetoconductance of topological insulator nanowires in a longitudinal magnetic field, including Aharonov-Bohm, Altshuler-Aronov-Spivak, perfectly conducting channel, and universal conductance fluctuation effects. Our focus is on predicting experimental behavior in single wires in the quantum limit where temperature is reduced to zero. We show that changing the Fermi energy E-F can tune a wire from from ballistic to diffusive conduction and to localization. In both ballistic and diffusive single wires we find both Aharonov-Bohm and Altshuler-Aronov-Spivak oscillations with similar strengths, accompanied by quite strong universal conductance fluctuations, all with amplitudes between 0.3G(0) and 1G(0). This contrasts strongly with the average behavior of many wires, which shows Aharonov-Bohm oscillations in the ballistic regime and Altshuler-Aronov-Spivak oscillations in the diffusive regime, with both oscillations substantially larger than the conductance fluctuations. In single wires the ballistic and diffusive regimes can be distinguished by varying E-F and studying the sign of the Aharonov-Bohm signal, which depends periodically on E-F in ballistic wires and randomly on E-F in diffusive wires. We also show that in long wires the perfectly conducting channel is visible at a wide range of energies within the bulk gap. We present typical conductance profiles at several wire lengths, showing that conductance fluctuations can dominate the average signal. Similar behavior will be found in carbon nanotubes.
机译:我们研究了纵向绝缘体纳米线在纵向磁场中的磁导,包括Aharonov-Bohm,Altshuler-Aronov-Spivak,完美导电通道和通用电导涨落效应。我们的重点是在温度降低到零的量子极限中预测单根导线的实验行为。我们证明了改变费米能量E-F可以使导线从弹道传导到扩散传导再到局部化。在弹道和扩散单线中,我们都发现具有类似强度的Aharonov-Bohm和Altshuler-Aronov-Spivak振荡,伴随着相当强的通用电导率波动,所有振幅都在0.3G(0)和1G(0)之间。这与许多导线的平均行为形成鲜明对比,后者显示出弹道状态下的Aharonov-Bohm振荡和扩散状态下的Altshuler-Aronov-Spivak振荡,这两种振荡都远大于电导波动。在单线中,可以通过改变E-F并研究Aharonov-Bohm信号的符号来区分弹道和扩散方式,该信号周期性地取决于弹道线中的E-F,而随机取决于扩散线中的E-F。我们还表明,在长导线中,在整个间隙内的各种能量范围内都可以看到完美的导电通道。我们提供了几种导线长度的典型电导曲线,表明电导波动可以控制平均信号。在碳纳米管中会发现类似的行为。

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