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Electron interferometry in the quantum Hall regime: Aharonov-Bohm effect of interacting electrons

机译:霍尔效应中的电子干涉法:相互作用电子的Aharonov-Bohm效应

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摘要

An apparent h/ fe Aharonov-Bohm flux period, where f is an integer, has been reported in coherent quantum Hall devices. Such subperiod is not expected for noninteracting electrons and thus is thought to result from interelectron Coulomb interaction. Here we report experiments in a Fabry-Perot interferometer comprised of two wide constrictions enclosing an electron island. By carefully tuning the constriction front gates, we find a regime where interference oscillations with period h/2e persist throughout the transition between the integer quantum Hall plateaus 2 and 3, including half-filling. In a large quantum Hall sample, a transition between integer plateaus occurs near half-filling, where the bulk of the sample becomes delocalized and thus dissipative bulk current flows between the counterpropagating edges ("backscattering")- In a quantum Hall constriction, where conductance is due to electron tunneling, a transition between forward and backscattering is expected near the half-filling. In our experiment, neither period nor amplitude of the oscillations show a discontinuity at half-filling, indicating that only one interference path exists throughout the transition. We also present experiments and an analysis of the front-gate dependence of the phase of the oscillations. The results point to a single physical mechanism of the observed conductance oscillations: Aharonov-Bohm interference of interacting electrons in quantum Hall regime.
机译:据报道,相干量子霍尔器件中存在一个明显的h / fe Aharonov-Bohm通量周期,其中f为整数。对于非相互作用的电子来说,预计不会出现这种亚周期,因此认为是由电子间库仑相互作用导致的。在这里,我们报告了在由两个包围电子岛的宽颈缩组成的Fabry-Perot干涉仪中进行的实验。通过仔细调整收缩前门,我们发现了一种周期为h / 2e的干扰振荡在整数量子霍尔高原2和3之间的过渡(包括半填充)期间持续存在的状态。在大的量子霍尔样品中,整数高原之间的过渡发生在半填充附近,在此样品的大部分变得离域,因此耗散的大电流在反向传播的边缘之间流动(“反向散射”)-在量子霍尔收缩中,电导由于电子隧穿,预计在半填充附近正向散射和反向散射之间会发生过渡。在我们的实验中,振荡的周期和振幅在半填充时都没有显示出不连续性,这表明在整个过渡过程中仅存在一条干扰路径。我们还介绍了实验和对振荡相位的前门依赖性的分析。结果指出了观察到的电导振荡的单一物理机制:量子霍尔状态下相互作用电子的Aharonov-Bohm干涉。

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