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Measurement of filling factor 5/2 quasiparticle interference with observation of charge e/4 and e/2 period oscillations

机译:通过观察电荷e / 4和e / 2周期振荡来测量填充因子5/2准粒子干扰

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摘要

A standing problem in low-dimensional electron systems is the nature of the 5/2 fractional quantum Hall (FQH) state: Its elementary excitations are a focus for both elucidating the state's properties and as candidates in methods to perform topological quantum computation. Interferometric devices may be used to manipulate and measure quantum Hall edge excitations. Here we use a small-area edge state interferometer designed to observe quasiparticle interference effects. Oscillations consistent in detail with the Aharonov–Bohm effect are observed for integer quantum Hall and FQH states (filling factors ν = 2, 5/3, and 7/3) with periods corresponding to their respective charges and magnetic field positions. With these factors as charge calibrations, periodic transmission through the device consistent with quasiparticle charge e/4 is observed at ν = 5/2 and at lowest temperatures. The principal finding of this work is that, in addition to these e/4 oscillations, periodic structures corresponding to e/2 are also observed at 5/2 ν and at lowest temperatures. Properties of the e/4 and e/2 oscillations are examined with the device sensitivity sufficient to observe temperature evolution of the 5/2 quasiparticle interference. In the model of quasiparticle interference, this presence of an effective e/2 period may empirically reflect an e/2 quasiparticle charge or may reflect multiple passes of the e/4 quasiparticle around the interferometer. These results are discussed within a picture of e/4 quasiparticle excitations potentially possessing non-Abelian statistics. These studies demonstrate the capacity to perform interferometry on 5/2 excitations and reveal properties important for understanding this state and its excitations.
机译:低维电子系统中的一个突出问题是5/2分数量子霍尔(FQH)状态的性质:其基本激发既是阐明态性质的重点,又是进行拓扑量子计算的方法的重点。干涉仪可以用于操纵和测量量子霍尔边缘激发。在这里,我们使用设计用于观察准粒子干涉效应的小面积边缘状态干涉仪。在整数量子霍尔和FQH状态(填充因子ν= 2、5 / 3和7/3)中观察到了与阿哈洛诺夫-波姆效应详细相关的振荡,周期对应于它们各自的电荷和磁场位置。将这些因素作为电荷校准,可以在ν= 5/2和最低温度下观察到通过与准粒子电荷e / 4一致的器件的周期性传输。这项工作的主要发现是,除了这些e / 4振荡之外,还在5/2ν和最低温度下观察到对应于e / 2的周期性结构。使用足以观察5/2准粒子干扰的温度演变的设备灵敏度来检查e / 4和e / 2振荡的属性。在准粒子干扰模型中,有效e / 2周期的存在可能会凭经验反映e / 2准粒子电荷或可能反映e / 4准粒子在干涉仪周围的多次通过。这些结果将在可能具有非阿贝尔统计量的e / 4准粒子激发的图片中进行讨论。这些研究证明了对5/2激发进行干涉测量的能力,并揭示了对于理解该状态及其激发非常重要的特性。

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