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整数量子霍尔边缘的分数互统计

Fractional Mutual Statistics on Integer Quantum Hall Edges.

作者信息

Lee June-Young M, Han Cheolhee, Sim H-S

机构信息

Department of Physics, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.

出版信息

Phys Rev Lett. 2020 Nov 6;125(19):196802. doi: 10.1103/PhysRevLett.125.196802.

Abstract

Fractional charge and statistics are hallmarks of low-dimensional interacting systems such as fractional quantum Hall (QH) systems. Integer QH systems are regarded as noninteracting, yet they can have fractional charge excitations when they couple to another interacting system or time-dependent voltages. Here, we notice Abelian fractional mutual statistics between such a fractional excitation and an electron, and propose a setup for detection of the statistics in which a fractional excitation is generated at a source and injected to a Mach-Zehnder interferometer (MZI) in the integer QH regime. In a parameter regime, the dominant interference process involves braiding, via double exchange, between an electron excited at an MZI beam splitter and the fractional excitation. The braiding results in the interference phase shift by the phase angle of the mutual statistics. This proposal for directly observing the fractional mutual statistics is within experimental reach.

摘要

分数电荷和统计特性是诸如分数量子霍尔(QH)系统等低维相互作用系统的标志。整数QH系统被视为非相互作用的,但当它们与另一个相互作用系统或随时间变化的电压耦合时,可能会有分数电荷激发。在此,我们注意到这种分数激发与电子之间的阿贝尔分数互统计特性,并提出一种用于检测该统计特性的装置,其中分数激发在源处产生并注入到整数QH区域的马赫 - 曾德尔干涉仪(MZI)中。在一个参数范围内,主要的干涉过程涉及通过双交换在MZI分束器处激发的电子与分数激发之间的编织。这种编织导致由互统计相角引起的干涉相移。这种直接观测分数互统计特性的提议在实验可行范围内。

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