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Melting of interference in the fractional quantum Hall effect: Appearance of neutral modes

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arxiv 1812.06717 v1 pith:F76SQOVT submitted 2018-12-17 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords interferenceneutralquantumupstreammodesanyonsfillingfractional
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Electrons living in a two-dimensional world under a strong magnetic field - the so-called fractional quantum Hall effect (FQHE) - often manifest themselves as fractionally charged quasiparticles (anyons). Moreover, being under special conditions they are expected to be immune to the environment, thus may serve as building blocks for future quantum computers. Interference of such anyons is the very first step towards understanding their anyonic statistics. However, the complex edge-modes structure of the fractional quantum Hall states, combined with upstream neutral modes, have been suspected to prevent an observation of the much sought after interference of anyons. Here, we report of finding a direct correlation between the appearance of neutral modes and the gradual disappearance of interference in a Mach-Zehnder interferometer (MZI), as the bulk filling factor is lowered towards Landau filling {\nu}_B =1; followed by a complete interference quench at {\nu}_B=1. Specifically, the interference was found to start diminishing at {\nu}_B~1.5 with a growing upstream neutral mode, which was detected by a born upstream shot noise in the input quantum point contact (QPC) to the MZI. Moreover, at the same time a {\nu}_QPC =1/3 conductance plateau, carrying shot-noise, appeared in the transmission of the QPC - persisting until bulk filling {\nu}_B =1/2. We identified this conductance plateau to result from edge reconstruction, which leads to an upstream neutral mode. Here, we also show that even the particle-like quasiparticles are accompanied by upstream neutral modes, therefore suppressing interference in the FQHE regime.

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  1. AC driven fractional quantum Hall systems: Uncovering unexpected features

    cond-mat.mes-hall 2025-02 conditional novelty 6.0 of 10

    In AC-driven fractional quantum Hall junctions, photo-assisted backscattering noise is bounded from below by the photo-assisted current, not by Levitov's DC noise bound, and the zero-temperature limit fails at resonan...

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