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Braiding of Abelian and Non-Abelian Anyons in the Fractional Quantum Hall Effect

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abstract

In this paper, we report on the study of Abelian and non-Abelian statistics through Fabry-Perot interferometry of fractional quantum Hall (FQH) systems. Our detection of phase slips in quantum interference experiments demonstrates a powerful, new way of detecting braiding of anyons. We confirm the Abelian anyonic braiding statistics in the $\nu = 7/3$ FQH state through detection of the predicted statistical phase angle of $2\pi/3$, consistent with a change of the anyonic particle number by one. The $\nu = 5/2$ FQH state is theoretically believed to harbor non-Abelian anyons which are Majorana, meaning that each pair of quasiparticles contain a neutral fermion orbital which can be occupied or unoccupied and hence can act as a qubit. In this case our observed statistical phase slips agree with a theoretical model where the Majoranas are strongly coupled to each other, and strongly coupled to the edge modes of the interferometer. In particular, an observed phase slip of approximately $\pi$ is interpreted as a sudden flip of a qubit, or entry of a neutral fermion into the interferometer. Our results provide compelling support for the existence of non-Abelian anyons.

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2019 1

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UNVERDICTED 1

representative citing papers

Negative Excess Shot Noise by Anyon Braiding

cond-mat.mes-hall · 2019-07-01 · unverdicted · novelty 6.0

Prediction that autocorrelation noise at a QPC shows negative excess of 2e*I at large voltage due to Abelian anyon braiding.

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  • Negative Excess Shot Noise by Anyon Braiding cond-mat.mes-hall · 2019-07-01 · unverdicted · none · ref 74 · internal anchor

    Prediction that autocorrelation noise at a QPC shows negative excess of 2e*I at large voltage due to Abelian anyon braiding.