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    Shot noise signatures identifying non-Abelian properties of Jackiw-Rebbi zero modes

    Haoran Ge1,*, Zhen Chen1,*, Yijia Wu2,3,4,†, and X. C. Xie1,2,4,‡

    • *These authors contributed equally to this work.
    • †Contact author: yijiawu@fudan.edu.cn
    • ‡Contact author: xcxie@pku.edu.cn

    Phys. Rev. B 114, 055407 – Published 9 July, 2026

    DOI: https://doi.org/10.1103/ztzf-984z

    Abstract

    Jackiw-Rebbi zero modes were first proposed in 1976 as topologically protected zero-energy states localized at domain walls in one-dimensional Dirac systems. They have attracted widespread attention in the field of topological quantum computing, as they serve as nonsuperconducting analogs of Majorana zero modes and support non-Abelian statistics in topological insulator systems. However, compared to their Majorana cousins, the braiding properties of Jackiw-Rebbi zero modes are vulnerable to the on-site energy deviation between the modes involved in the experiment. In this work, we propose to estimate the braiding properties of Jackiw-Rebbi zero modes through measurements of transport signatures, which are readily measurable in current experiments. We find that the fidelity of the braiding operation reaches unity when the current noise is fully suppressed, while this braiding fidelity monotonously decreases with the increasing of the current noise. Based on these transport signatures, we further discuss the correspondence between Majorana and Jackiw-Rebbi zero modes, highlighting their similarity in supporting non-Abelian statistics.

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