Super-Poissonian noise from quasiparticle poisoning in electron transport through a pair of Majorana bound states

Florinda Viñas Boström, Patrik Recher
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Abstract

Topological qubits based on non-abelian Majorana bound states (MBSs) are protected by parity which is challenged by quasiparticle poisoning (QPP). In this work, we show how QPP affects transport through a pair of coupled MBSs weakly connected to two current leads, using an open system approach and full counting statistics. We find that the correct low-energy physics requires to include next to leading order tunneling events in the coupling to the leads. In particular, our results show that QPP causes super-Poissonian local shot noise with a Fano factor that diverges with decreasing bias voltage, while the current and the non-local (cross-)noise are only little affected. We explain that these features are a direct consequence of the nature of MBSs being their own antiparticle making noise measurements a viable tool to search for MBSs in the presence of QPP.
通过一对马约拉纳束缚态的电子传输中准粒子中毒产生的超泊松噪声
基于非阿贝尔马约拉纳束缚态(MBS)的拓扑量子比特受到奇偶性的保护,而奇偶性却受到了类粒子中毒(QPP)的挑战。在这项工作中,我们利用开放系统方法和全计数统计,展示了 QPP 如何影响通过一对弱连接到两个电流引线的耦合 MBS 的传输。我们发现,正确的低能物理需要在与引线的耦合中包括次前导阶隧道事件。特别是,我们的研究结果表明,QPP 会导致超泊松比的局部射电噪声,其法诺因子会随着偏置电压的降低而发散,而电流和非局部(交叉)噪声只受到很小的影响。我们解释说,这些特征是 MBS 自身反粒子性质的直接结果,使得噪声测量成为在 QPP 存在的情况下寻找 MBS 的可行工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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