非中心对称超导体中的可调谐马约拉纳角模:隧道光谱和边缘缺陷

S. Ikegaya, W. Rui, D. Manske, A. Schnyder
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引用次数: 12

摘要

二维二阶拓扑超导体中的马约拉纳角模在容错拓扑量子计算中具有很大的应用潜力。我们证明了在面内磁场的存在下,二维($s+p$)波超导体具有马约拉纳角模式,其位置可以通过磁场方向来操纵。此外,我们讨论了边缘缺陷对马约拉纳角模式的影响。我们描述了不同的边缘形状和边缘无序如何影响马约拉纳角模式的数量和可控性,这与拓扑量子计算的实现有关。我们还讨论了马约拉纳角模式存在下的隧道光谱,其中铅线连接到非中心对称超导体的角上。零偏微分电导在磁场方向上表现出明显的周期性,这表明在该装置中马约拉纳角模式具有优异的可控性。我们的研究结果为在(s+p)波超导体实验中观察和调整马约兰角模式奠定了理论基础。
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Tunable Majorana corner modes in noncentrosymmetric superconductors: Tunneling spectroscopy and edge imperfections
Majorana corner modes appearing in two-dimensional second-order topological superconductors have great potential applications for fault-tolerant topological quantum computations. We demonstrate that in the presence of an in-plane magentic field two-dimensional ($s+p$)-wave superconductors host Majorana corner modes, whose location can be manipulated by the direction of the magnetic field. In addition, we discuss the effects of edge imperfections on the Majorana corner modes. We describe how different edge shapes and edge disorder affect the number and controllability of the Majorana corner modes, which is of relevance for the implementation of topological quantum computations. We also discuss tunneling spectroscopy in the presence of the Majorana corner modes, where a lead-wire is attached to the corner of the noncentrosymmetric superconductor. The zero-bias differential conductance shows a distinct periodicity with respect to the direction of the magnetic field, which demonstrates the excellent controllability of the Majorana corner modes in this setup. Our results lay down the theoretical groundwork for observing and tuning Majoran corner modes in experiments on ($s+p$)-wave superconductors.
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