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在拉什巴纳米线中从分数到马约拉纳费米子的转变。

Transition from fractional to Majorana fermions in Rashba nanowires.

机构信息

Department of Physics, University of Basel, Klingelbergstrasse 82, 4056 Basel, Switzerland.

出版信息

Phys Rev Lett. 2012 Dec 7;109(23):236801. doi: 10.1103/PhysRevLett.109.236801. Epub 2012 Dec 5.

Abstract

We study hybrid superconducting-semiconducting nanowires in the presence of Rashba spin-orbit interaction as well as helical magnetic fields. We show that the interplay between them leads to a competition of phases with two topological gaps closing and reopening, resulting in unexpected reentrance behavior. In addition to the topological phase with localized Majorana fermions (MFs) we find new phases characterized by fractionally charged fermion (FF) bound states of Jackiw-Rebbi type. The system can be fully gapped by the magnetic fields alone, giving rise to FFs that transmute into MFs upon turning on superconductivity. We find explicit analytical solutions for MF and FF bound states and determine the phase diagram numerically by determining the corresponding Wronskian null space. We show by renormalization group arguments that electron-electron interactions enhance the Zeeman gaps opened by the fields.

摘要

我们研究了存在拉什巴自旋轨道相互作用和螺旋磁场的混合超导 - 半导体纳米线。我们表明,它们之间的相互作用导致了具有两个拓扑间隙关闭和重新打开的相竞争,从而导致了意想不到的再进入行为。除了具有局域 Majorana 费米子(MF)的拓扑相之外,我们还发现了新的相,其特征是 Jackiw-Rebbi 型分数电荷费米子(FF)束缚态。该系统可以完全被磁场隙隔开,从而产生在超导性开启时转变为 MF 的 FF。我们为 MF 和 FF 束缚态找到了显式解析解,并通过确定相应的沃伦斯基零空间数值确定了相图。我们通过重整化群论证表明,电子 - 电子相互作用增强了磁场打开的塞曼间隙。

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