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Evidence for Majorana phases in the magnetoconductance of topological junctions based on two-dimensional electron gases

机译:基于二维电子气的拓扑结磁导中的马约拉那相的证据

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摘要

We calculate the linear conductance of a two-dimensional electron-gas-based junction between a normal semiconductor section and a hybrid semiconductor-superconductor section, under perpendicular magnetic field. We consider two important terms often neglected in the literature, the magneto-orbital and transverse Rashba spin-orbit. The strong orbital effect due to the magnetic field yields topological phase transitions to nontrivial phases hosting Majorana modes in the hybrid section. The presence of a potential barrier at the junction interface reveals the Majorana phases as quantized plateaus of high conductance, for low values of the chemical potential. In wide junctions (or large chemical potentials) the phase transitions occur at low magnetic fields but the magneto-conductance becomes anomalous and lacks clearly quantized plateaus.
机译:我们计算了在垂直磁场下正常半导体部分和混合半导体-超导体部分之间基于二维电子气结的线性电导。我们考虑文献中经常忽略的两个重要术语,即磁轨道和横向Rashba自旋轨道。由于磁场的作用,强烈的轨道效应使混合相中的拓扑相变过渡为以马约拉那模式为主体的非平相。在结界面处存在势垒,表明马约拉那相为高电导的量化平台,对于较低的化学势值。在宽的结(或大的化学势)中,相变在低磁场下发生,但磁导变得异常并且缺乏清晰量化的平稳段。

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  • 来源
    《Physical review》 |2020年第11期|115409.1-115409.8|共8页
  • 作者单位

    Institute of Interdisciplinary Physics and Complex Systems IFISC (CSIC-UIB) E-07122 Palma Spain Department of Physics University of the Balearic Islands E-07122 Palma Spain;

    Electrical Engineering Division Engineering Department University of Cambridge Cambridge CB3 0FA England Department of Physics Cavendish Laboratory University of Cambridge Cambridge CB3 0HE England;

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