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Transport Through a Coulomb Blockaded Majorana Nanowire

机译:通过库仑阻塞的马约拉纳纳米线传输。

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In one-dimensional (ID) quantum wires with strong spin-orbit coupling and a Zeeman field, a superconducting substrate can induce zero-energy Majorana bound states located near the ends of the wire. We study electronic properties when such a wire is contacted by normal metallic or superconducting electrodes. A special attention is devoted to Coulomb blockade effects. We analyze the "Majorana single-charge transistor" (MSCT), i.e., a floating Majorana wire contacted by normal metallic source and drain contacts, where charging effects are important. We describe Coulomb oscillations in this system and predict that Majorana fermions could be unambiguously detected by the emergence of sideband peaks in the nonlinear differential conductance. We also study a superconducting variant of the MSCT setup with s-wave superconducting (instead of normal-conducting) leads. In the noninteracting case, we derive the exact current-phase relation (CPR) and find π-periodic behavior with negative critical current for weak tunnel couplings. Charging effects then cause the anomalous CPR I((p) = I_ccosφ, where the parity-sensitive critical current I_c provides a signature for Majorana states.
机译:在具有强自旋轨道耦合和塞曼场的一维(ID)量子线中,超导衬底可以感应位于线末端附近的零能量马里亚纳束缚态。我们研究当此类导线与常规金属或超导电极接触时的电子性能。特别注意库仑封锁效应。我们分析了“马约拉纳邦单电荷晶体管”(MSCT),即浮动的马约拉纳邦导线与正常的金属源极和漏极接触所接触,在此电荷效应很重要。我们描述了该系统中的库仑振荡,并预测通过微分电导的边带峰值的出现可以明确地检测到马里亚纳费米子。我们还研究了带有s波超导(而非正常导电)引线的MSCT装置的超导变体。在非交互情况下,我们推导了精确的电流-相位关系(CPR),并发现了对于弱隧道耦合具有负临界电流的π周期行为。然后,充电效应会导致CPR I((p)=I_ccosφ)异常,其中奇偶校验临界电流I_c为Majorana状态提供了签名。

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  • 会议地点 Tashkent(UZ)
  • 作者单位

    Institut fuer Theoretische Physik, Heinrich-Heine-Universit, D-40225 Duesseldorf, Germany;

    Institut fuer Theoretische Physik, Heinrich-Heine-Universit, D-40225 Duesseldorf, Germany;

    Departamento de Fisica Teorica de la Materia Condensada, Universidad Autonoma de Madrid, E-28049 Madrid, Spain;

    Institut fuer Theoretische Physik, Heinrich-Heine-Universit, D-40225 Duesseldorf, Germany;

    Departamento de Fisica Teorica de la Materia Condensada, Universidad Autonoma de Madrid, E-28049 Madrid, Spain;

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