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Hybridization energy oscillations of Majorana and Andreev bound states in semiconductor-superconductor nanowire heterostructures

机译:半导体超导体纳米线异质结构的Majorana和Andreev绑定状态的杂交能振荡

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摘要

The recent experimental observations of decaying energy oscillations with increasing magnetic field in semiconductor-superconductor Majorana nanowires is in contrast with the theoretical expectations based on the presence of Majorana zero modes localized at the ends of the system. These observations have been recently theoretically justified by considering a position-dependent spin-orbit coupling that can emerge due to a tunnel gate. Here, we show that the window in parameter space where this phenomenology occurs is vanishingly small when compared to the parameter region where Majorana oscillations should increase in amplitude with the applied magnetic field. Further, including a position-dependent effective potential that is also induced due to a tunnel gate practically removes this small window. Using extensive numerical calculations, we show that, as expected, increasing amplitude oscillations of the hybridization energy represent a generic property of topological Majorana zero modes, while decreasing amplitude oscillations are a generic property of low-energy trivial Andreev bound states, recently called partially separated Andreev bound states. By averaging over several realistic parameter configurations, we identify robust features of the hybridization energy that can be observed in a typical differential conductance experiment without fine-tuning the control parameters.
机译:最近利用半导体 - 超导体Majorana纳米线中的磁场衰减能量振荡的最新实验观察与基于在系统末端定位的Majorana零模式的存在的理论期望相反。最近通过考虑到由于隧道栅极而出现的位置依赖性的旋转轨道耦合来理论地理论地理论地理论地理解。在这里,我们展示了参数空间中的窗口,其中发生这种现象学发生的,当与施加磁场的振幅增加幅度时,这种现象学发生这种现象学发生的情况。此外,包括由于隧道栅极而引起的位置相关的有效电位实际上去除该小窗口。使用广泛的数值计算,我们表明,正如预期的那样,杂交能量的增加幅度振荡代表拓扑Majorana零模式的通用特性,同时降低幅度振荡是低能量琐碎的AndreeV绑定状态的通用特性,最近被称为部分分离Andreev绑定状态。通过实现几种现实参数配置,我们识别在典型的差分电导实验中可以观察到的杂交能量的鲁棒特征,而不进行微调控制参数。

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  • 来源
    《Physical review》 |2020年第24期|245405.1-245405.12|共12页
  • 作者单位

    School of Basic Sciences Indian Institute of Technology Mandi Mandi-175005 (H.P.) India;

    Department of Physics and Astronomy Clemson University Clemson South Carolina 29634 USA;

    Department of Physics and Astronomy West Virginia University Morgantown West Virginia 26506 USA;

    Department of Physics and Astronomy Clemson University Clemson South Carolina 29634 USA;

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