论文标题

大部分半导体 - 驱动器杂种中接近效应的静电控制

Electrostatic control of the proximity effect in the bulk of semiconductor-superconductor hybrids

论文作者

van Loo, N., Mazur, G. P., Dvir, T., Wang, G., Dekker, R. C., Wang, J. -Y., Lemang, M., Sfiligoj, C., Bordin, A., van Driel, D., Badawy, G., Gazibegovic, S., Bakkers, E. P. A. M., Kouwenhoven, L. P.

论文摘要

预计半导体纳米线的接近效应将在半导体中产生诱导的间隙。该感应间隙的大小以及半导体特性(例如自旋轨道耦合)和$ g $ \, - \,因子,取决于材料之间的耦合。可以预测,可以通过使用电场来调整这种耦合。我们使用非局部光谱学研究了INSB/AL/PT杂种中的这种现象。我们表明这些杂种可以调节,以使半导体和超导体强烈耦合。在这种情况下,诱导的间隙类似于AL/PT壳中的超导间隙,并且仅在高磁场下关闭。相反,可以抑制耦合,从而导致诱导的间隙和临界磁场的强烈减少。在强耦合和弱耦合方案之间的跨界时,我们观察到大部分纳米线中诱导的间隙的结束和重新打开。与期望相反,它不伴随着局部电导光谱中零偏置峰的形成。结果,这不能最终归因于预期的拓扑相变,我们讨论了可能的替代解释。

The proximity effect in semiconductor-superconductor nanowires is expected to generate an induced gap in the semiconductor. The magnitude of this induced gap, together with the semiconductor properties like the spin-orbit coupling and $g$\,-\,factor, depends on the coupling between the materials. It is predicted that this coupling can be adjusted through the use of electric fields. We study this phenomena in InSb/Al/Pt hybrids using nonlocal spectroscopy. We show that these hybrids can be tuned such that the semiconductor and superconductor are strongly coupled. In this case, the induced gap is similar to the superconducting gap in the Al/Pt shell and closes only at high magnetic fields. In contrast, the coupling can be suppressed which leads to a strong reduction of the induced gap and critical magnetic field. At the crossover between the strong-coupling and weak-coupling regimes, we observe the closing and reopening of the induced gap in the bulk of a nanowire. Contrary to expectations, it is not accompanied by the formation of zero-bias peaks in the local conductance spectra. As a result, this cannot be attributed conclusively to the anticipated topological phase transition and we discuss possible alternative explanations.

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