论文标题

控制Andreev绑定的状态具有磁载体电势

Controlling Andreev bound states with the magnetic vector potential

论文作者

Moehle, Christian M., Rout, Prasanna K., Jainandunsing, Nayan A., Kuiri, Dibyendu, Ke, Chung Ting, Xiao, Di, Thomas, Candice, Manfra, Michael J., Nowak, Michal P., Goswami, Srijit

论文摘要

隧道光谱测量通常用于探测半导体 - 驱动器杂种中Andreev结合态(ABS)的能量光谱。最近,该光谱技术已纳入了二维电子气体形成的平面约瑟夫森连接(JJS),这是一个潜在的平台,用于工程相机的拓扑超导性。在这里,我们在平面JJS的两端进行ABS光谱,并研究磁载体电位对ABS频谱的影响。我们表明,由矢量电势产生的局部超导相位差在两端的大小和相反的符号相反,这与假设在隧道屏障附近局部ABS的模型一致。与微观模拟相辅相成,我们的实验表明,局部相位差异可用于估计几百纳米分离的局部ABS的相对位置。

Tunneling spectroscopy measurements are often used to probe the energy spectrum of Andreev bound states (ABSs) in semiconductor-superconductor hybrids. Recently, this spectroscopy technique has been incorporated into planar Josephson junctions (JJs) formed in two-dimensional electron gases, a potential platform to engineer phase-controlled topological superconductivity. Here, we perform ABS spectroscopy at the two ends of planar JJs and study the effects of the magnetic vector potential on the ABS spectrum. We show that the local superconducting phase difference arising from the vector potential is equal in magnitude and opposite in sign at the two ends, in agreement with a model that assumes localized ABSs near the tunnel barriers. Complemented with microscopic simulations, our experiments demonstrate that the local phase difference can be used to estimate the relative position of localized ABSs separated by a few hundred nanometers.

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