论文标题

铁磁混合纳米线约瑟夫森连接处的超流动逆转

Supercurrent reversal in ferromagnetic hybrid nanowire Josephson junctions

论文作者

Razmadze, D., Souto, R. Seoane, Galletti, L., Maiani, A., Liu, Y., Krogstrup, P., Schrade, C., Gyenis, A., Marcus, C. M., Vaitiekėnas, S.

论文摘要

我们报告了由半导体INAS纳米线组成的杂交约瑟夫森连接中的超电流传输测量值,并具有外延铁磁性绝缘子EUS和超导涂层。电线在远离零外部磁场的牢固的牢固窗口上显示一个滞后超导窗口。使用多型式仪表设置,我们测量了多个磁性连接的电流相关关系,并在超导窗口内找到$π$和0阶段之间的突然开关。我们将0- $π$转换归因于EUS域的离散翻转,并提供了定性理论,表明相当大的交换场可以极化连接点并导致超高级反转。 $ 0 $和$π$阶段都可以通过消除电线来实现零外部字段。

We report supercurrent transport measurements in hybrid Josephson junctions comprised of semiconducting InAs nanowires with epitaxial ferromagnetic insulator EuS and superconducting Al coatings. The wires display a hysteretic superconducting window close to the coercivity, away from zero external magnetic field. Using a multi-interferometer setup, we measure the current-phase relation of multiple magnetic junctions and find an abrupt switch between $π$ and 0 phases within the superconducting window. We attribute the 0-$π$ transition to the discrete flipping of the EuS domains and provide a qualitative theory showing that a sizable exchange field can polarize the junction and lead to the supercurrent reversal. Both $0$ and $π$ phases can be realized at zero external field by demagnetizing the wire.

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