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Charge transport through spin-polarized tunnel junction between two spin-split superconductors

机译:通过两个旋转式超导体之间的旋转偏振隧道结电荷运输

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摘要

We investigate transport properties of junctions between two spin-split superconductors linked by a spin-polarized tunneling barrier. The spin-splitting fields in the superconductors (S) are induced by adjacent ferromagnetic insulating (FI) layers with arbitrary magnetization. The aim of this study is twofold. On the one hand, we present a theoretical framework based on the quasiclassical Green's functions to calculate the Josephson and quasiparticle current through the junctions in terms of the different parameters characterizing it. Our theory predicts qualitative new results for the tunneling differential conductance, dI/dV, when the spin-splitting fields of the two superconductors are noncollinear. We also discuss how junctions based on FI/S can be used to realize anomalous Josephson junctions with a constant geometric phase shift in the current-phase relation. As a result, they may exhibit spontaneous triplet supercurrents in the absence of a phase difference between the S electrodes. On the other hand, we show results of planar tunneling spectroscopy of a EuS/Al/AlOx/EuS/Al junction and use our theoretical model to reproduce the obtained dI/dV curves. Comparison between theory and experiment reveals information about the intrinsic parameters of the junction, such as the size of the superconducting order parameter, spin-splitting fields and spin relaxation, and also about properties of the two EuS films, such as their morphology, domain structure, and magnetic anisotropy.
机译:我们研究了由旋转偏振隧道屏障连接的两个旋转分流超导体之间的交界处的传输性能。超导体中的旋转分裂场通过具有任意磁化的相邻的铁磁绝缘(FI)层诱导。这项研究的目的是双重的。一方面,我们介绍了基于拟卡斯格的绿色功能的理论框架,以根据表征的不同参数计算Josephson和Quasiparticle电流。我们的理论预测隧道差分电导,DI / DV的定性新的结果,当两个超导体的自旋分裂场是非可口压的时。我们还讨论基于FI / S的结法如何用于实现具有当前相位关系中恒定的几何相移的异常的Josephson结。结果,它们可以在没有S电极之间的相位差的情况下表现出自发的三态超级送水器。另一方面,我们展示了EUS / Al / Alox / EUS / Al结的平面隧道光谱的结果,并使用我们的理论模型来重现所获得的DI / DV曲线。理论与实验之间的比较揭示了有关结的内在参数的信息,例如超导顺序参数,旋转分裂场和旋转松弛的尺寸,以及两个EUS膜的性质,例如它们的形态,结构域结构和磁各向异性。

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  • 来源
    《Physical review》 |2019年第18期|184501.1-184501.10|共10页
  • 作者单位

    Univ Basque Country Ctr Mixto CSIC Ctr Fis Mat CFM MPC Manuel de Lardizabal 5 E-20018 San Sebastian Spain;

    Univ Jyvaskyla Dept Phys & Nanosci Ctr POB 35 YFL FI-40014 Jyvaskyla Finland|CUNY Dept Phys Queens Coll Queens NY 11367 USA;

    Univ Jyvaskyla Dept Phys & Nanosci Ctr POB 35 YFL FI-40014 Jyvaskyla Finland;

    Univ Basque Country Ctr Mixto CSIC Ctr Fis Mat CFM MPC Manuel de Lardizabal 5 E-20018 San Sebastian Spain|Ikerbasque Basque Fdn Sci Bilbao 48013 Basque Country Spain|DIPC Manuel de Lardizabal 4 E-20018 San Sebastian Spain;

    CNR NEST Ist Nanosci I-56127 Pisa Italy|Scuola Normale Super Pisa I-56127 Pisa Italy;

    MIT Dept Phys Cambridge MA 02139 USA|MIT Francis Bitter Magnet Lab Cambridge MA 02139 USA;

    CNR NEST Ist Nanosci I-56127 Pisa Italy|Scuola Normale Super Pisa I-56127 Pisa Italy;

    Univ Jyvaskyla Dept Phys & Nanosci Ctr POB 35 YFL FI-40014 Jyvaskyla Finland;

    Univ Basque Country Ctr Mixto CSIC Ctr Fis Mat CFM MPC Manuel de Lardizabal 5 E-20018 San Sebastian Spain|DIPC Manuel de Lardizabal 4 E-20018 San Sebastian Spain;

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