Department of Physics and Astronomy, Michigan State University, East Lansing, Michigan 48824, USA.
Phys Rev Lett. 2016 Feb 19;116(7):077001. doi: 10.1103/PhysRevLett.116.077001. Epub 2016 Feb 17.
Josephson junctions made with conventional s-wave superconductors and containing multiple layers of ferromagnetic materials can carry spin-triplet supercurrent in the presence of certain types of magnetic inhomogeneity. In junctions containing three ferromagnetic layers, the triplet supercurrent is predicted to be maximal when the magnetizations of the adjacent layers are orthogonal, and zero when the magnetizations of any two adjacent layers are parallel. Here we demonstrate on-off control of the spin-triplet supercurrent in such junctions, achieved by rotating the magnetization direction of one of the three layers by 90°. We obtain "on-off" ratios of 5, 7, and 19 for the supercurrent in the three samples that have been studied so far. These observations directly confirm one of the most salient predictions of the theory, and they pave the way for applications of spin-triplet Josephson junctions in the nascent area of "superconducting spintronics".
由传统 s 波超导体制成并包含多层铁磁材料的约瑟夫森结在存在某些类型的磁不均匀性时可以携带自旋三重态超流。在包含三个铁磁层的结中,当相邻层的磁化强度正交时,三重态超流被预测为最大,而当任何两个相邻层的磁化强度平行时,三重态超流为零。在这里,我们通过将三个层中的一个层的磁化方向旋转 90°来证明这种结中自旋三重态超流的开-关控制。我们获得了迄今为止研究的三个样品中超流的“开-关”比为 5、7 和 19。这些观察结果直接证实了该理论最显著预测之一,并为在新兴的“超导自旋电子学”领域中应用自旋三重态约瑟夫森结铺平了道路。