Cai Ranran, Yao Yunyan, Lv Peng, Ma Yang, Xing Wenyu, Li Boning, Ji Yuan, Zhou Huibin, Shen Chenghao, Jia Shuang, Xie X C, Žutić Igor, Sun Qing-Feng, Han Wei
International Center for Quantum Materials, School of Physics, Peking University, 100871, Beijing, P. R. China.
Collaborative Innovation Center of Quantum Matter, 100871, Beijing, P. R. China.
Nat Commun. 2021 Nov 18;12(1):6725. doi: 10.1038/s41467-021-27041-w.
Fundamental symmetry breaking and relativistic spin-orbit coupling give rise to fascinating phenomena in quantum materials. Of particular interest are the interfaces between ferromagnets and common s-wave superconductors, where the emergent spin-orbit fields support elusive spin-triplet superconductivity, crucial for superconducting spintronics and topologically-protected Majorana bound states. Here, we report the observation of large magnetoresistances at the interface between a quasi-two-dimensional van der Waals ferromagnet FeTaS and a conventional s-wave superconductor NbN, which provides the possible experimental evidence for the spin-triplet Andreev reflection and induced spin-triplet superconductivity at ferromagnet/superconductor interface arising from Rashba spin-orbit coupling. The temperature, voltage, and interfacial barrier dependences of the magnetoresistance further support the induced spin-triplet superconductivity and spin-triplet Andreev reflection. This discovery, together with the impressive advances in two-dimensional van der Waals ferromagnets, opens an important opportunity to design and probe superconducting interfaces with exotic properties.
基本对称性破缺和相对论性自旋轨道耦合在量子材料中引发了迷人的现象。特别令人感兴趣的是铁磁体与常见s波超导体之间的界面,其中出现的自旋轨道场支持难以捉摸的自旋三重态超导性,这对于超导自旋电子学和拓扑保护的马约拉纳束缚态至关重要。在此,我们报告了在准二维范德华铁磁体FeTaS与传统s波超导体NbN之间的界面处观察到的大磁电阻,这为由于Rashba自旋轨道耦合在铁磁体/超导体界面处产生的自旋三重态安德烈夫反射和诱导自旋三重态超导性提供了可能的实验证据。磁电阻的温度、电压和界面势垒依赖性进一步支持了诱导自旋三重态超导性和自旋三重态安德烈夫反射。这一发现,连同二维范德华铁磁体取得的令人瞩目的进展,为设计和探测具有奇异特性的超导界面提供了一个重要契机。