Jo Junhyeon, Peisen Yuan, Yang Haozhe, Mañas-Valero Samuel, Baldoví José J, Lu Yao, Coronado Eugenio, Casanova Fèlix, Bergeret F Sebastian, Gobbi Marco, Hueso Luis E
CIC nanoGUNE BRTA, Donostia-San Sebastian, Spain.
Instituto de Ciencia Molecular (ICMol), Universitat de València, Paterna, Spain.
Nat Commun. 2023 Nov 9;14(1):7253. doi: 10.1038/s41467-023-43111-7.
Two-dimensional magnets and superconductors are emerging as tunable building-blocks for quantum computing and superconducting spintronic devices, and have been used to fabricate all two-dimensional versions of traditional devices, such as Josephson junctions. However, novel devices enabled by unique features of two-dimensional materials have not yet been demonstrated. Here, we present NbSe/CrSBr van der Waals superconducting spin valves that exhibit infinite magnetoresistance and nonreciprocal charge transport. These responses arise from a unique metamagnetic transition in CrSBr, which controls the presence of localized stray fields suitably oriented to suppress the NbSe superconductivity in nanoscale regions and to break time reversal symmetry. Moreover, by integrating different CrSBr crystals in a lateral heterostructure, we demonstrate a superconductive spin valve characterized by multiple stable resistance states. Our results show how the unique physical properties of layered materials enable the realization of high-performance quantum devices based on novel working principles.
二维磁体和超导体正成为量子计算和超导自旋电子器件的可调谐构建模块,并已被用于制造传统器件的所有二维版本,如约瑟夫森结。然而,尚未证明由二维材料独特特性实现的新型器件。在此,我们展示了具有无限磁阻和非互易电荷传输特性的NbSe/CrSBr范德华超导自旋阀。这些响应源于CrSBr中独特的亚磁转变,该转变控制了局部杂散场的存在,这些杂散场的取向适合在纳米尺度区域抑制NbSe超导性并打破时间反演对称性。此外,通过在横向异质结构中集成不同的CrSBr晶体,我们展示了一种具有多个稳定电阻状态的超导自旋阀。我们的结果表明,层状材料的独特物理特性如何基于新颖的工作原理实现高性能量子器件。