论文标题
强磁场在NBSE2和CRCL3的范德华异源面中引起的重新出现的超导性
Strong in-plane magnetic field induced reemergent superconductivity in the van der Waals heterointerface of NbSe2 and CrCl3
论文作者
论文摘要
通常认为磁场与超导性不兼容,因为它倾向于旋转电子并拆分相反的旋转单线超导库珀对。在这里,观察到一种实验现象,即引人入胜的重新出现的超导性从传统的超导性发生,经历了驼峰状的中间相,在分层NBSE2和CRCL3球的范德华瓦尔斯异源方面具有有限的电阻。与NBSE2薄片的参考样品相比,当施加的磁场平行于样品平面并垂直于电流方向时,这种现象仅发生。重新出现超导阶段的强烈各向异性指向Fulde-Ferrell-Larkin-ovchinnikov(FFLO)的性质,该状态是由NBSE2和CRCL3层之间强的界面自旋轨道耦合驱动的。提出了由约瑟夫森涡流诱导的fflo状态节点的理论图片,以很好地了解重新出现超导性的实验性观察。这一发现阐明了一个机会,可以在范德华异质结构中以强大的界面自旋轨道耦合寻找异国情调的FFLO状态。
A magnetic field is generally considered to be incompatible with superconductivity as it tends to spin-polarize electrons and breaks apart the opposite-spin singlet superconducting Cooper pairs. Here, an experimental phenomenon is observed that an intriguing reemergent superconductivity evolves from a conventional superconductivity undergoing a hump-like intermediate phase with a finite electric resistance in the van der Waals heterointerface of layered NbSe2 and CrCl3 flakes. This phenomenon merely occurred when the applied magnetic field is parallel to the sample plane and perpendicular to the electric current direction as compared to the reference sample of a NbSe2 thin flake. The strong anisotropy of the reemergent superconducting phase is pointed to the nature of the Fulde-Ferrell-Larkin-Ovchinnikov (FFLO) state driven by the strong interfacial spin-orbit coupling between NbSe2 and CrCl3 layers. The theoretical picture of FFLO state nodes induced by Josephson vortices collectively pinning is presented for well understanding the experimental observation of the reemergent superconductivity. This finding sheds light on an opportunity to search for the exotic FFLO state in the van der Waals heterostructures with strong interfacial spin-orbit coupling.