论文标题
在BI2SR2CACU2O8+x中识别列对列对密度波状态
Identification of a Nematic Pair Density Wave State in Bi2Sr2CaCu2O8+x
论文作者
论文摘要
现在,电子对密度波(PDW)状态是在丘比特相关超导性领域的强烈研究重点。 PDW会定期调节超导电子配对,可以使用扫描的Josephson隧道显微镜(SJTM)直接可视化。尽管从理论中,将D波超导(DSC)和PDW订单参数交织在一起允许出现大量的全球电子产品订单,这实际上发生在各种库酸酯中是未知的。在这里,我们使用SJTM可视化PDW和DSC状态在BI2SR2CACU2O8+X中的相互作用,在载体密度下,电荷密度波(CDW)调制几乎不存在。同时可视化它们的幅度表明,相互交织的PDW和DSC是相互吸引的状态。然后,通过分别对两个正交PDW的电子对密度调制进行成像,我们发现了强大的列表PDW状态。它的空间排列需要相反的nematicities域,每个域主要由单向和晶格组成,将电子对密度调制。此外,我们通过直接成像表明,鉴定锌杂质原子位点的散射共振主要发生在这些域之间的边界内。这意味着列型PDW状态是由Zn原子固定的,如最近提出的那样(Lozano等,物理评论,B 103,L020502(2021))。结合使用,这些数据表明BI2SR2CACU2O8+X中的PDW是一个残留的列对置密度波状态(J. Wardh和M. Granath Arxiv:2203.08250V1)。
Electron-pair density wave (PDW) states are now an intense focus of research in the field of cuprate correlated superconductivity. PDWs exhibit periodically modulating superconductive electron pairing which can be visualized directly using scanned Josephson tunneling microscopy (SJTM). Although from theory, intertwining the d-wave superconducting (DSC) and PDW order parameters allows a plethora of global electron-pair orders to appear, which one actually occurs in the various cuprates is unknown. Here we use SJTM to visualize the interplay of PDW and DSC states in Bi2Sr2CaCu2O8+x at a carrier density where the charge density wave (CDW) modulations are virtually nonexistent. Simultaneous visualization of their amplitudes reveals that the intertwined PDW and DSC are mutually attractive states. Then, by separately imaging the electron-pair density modulations of the two orthogonal PDWs, we discover a robust nematic PDW state. Its spatial arrangement entails Ising domains of opposite nematicity, each consisting primarily of unidirectional and lattice commensurate electron-pair density modulations. Further, we demonstrate by direct imaging that the scattering resonances identifying Zn impurity atom sites occur predominantly within boundaries between these domains. This implies that the nematic PDW state is pinned by Zn atoms, as was recently proposed (Lozano et al, PHYSICAL REVIEW B 103, L020502 (2021)). Taken in combination, these data indicate that the PDW in Bi2Sr2CaCu2O8+x is a vestigial nematic pair density wave state (J. Wardh and M. Granath arXiv:2203.08250v1).