论文标题
直接观察Fe(SE,TE)中的量子异常涡流
Direct observation of quantum anomalous vortex in Fe(Se,Te)
论文作者
论文摘要
涡旋是外部磁场中II型超导体的拓扑缺陷。量子异常涡流(QAV)以类似的方式,由于涡旋核心状态与磁杂质矩之间的轨道和旋转交换相互作用,量子异常涡流(QAV)会自发成核,从而破坏了涡流的时间逆转对称性(TR),而没有外部场。在这里,我们使用扫描超导量子干扰装置显微镜(SSQUID)来寻找其在铁 - chalcogenide超导体FE(SE,TE)中的特征。在零磁场下,我们发现了带有通量量子$φ_0$的隔离异常涡流和抗替代物的随机分布。通过在纳米台式设备的线圈下施加一个小的局部磁场,我们观察到涡流的滞后式翻转让人联想到铁电磁域的切换,这表明局部破裂。我们进一步显示了磁通线的矢量旋转,该磁通线将配对的涡流抗体与局部场联系起来。这些异常涡度的这些独特属性满足了QAV的定义标准。我们的观察结果表明,在高温超导体中具有自发破碎的量子涡流相。
Vortices are topological defects of type-II superconductors in an external magnetic field. In a similar fashion to a quantum anomalous Hall insulator, quantum anomalous vortex (QAV) spontaneously nucleates due to orbital-and-spin exchange interaction between vortex core states and magnetic impurity moment, breaking time-reversal symmetry (TRS) of the vortex without an external field. Here, we used scanning superconducting quantum interference device microscopy (sSQUID) to search for its signatures in iron-chalcogenide superconductor Fe(Se,Te). Under zero magnetic field, we found a stochastic distribution of isolated anomalous vortices and antivortices with flux quanta $Φ_0$. By applying a small local magnetic field under the coil of the nano-SQUID device, we observed hysteretic flipping of the vortices reminiscent of the switching of ferromagnetic domains, suggesting locally broken-TRS. We further showed vectorial rotation of a flux line linking a paired vortex-antivortex with the local field. These unique properties of the anomalous vortices satisfied the defining criteria of QAV. Our observation suggests a quantum vortex phase with spontaneous broken-TRS in a high-temperature superconductor.