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

Lin, Y. S., Wang, S. Y., Zhang, X., Feng, Y., Pan, Y. P., Ru, H., Zhu, J. J., Xiang, B. K., Liu, K., Zheng, C. L., Wei, L. Y., Wang, M. X., Liu, Z. K., Chen, L., Jiang, K., Guo, Y. F., Wang, Ziqiang, Wang, Y. H.

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.

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