Jiang Yu-Xiao, Yin Jia-Xin, Denner M Michael, Shumiya Nana, Ortiz Brenden R, Xu Gang, Guguchia Zurab, He Junyi, Hossain Md Shafayat, Liu Xiaoxiong, Ruff Jacob, Kautzsch Linus, Zhang Songtian S, Chang Guoqing, Belopolski Ilya, Zhang Qi, Cochran Tyler A, Multer Daniel, Litskevich Maksim, Cheng Zi-Jia, Yang Xian P, Wang Ziqiang, Thomale Ronny, Neupert Titus, Wilson Stephen D, Hasan M Zahid
Laboratory for Topological Quantum Matter and Advanced Spectroscopy (B7), Department of Physics, Princeton University, Princeton, NJ, USA.
Department of Physics, University of Zurich, Zurich, Switzerland.
Nat Mater. 2021 Oct;20(10):1353-1357. doi: 10.1038/s41563-021-01034-y. Epub 2021 Jun 10.
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics. A charge-density-wave-like order with orbital currents has been proposed for achieving the quantum anomalous Hall effect in topological materials and for the hidden phase in cuprate high-temperature superconductors. However, the experimental realization of such an order is challenging. Here we use high-resolution scanning tunnelling microscopy to discover an unconventional chiral charge order in a kagome material, KVSb, with both a topological band structure and a superconducting ground state. Through both topography and spectroscopic imaging, we observe a robust 2 × 2 superlattice. Spectroscopically, an energy gap opens at the Fermi level, across which the 2 × 2 charge modulation exhibits an intensity reversal in real space, signalling charge ordering. At the impurity-pinning-free region, the strength of intrinsic charge modulations further exhibits chiral anisotropy with unusual magnetic field response. Theoretical analysis of our experiments suggests a tantalizing unconventional chiral charge density wave in the frustrated kagome lattice, which can not only lead to a large anomalous Hall effect with orbital magnetism, but also be a precursor of unconventional superconductivity.
将量子序与非平凡拓扑结构交织在一起处于凝聚态物理的前沿。一种具有轨道电流的类电荷密度波序已被提出,用于在拓扑材料中实现量子反常霍尔效应以及铜酸盐高温超导体中的隐藏相。然而,这种序的实验实现具有挑战性。在这里,我们使用高分辨率扫描隧道显微镜在一种具有拓扑能带结构和超导基态的 Kagome 材料 KVSb 中发现了一种非常规的手性电荷序。通过形貌和光谱成像,我们观察到一个稳定的 2×2 超晶格。在光谱上,费米能级处打开了一个能隙,在这个能隙上,2×2 电荷调制在实空间中表现出强度反转,这表明存在电荷序。在无杂质钉扎区域,本征电荷调制的强度进一步表现出手性各向异性以及异常的磁场响应。对我们实验的理论分析表明,在受挫的 Kagome 晶格中存在一种诱人的非常规手性电荷密度波,它不仅可以导致具有轨道磁性的大反常霍尔效应,而且还可能是非常规超导的前兆。