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      Unconventional chiral charge order in kagome superconductor KV3Sb5

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          Abstract

          <p class="first" id="d568381e366">Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-4. A charge-density-wave-like order with orbital currents has been proposed for achieving the quantum anomalous Hall effect5,6 in topological materials and for the hidden phase in cuprate high-temperature superconductors7,8. 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, KV3Sb5, 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. </p>

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          Journal
          Nature Materials
          Nat. Mater.
          Springer Science and Business Media LLC
          1476-1122
          1476-4660
          June 10 2021
          Article
          10.1038/s41563-021-01034-y
          34112979
          c9fb15c8-4eae-421f-90d8-974ed12330e7
          © 2021

          https://www.springer.com/tdm

          https://www.springer.com/tdm

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