Observation of electronic nematicity driven by three-dimensional charge density wave in kagome lattice KVSb
arXiv:2208.01499 · doi:10.1021/acs.nanolett.3c01151
Abstract
Kagome superconductors AVSb (A = K, Rb, Cs) provide a fertile playground for studying intriguing phenomena, including non-trivial band topology, superconductivity, giant anomalous Hall effect and charge density wave (CDW). Recently, a symmetric nematic phase prior to the superconducting state in AVSb drew enormous attention due to its potential inheritance of the symmetry of the unusual superconductivity. However, direct evidence on the rotation symmetry breaking of the electronic structure in the CDW state from the reciprocal space is still rare, and the underlying mechanism remains ambiguous. The observation shows unconventional unidirectionality, indicative of rotation symmetry breaking from six-fold to two-fold. The interlayer coupling between adjacent planes with -phase offset in the 222 CDW phase leads to the preferred two-fold symmetric electronic structure. These rarely observed unidirectional back-folded bands in KVSb may provide important insights into its peculiar charge order and superconductivity.