Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,2,3,4. 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...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
The kagome lattice, which is the most prominent structural motif in quantum physics, benefits from i...
The kagome lattice, which is the most prominent structural motif in quantum physics, benefits from i...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics. ...
Kagome superconductors with TC up to 7 K have been discovered for over 40 y. Recently, unconventiona...
Kagome superconductors with TC up to 7 K have been discovered for over 40 y. Recently, unconventiona...
Kagome superconductors with TC up to 7 K have been discovered for over 40 y. Recently, unconventiona...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
The kagome lattice, which is the most prominent structural motif in quantum physics, benefits from i...
The kagome lattice, which is the most prominent structural motif in quantum physics, benefits from i...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1-...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics. ...
Kagome superconductors with TC up to 7 K have been discovered for over 40 y. Recently, unconventiona...
Kagome superconductors with TC up to 7 K have been discovered for over 40 y. Recently, unconventiona...
Kagome superconductors with TC up to 7 K have been discovered for over 40 y. Recently, unconventiona...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
Superconductors with kagome lattices have been identified for over 40 years, with a superconducting ...
The kagome lattice, which is the most prominent structural motif in quantum physics, benefits from i...
The kagome lattice, which is the most prominent structural motif in quantum physics, benefits from i...