Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge order, and superconductivity. Existing scanning microscopy studies of the kagome charge order have been limited to non-kagome surface layers. Here we tunnel into the kagome lattice of FeGe to uncover features of the charge order. Our spectroscopic imaging identifes a 2x2 charge order in the magnetic kagome lattice, resembling that discovered in kagome superconductors. Spin-mapping across steps of unit-cell-height demonstrates that this charge order emerges from spin-polarized electrons with an antiferromagnetic stacking order. We further uncover the correlation between antiferromagnetism and charge order anisotropy, highlighting the unusual magnetic...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Motivated by the recent discovery of unconventional charge order, we develop a theory of electronica...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...
We investigate magnetic orderings on kagome lattice numerically from the tight-binding Hamiltonian o...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics. ...
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-...
Motivated by the recent discovery of unconventional charge order, we develop a theory of electronica...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Motivated by the recent discovery of unconventional charge order, we develop a theory of electronica...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
Kagome materials often host exotic quantum phases, including spin liquids, Chern gap, charge density...
A hallmark of strongly correlated quantum materials is the rich phase diagram resulting from competi...
We investigate magnetic orderings on kagome lattice numerically from the tight-binding Hamiltonian o...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics. ...
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-...
Motivated by the recent discovery of unconventional charge order, we develop a theory of electronica...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...
Motivated by the recent discovery of unconventional charge order, we develop a theory of electronica...
Intertwining quantum order and non-trivial topology is at the frontier of condensed matter physics1,...