Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electronic correlations. In itinerant metals, correlations are usually weak, but can also be enhanced via geometrical confinement of electrons, that manifest as `flat' dispersionless electronic bands. In the fast developing field of topological materials, which includes Dirac and Weyl semimetals, flat bands are one of the important components that can result in unusual magnetic and transport behaviour. To date, characterisation of flat bands and their magnetism is scarce, hindering the design of novel materials. Here, we investigate the ferromagnetic Kagom\'{e} semimetal Co$_3$Sn$_2$S$_2$ using resonant inelastic X-ray scattering. Remarkably, nearly ...
Electronic flat bands in momentum space, arising from strong localization of electrons in real space...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
The exploration of topological electronic phases that result from strong electronic correlations is ...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
The interplay between electronic correlations and topological protection may offer a rich avenue for...
The interplay between electronic correlations and topological protection may offer a rich avenue for...
Electronic systems with flat bands are predicted to be a fertile ground for hosting emergent phenome...
Electronic systems with flat bands are predicted to be a fertile ground for hosting emergent phenome...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
Kagome lattices host flat bands due to their frustrated lattice geometry, which leads to destructive...
The kagome lattice is a fertile platform to explore topological excitations with both Fermi-Dirac an...
Flat bands amplify correlation effects and are of extensive current interest. They provide a platfor...
Flat bands amplify correlation effects and are of extensive current interest. They provide a platfor...
The destructive interference of wavefunctions in a kagome lattice can give rise to topological flat ...
Electronic flat bands in momentum space, arising from strong localization of electrons in real space...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
The exploration of topological electronic phases that result from strong electronic correlations is ...
Topological materials hosting kagome lattices have drawn considerable attention due to the interplay...
The interplay between electronic correlations and topological protection may offer a rich avenue for...
The interplay between electronic correlations and topological protection may offer a rich avenue for...
Electronic systems with flat bands are predicted to be a fertile ground for hosting emergent phenome...
Electronic systems with flat bands are predicted to be a fertile ground for hosting emergent phenome...
The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry ...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
Kagome lattices host flat bands due to their frustrated lattice geometry, which leads to destructive...
The kagome lattice is a fertile platform to explore topological excitations with both Fermi-Dirac an...
Flat bands amplify correlation effects and are of extensive current interest. They provide a platfor...
Flat bands amplify correlation effects and are of extensive current interest. They provide a platfor...
The destructive interference of wavefunctions in a kagome lattice can give rise to topological flat ...
Electronic flat bands in momentum space, arising from strong localization of electrons in real space...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
The exploration of topological electronic phases that result from strong electronic correlations is ...