The kagome lattice has long been regarded as a theoretical framework that connects lattice geometry to unusual singularities in electronic structure. Transition metal kagome compounds have been recently identified as a promising material platform to investigate the long-sought electronic flat band. Here we report the signature of a two-dimensional flat band at the surface of antiferromagnetic kagome metal FeSn by means of planar tunneling spectroscopy. Employing a Schottky heterointerface of FeSn and an n-type semiconductor Nb-doped SrTiO3, we observe an anomalous enhancement in tunneling conductance within a finite energy range of FeSn. Our first-principles calculations show this is consistent with a spin-polarized flat band localized at t...
Electronic systems with flat bands are predicted to be a fertile ground for hosting emergent phenome...
By exploiting the geometric frustration of a kagome crystal lattice, it is possible to enhance elect...
A large anomalous Hall effect (AHE) has been observed in ferromagnetic Fe3Sn2 with breathing kagome ...
AbstractThe kagome lattice has long been regarded as a theoretical framework that connects lattice g...
Kagome lattices host flat bands due to their frustrated lattice geometry, which leads to destructive...
Due to the particularity of the lattice geometry, intriguing electronic characteristics of Dirac con...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electron...
Electronic flat bands in momentum space, arising from strong localization of electrons in real space...
Kagome lattice hosts a plethora of quantum states arising from the interplay of topology, spin-orbit...
Kagome metals are as an exciting playground for the explorations of novel phenomena at the intersect...
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...
By exploiting the geometric frustration of a kagome crystal lattice, it is possible to enhance elect...
A large anomalous Hall effect (AHE) has been observed in ferromagnetic Fe3Sn2 with breathing kagome ...
AbstractThe kagome lattice has long been regarded as a theoretical framework that connects lattice g...
Kagome lattices host flat bands due to their frustrated lattice geometry, which leads to destructive...
Due to the particularity of the lattice geometry, intriguing electronic characteristics of Dirac con...
Electronic properties of kagome lattice have drawn great attention recently. In associate with flat-...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
A kagome lattice of 3d transition metal ions is a versatile platform for correlated topological phas...
Systems with flat bands are ideal for studying strongly correlated electronic states and related phe...
Among condensed matter systems, Mott insulators exhibit diverse properties that emerge from electron...
Electronic flat bands in momentum space, arising from strong localization of electrons in real space...
Kagome lattice hosts a plethora of quantum states arising from the interplay of topology, spin-orbit...
Kagome metals are as an exciting playground for the explorations of novel phenomena at the intersect...
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...
By exploiting the geometric frustration of a kagome crystal lattice, it is possible to enhance elect...
A large anomalous Hall effect (AHE) has been observed in ferromagnetic Fe3Sn2 with breathing kagome ...