Observation of an isolated flat band in the van der Waals crystal NbOCl2
Abstrak
Abstract Dispersionless electronic bands lead to an extremely high density of states and suppressed kinetic energy, thereby increasing electronic correlations and instabilities that can shape emergent ordered states, such as excitonic, ferromagnetic, and superconducting phases. A flat band that extends over the entire momentum space and is well isolated from other dispersive bands is, therefore, particularly interesting. Here, the band structure of the van der Waals crystal NbOCl2 is revealed by utilizing photoelectron momentum microscopy. We directly map out an electronic band that is flat throughout the entire Brillouin zone and features a width of only ~ 100 meV. This band is well isolated from both the conduction and remote valence bands. Moreover, the quasiparticle band gap shows a high tunability upon the deposition of cesium atoms on the surface. By combining the single-particle band structure with the optical transmission spectrum, the optical gap is identified. The fully isolated flat band in a van der Waals crystal provides a qualitatively new testbed for exploring flat-band physics.
Topik & Kata Kunci
Penulis (14)
Changhua Bao
Vincent Eggers
Manuel Meierhofer
Jakob Helml
Lasse Münster
Suguru Ito
Leon Machtl
Sarah Zajusch
Giacomo Inzani
Ludwig Wittmann
Marlene Liebich
Robert Wallauer
Ulrich Höfer
Rupert Huber
Akses Cepat
- Tahun Terbit
- 2026
- Sumber Database
- DOAJ
- DOI
- 10.1038/s43246-025-01070-0
- Akses
- Open Access ✓