Dichotomy of flat bands in the van der Waals ferromagnet FeGeTe
arXiv:2508.03029 · doi:10.1103/tbk8-zg11
Abstract
Quantum materials with bands of narrow bandwidth near the Fermi level represent a promising platform for exploring a diverse range of fascinating physical phenomena, as the high density of states within the small energy window often enables the emergence of many-body physics. On one hand, flat bands can arise from strong Coulomb interactions that localize atomic orbitals. On the other hand, quantum destructive interference can quench the electronic kinetic energy. Although both have a narrow bandwidth, the two types of flat bands should exhibit very distinct spectral properties arising from their distinctive origins. So far, the two types of flat bands have only been realized in very different material settings and chemical environments, preventing a direct comparison. Here, we report the observation of the two types of flat bands within the same material system--an above-room-temperature van der Waals ferromagnet, FeGeTe, distinguishable by a switchable iron site order. The contrasting nature of the flat bands is also identified by the remarkably distinctive temperature-evolution of the spectral features, indicating that one arises from electron correlations in the Fe(1) site-disordered phase, while the other geometrical frustration in the Fe(1) site-ordered phase. Our results therefore provide a direct juxtaposition of the distinct formation mechanism of flat bands in quantum materials, and an avenue for understanding the distinctive roles flat bands play in the presence of magnetism, topology, and lattice geometrical frustration, utilizing sublattice ordering as a key control parameter.
The manuscript was submitted on June 12 2024
References in corpus (36)
- High temperature fractional quantum Hall states
- Fractional quantum Hall states at zero magnetic field
- Emergent Phenomena Induced by Spin-Orbit Coupling at Surfaces and Interfaces
- CsVSb: a topological kagome metal with a superconducting ground state
- Nearly-flat bands with nontrivial topology
- Heavy Fermions and Quantum Phase Transitions
- Flat bands and Wigner crystallization in the honeycomb optical lattice
- Progress and prospects in magnetic topological materials
- Orbital superfluidity in the -band of a bipartite optical square lattice
- Discovery of charge density wave in a correlated kagome lattice antiferromagnet
- Ironing out the details of unconventional superconductivity
- Observation of Temperature-Induced Crossover to an Orbital-Selective Mott Phase in AFeSe (A=K, Rb) Superconductors
- Intertwined magnetism and charge density wave order in kagome FeGe
- AVSb Kagome Superconductors: Progress and Future Directions
- Flat bands, strange metals, and the Kondo effect
- Gate-tunable heavy fermions in a moiré Kondo lattice
- Two-dimensional Lattice Gauge Theories with Superconducting Quantum Circuits
- Superconductivity emerging from density-wave-like order in a correlated kagome metal
- A flat band-induced correlated kagome metal
- Pervasive beyond room-temperature ferromagnetism in a doped van der Waals magnet: Ni doped FeGeTe with up to 478 K
- Large-scale epitaxy of two-dimensional van der Waals room-temperature ferromagnet Fe5GeTe2
- Observation of degenerate zero-energy topological states at disclinations in an acoustic lattice
- Correlation-Driven Electronic Reconstruction in FeTeSe
- Non-Fermi liquid behavior in a correlated flatband pyrochlore lattice
- Coupled topological flat and wide bands: Quasiparticle formation and destruction
- Correlated Electronic Structure and Incipient Flat Bands of the Kagome Superconductor CsCr3Sb5
- Spectral Evidence for Local-Moment Ferromagnetism in van der Waals Metals FeGaTe and FeGeTe
- Reversible Non-Volatile Electronic Switching in a Near Room Temperature van der Waals Ferromagnet
- Observation of Flat Bands and Dirac Cones in a Pyrochlore Lattice Superconductor
- Thermal cycling induced alteration of the stacking order and spin-flip in the room temperature van der Waals magnet FeGeTe
- Spin Excitations and Flat Electronic Bands in a Cr-based Kagome Superconductor
- Persistent flat band splitting and strong selective band renormalization in a kagome magnet thin film
- Flatband-Induced Itinerant Ferromagnetism in RbCoSe
- Angle-resolved photoemission spectroscopy with an tunable magnetic field
- Two-Step Electronic Response to Magnetic Ordering in a van der Waals Ferromagnet
- Flat bands and distinct density wave orders in correlated Kagome superconductor CsCrSb