Hund flat band in a frustrated spinel oxide
arXiv:2502.07234 · doi:10.1073/pnas.2518213122
Abstract
Electronic flat bands associated with quenched kinetic energy and heavy electron mass have attracted great interest for promoting strong electronic correlations and emergent phenomena such as high-temperature charge fractionalization and superconductivity. Intense experimental and theoretical research has been devoted to establishing the rich non-trivial metallic and heavy fermion phases intertwined with such localized electronic states. Here, we investigate the transition metal oxide spinel LiV2O4, an enigmatic heavy fermion compound lacking localized f orbital states. We use angle-resolved photoemission spectroscopy and dynamical mean field theory to reveal a new kind of correlation-induced flat band with suppressed inter-atomic electron hopping arising from intra-atomic Hund coupling. The appearance of heavy quasiparticles is ascribed to a proximate orbital-selective Mott state characterized by fluctuating local moments as evidenced by complementary magnetotransport measurements. The spectroscopic fingerprints of long-lived quasiparticles and their disappearance with increasing temperature further support the emergence of a high-temperature bad metal state observed in transport data. This work resolves a long-standing puzzle on the origin of heavy fermion behavior and unconventional transport in LiV2O4. Simultaneously, it opens a new path to achieving flat bands through electronic interactions in d-orbital systems with geometrical frustration, potentially enabling the realization of exotic phases of matter such as the fractionalized Fermi liquids.
21 pages, 4 figures
References in corpus (29)
- The density-matrix renormalization group in the age of matrix product states
- Matrix Product Density Operators: Simulation of finite-T and dissipative systems
- Strong electronic correlations from Hund's coupling
- Observation of Fractionally Quantized Anomalous Hall Effect
- Fractionalized Fermi liquids
- Topological flat bands in frustrated kagome lattice CoSn
- Spin freezing transition and non-Fermi-liquid self-energy in a 3-orbital model
- The coherence-incoherence crossover and the mass-renormalization puzzles in Sr2RuO4
- Orbital-Selective Mott transition out of band degeneracy lifting
- How bad metals turn good: spectroscopic signatures of resilient quasiparticles
- Unified explanation of the Kadowaki-Woods ratio in strongly correlated materials
- Quasiparticle mass enhancement approaching optimal doping in a high-Tc superconductor
- Orbital-Dependent Electron Correlation in Double-Layer Nickelate La3Ni2O7
- Flat bands, strange metals, and the Kondo effect
- Flat bands promoted by Hund's rule coupling in the candidate double-layer high-temperature superconductor LaNiO
- RESPACK: An ab initio tool for derivation of effective low-energy model of material
- Doped Mott insulator as the origin of heavy Fermion behavior in LiV2O4
- Electron Correlation Driven Heavy-Fermion Formation in LiV2O4
- Crystal Net Catalog of Model Flat Band Materials
- Non-Fermi liquid behavior in a correlated flatband pyrochlore lattice
- SrMoO and SrRuO: Disentangling the Roles of Hund's and van Hove Physics
- The Hund-metal path to strong electronic correlations
- Emergence of flat bands and ferromagnetic fluctuations via orbital-selective electron correlations in Mn-based kagome metal
- Differentiating Hund from Mott physics in a three-band Hubbard-Hund model: Temperature dependence of spectral, transport, and thermodynamic properties
- Global phase diagram of a spin-orbital Kondo impurity model and the suppression of Fermi-liquid scale
- LiV2O4: Hund-Assisted Orbital-Selective Mottness
- Low-energy perspective on two-orbital Hund metals and the case of LaNiO2
- Ab initio study on heavy-fermion behavior in LiVO: Role of Hund's coupling and stability
- Stabilizing the calculation of the self-energy in dynamical mean-field theory using constrained residual minimization