Magnetic fluctuations near the Van Hove singularity in the kagome-lattice Hubbard model at finite doping
arXiv:2603.01004 · doi:10.1103/yfwy-q6y9
Abstract
The kagome-lattice Hubbard model attracts widespread interest due to its flat-band and Van Hove singularity features, which can give rise to unconventional magnetism. We employ determinant quantum Monte Carlo simulations to systematically investigate the uniform magnetic susceptibility across a range of on-site interactions and electron fillings on a two-dimensional kagome lattice. Beyond the Van Hove singularity, dominant ferromagnetic fluctuations emerge. Magnetic susceptibility grows markedly with increasing interaction strength and decreasing temperature, indicating that the Van Hove singularity acts as a critical point for the crossover of dominant magnetic fluctuations. Finite-size analysis further suggests the potential stabilization of a finite-temperature ferromagnetic phase. We also examine the sign problem to identify numerically reliable parameter regimes. These results provide valuable insights into controlling magnetic fluctuations in kagome systems and establish a computational framework for exploring flat-band physics in regimes characterized by novel quantum phases and competing orders.
8 pages and 7 figures. Published version in Phys. Rev. B
References in corpus (29)
- CsVSb: a topological kagome metal with a superconducting ground state
- Discovery of unconventional chiral charge order in kagome superconductor KV3Sb5
- Roton pair density wave and unconventional strong-coupling superconductivity in a topological kagome metal
- Room-temperature ferromagnetism in graphite driven by 2D networks of point defects
- Time-reversal symmetry-breaking charge order in a kagome superconductor
- Charge density waves and electronic properties of superconducting kagome metals
- Negative flat band magnetism in a spin-orbit coupled correlated kagome magnet
- Observation of Unconventional Charge Density Wave without Acoustic Phonon Anomaly in Kagome Superconductors AV3Sb5 (A=Rb,Cs)
- Analysis of Charge Order in the Kagome Metal VSb (K,Rb,Cs)
- Nature of unconventional pairing in the kagome superconductors AVSb
- Electronic Nature of Charge Density Wave and Electron-Phonon Coupling in Kagome Superconductor KVSb
- Kagome superconductors AVSb (A=K, Rb, Cs)
- Fantastic flat bands and where to find them: The CoSn-type compounds
- Flat-Bands-Enabled Triplet Excitonic Insulator in a Di-atomic Kagome Lattice
- Geometry Dependence of the Sign Problem
- Kinetic ferromagnetism on a kagome lattice
- Quantum Monte Carlo Study of Pairing Symmetry and Correlation in Iron-based Superconductors
- Tuning the flat bands of the kagome metal CoSn with Fe, In, or Ni doping
- Gapless excitations inside the fully gapped kagome superconductors AVSb
- Superconductivity and bosonic fluid emerging from Moiré flat bands
- Doping quantum spin liquids on the Kagome lattice
- Magnetic ground states in kagome YCu(OH)[(ClBr)(OH)]
- Flatband-Induced Itinerant Ferromagnetism in RbCoSe
- Flat-band ferromagnetism and spin waves in the Haldane-Hubbard model
- Magnetic phase diagram of the three-dimensional doped Hubbard model
- Spectroscopic origin of giant anomalous Hall effect in an interwoven magnetic kagome metal
- Intriguing kagome topological materials
- Strong ferromagnetic fluctuations in a doped checkerboard lattice
- Flat-band ferromagnetism in a correlated topological insulator on a honeycomb lattice