Pairing correlation of the Kagome-lattice Hubbard model with the nearest-neighbor interaction
arXiv:2501.00251 · doi:10.1088/1674-1056/ad7578
Abstract
A recently discovered family of Kagome lattice materials, (= ), has attracted great interest, especially in the debate over its dominant superconducting pairing symmetry. To explore this issue, we study the superconducting pairing behavior within the Kagome-Hubbard model through the constrained path Monte Carlo method. It is found that doping around the Dirac point generates a dominant next-nearest-neighbour- pairing symmetry driven by on-site Coulomb interaction . However, when considering the nearest-neighbor interaction , it may induce nearest-neighbor- pairing to become the preferred pairing symmetry. Our results provide useful information to identify the dominant superconducting pairing symmetry in family.
References in corpus (26)
- CsVSb: a topological kagome metal with a superconducting ground state
- Unconventional Fermi surface instabilities in the Kagome Hubbard Model
- Time-reversal symmetry-breaking charge order in a kagome superconductor
- Charge density waves and electronic properties of superconducting kagome metals
- Three-dimensional charge density wave and robust zero-bias conductance peak inside the superconducting vortex core of a kagome superconductor CsVSb
- Unusual competition of superconductivity and charge-density-wave state in a compressed topological kagome metal
- Analysis of Charge Order in the Kagome Metal VSb (K,Rb,Cs)
- Nature of unconventional pairing in the kagome superconductors AVSb
- Kagome superconductors AVSb (A=K, Rb, Cs)
- Multiband superconductivity with sign-preserving order parameter in kagome superconductor CsV3Sb5
- Three-state nematicity and magneto-optical Kerr effect in the charge density waves in kagome superconductors
- Electronic nature of chiral charge order in the kagome superconductor CsV3Sb5
- Mechanism of exotic density-wave and beyond-Migdal unconventional superconductivity in kagome metal AV3Sb5 (A=K, Rb, Cs)
- Possible Triplet Superconductivity in Graphene at Low Filling
- Superconductivity from repulsive interactions on the kagome lattice
- Emergent nematicity and intrinsic vs. extrinsic electronic scattering processes in the kagome metal CsVSb
- Gapless excitations inside the fully gapped kagome superconductors AVSb
- Dynamical Study of the Origin of the Charge Density Wave in VSb (K, Rb, Cs) Compounds
- Small Fermi pockets intertwined with charge stripes and pair density wave order in a kagome superconductor
- Quantum Monte Carlo study of superconductivity in rhombohedral trilayer graphene under an electric field
- Diagnosis of pairing symmetry by vortex and edge spectra in kagome superconductors
- Electronic orders on the kagome lattice at the lower Van Hove filling
- Spin triplet superconducting pairing in doped MoS
- Electrical and thermal transport properties of kagome metals AVSb (A=K, Rb, Cs)
- Probing the pairing symmetry in kagome superconductors based on the single-particle spectrum
- Unconventional ferromagnetism and spin-triplet superconductivity in the imbalanced Kagome-lattice Hubbard model