Pair binding and enhancement of pairing correlations in asymmetric Hubbard ladders
arXiv:2209.05192 · doi:10.1103/PhysRevB.107.125117
Abstract
Asymmetric two-leg Hubbard ladders with different on-site interactions and hoppings on each leg are investigated using the density matrix renormalization group method and exact diagonalizations. The pairing found in symmetric ladders is robust against the introduction of the leg asymmetry. When studying pairing, one-band Hubbard ladder models are better described as one-dimensional correlated two-band models than as sublattices of higher dimensional systems. The asymmetric Hubbard ladder provides us with a simple model for studying pairing in the crossover regime between charge transfer and Mott insulators.
References in corpus (7)
- The density-matrix renormalization group in the age of matrix product states
- Pair Density Wave correlations in the Kondo-Heisenberg Model
- Hubbard ladders at small revisited
- Pairing correlations in the cuprates: a numerical study of the three-band Hubbard model
- Absence of Luther-Emery Superconducting Phase in the Three-Band Model for Cuprate Ladders
- Induced Order in Nonequivalent Two-Leg Hubbard Ladder
- Coupled Hubbard ladders at weak coupling: Pairing and spin excitations