Enhancement of the d_{x^2-y^2} pairing correlation in the two-dimensional Hubbard model: a quantum Monte Carlo study
arXiv:cond-mat/9707277 · doi:10.1103/PhysRevB.56.R14287
Abstract
Quantum Monte Carlo is used to investigate the possibility of d_{x^2-y^2} superconductivity in the two-dimensional repulsive Hubbard model. A small energy scale relevant to possible pairing requires a care (i.e., sufficiently small level separation between the points and with small 's) to detect enhanced correlations in finite-size studies, as motivated from a previous study on Hubbard ladders. Our calculation indeed detects long-tailed enhancements in the d_{x^2-y^2} pairing correlation when the system is near, but not exactly at, half-filling.
4 pages, RevTeX, uses epsf.sty and multicol.sty
References in corpus (2)
Cited by in corpus (20)
- Variational Monte Carlo Study on the Superconductivity in the Two-Dimensional Hubbard Model
- Superconductivity and spin correlation in organic conductors: a quantum Monte Carlo study
- Spin-fluctuation exchange study of superconductivity in two- and three-dimensional single-band Hubbard models
- Possible high superconductivity mediated by antiferromagnetic spin fluctuations in systems with Fermi surface pockets
- High temperature superconductivity in dimer array systems
- Off-diagonal Wave Function Monte Carlo Studies of Hubbard Model I
- Superconductivity assisted by inter-layer pair hopping in multi-layered cuprates
- Quantum Monte Carlo study of the pairing symmetry competition in the Hubbard model
- Quantum Mott Transition and Multi-Furcating Criticality
- A consistent description of the pairing symmetry in hole and electron doped cuprates within the two dimensional Hubbard model
- Possibility of superconductivity in the repulsive Hubbard model on the Shastry-Sutherland lattice
- Exact BCS stochastic schemes for a time dependent many-body fermionic system
- Superconductivity in quantum-dot superlattices composed of quantum wire networks
- Superconductivity from a long-range interaction: a crossover between the electron gas and the lattice model
- Coherence and correlation properties of a one-dimensional attractive Fermi gas
- Development of superconducting correlation at low temperatures in the two-dimensional t-J model
- From d- to p-wave pairing in the t-t' Hubbard model at zero temperature
- Hybridization-induced superconductivity from the electron repulsion on a tetramer lattice having a disconnected Fermi surface
- Nonequilibrium magnetic and superconducting phases in the two-dimensional Hubbard model coupled to electrodes
- Analysis of Superconductivity in d-p Model on Basis of Perturbation Theory