Absence of superconductivity in the half-filled band Hubbard model on the anisotropic triangular lattice
arXiv:0805.0590 · doi:10.1103/PhysRevLett.101.166403
Abstract
We report exact calculations of magnetic and superconducting pair-pair correlations for the half-filled band Hubbard model on an anisotropic triangular lattice. Our results for the magnetic phases are similar to those obtained with other techniques. The superconducting pair-pair correlations at distances beyond nearest neighbor decrease monotonically with increasing Hubbard interaction U for all anisotropy, indicating the absence of frustration-driven superconductivity within the model.
4 pages, 4 EPS figures
References in corpus (9)
- The Hubbard model on the triangular lattice: Spiral order and spin liquid
- Does Simple Two-Dimensional Hubbard Model Account for High-Tc Superconductivity in Copper Oxides?
- Comparison of the phase diagram of the half-filled layered organic superconductors with the phase diagram of the RVB theory of the Hubbard-Heisenberg model
- Mott Transition in a Valence Bond Solid Insulator with a Triangular Lattice
- Exact diagonalization study of Mott transition in the Hubbard model on an anisotropic triangular lattice
- Symmetry of the superconducting order parameter in frustrated systems determined by the spatial anisotropy of spin correlations
- Magnetism and d-wave superconductivity on the half-filled square lattice with frustration
- Quantum critical transition from charge-ordered to superconducting state in the triangular lattice negative-U extended Hubbard model
- Superconducting Pairing Symmetries in Anisotropic Triangular Quantum Antiferromagnets