arXiv · 1505.07496
Coulomb Enhanced Superconducting Pair Correlations in the Frustrated Quarter-Filled Band
Abstract
A necessary condition for superconductivity (SC) driven by electron correlations is that electron-electron (e-e) interactions enhance superconducting pair-pair correlations, relative to the noninteracting limit. We report high-precision numerical calculations of the ground state within the frustrated two-dimensional (2D) Hubbard Hamiltonian for a wide range of carrier concentration $ρ$ (0 < $ρ$ <1) per site. We find that long range superconducting pair correlations are enhanced only for $ρ$ $\simeq$ 0.5. At all other fillings e-e interactions mostly suppress pair correlations. The enhancement of pair correlations is driven by the strong tendency to local singlet bond formation and spin gap (SG) in $ρ$ = 0.5, in lattices with quantum fluctuation. We also report determinantal quantum Monte Carlo (DQMC) calculations that are in strong agreement with our ground state results. Our work provides a key ingredient to the mechanism of SC in the 2D organic charge-transfer solids (CTS), and many other unconventional superconductors with frustrated crystal lattices and $ρ$ $\simeq$ 0.5, while explaining the absence of SC in structurally related materials with substantially different $ρ$.
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Niladri Gomes, W. Wasanthi De Silva, Tirthankar Dutta, R. Torsten Clay, Sumit Mazumdar. 2015-05-27. Coulomb Enhanced Superconducting Pair Correlations in the Frustrated Quarter-Filled Band. https://doi.org/10.1103/physrevb.93.165110
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