Superfluid characteristics of the attractive Hubbard model for various lattice structures
arXiv:cond-mat/9701046 · doi:10.1016/S0921-4534(96)00554-0
Abstract
We study the basic thermodynamic and electromagnetic properties of the superconductor described by the negative- Hubbard model (gap parameter , critical temperature , London penetration depth , thermodynamic critical field and Ginzburg-Landau correlation length ).The calculations are performed for square (SQ, d=2), simple cubic (SC, d=3) and face-centered cubic (FCC, d=3) lattices. We analyze the results as a function of electron density and interaction using the Hartree-Fock approximation in the weak-to-intermediate case combined with the conclusions from the perturbation theory valid in the strong coupling limit. From the equality: $λ/ξ_{G-L}}=1/\sqrt{2}$ we find the boundaries between local and nonlocal electronic behaviour of the Hubbard model in the parameter space. Using the calculated values of and we compare the `universal plot' of vs. ( where: denotes maximum as a function of and corresponds to ) with the recent experimental data for various families of nonconventional superconductors and conclude that the best agreement can be obtained for intermediate values of the local attraction. Keywords: negative- Hubbard model, London penetration depth, high- superconductivity
24 pages, 15 figures