An Effective Field Model to High Temperature Superconductors: Fitting of The Energy Gap to the Experimental Results of the
arXiv:cond-mat/0006411
Abstract
We use an effective field model (transverse Ising model) to describe the dependence on the temperature of the energy gap of some two-dimensional superconducting systems. The order parameter of this model is put in a direct correspondence with that of the Ising model. Then, we use the exact relations for the spontaneous magnetization of the Ising model in some lattices as a means to fit the experimental results of films obtained through reflectivity measurements by Brunel et al [Phys. Rev. Lett. 66, 1346 (1991)] and the argon-annealed samples investigated by Staufer et al [Phys. Rev. Lett. 68, 1069 (1992)] through Raman scattering. The zero temperature energy gap relations were evaluated in various lattices and also in the simple cubic lattice, for comparison. In the square lattice case we obtained , coincidentally the same number as the BCS result, and in the triangular lattice case we get in agreement with the experimental findings of Brunel et al.
11 pages, 4 figures