Quasiparticles in d-wave superconductors within density functional theory

Citation
Z. Szotek et al., Quasiparticles in d-wave superconductors within density functional theory, J PHYS-COND, 13(38), 2001, pp. 8625-8652
Citations number
36
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
JOURNAL OF PHYSICS-CONDENSED MATTER
ISSN journal
09538984 → ACNP
Volume
13
Issue
38
Year of publication
2001
Pages
8625 - 8652
Database
ISI
SICI code
0953-8984(20010924)13:38<8625:QIDSWD>2.0.ZU;2-0
Abstract
We present a semiphenomenological approach to calculating the quasiparticle spectra of high-temperature superconductors. It is based on a particularly efficient parametrization of the effective electron-electron interaction a fforded by the density functional theory for superconductors and a tight-bi nding linearized-muffin-tin-orbital scheme for solving the corresponding Ko hn-Sham-Bogoliubov-de Gennes equations. We apply this methodology to YBa2Cu 3O7-delta (YBCO) and illustrate its potential by investigating a number of site- and orbital-specific, but otherwise phenomenological, models of pairi ng in quantitative detail. We compare our results for the anisotropy of the gap function on the Fermi surface with those deduced from photoemission ex periments on single crystals of YBCO. Also, the low-temperature specific he at and penetration depth are calculated and compared with measurements. We investigate the doping dependence of the superconducting gap, transition te mperature, T-c, and penetration depth. We present new evidence that the Van Hove-like scenario is an essential feature of superconductivity in the cup rate superconductors. Since our description of pairing is phenomenological, we shed new light on the physical mechanism of pairing only indirectly and conclude, provisionally, that the dominant pairing interaction operates be tween electrons of opposite spins, on nearest-neighbour Cu sites in d(x2-y2 ) orbitals.