English

Electron-phonon coupling and two-band superconductivity of Al- and C-doped MgB2

Superconductivity 2010-12-16 v1 Materials Science

Abstract

We have studied the electron-phonon and superconducting properties of the Mg{1-x}AlxB2 and MgB{2(1-y)}C{2y} alloys within the framework of density functional theory using the self-consistent virtual-crystal approximation. For both alloys, the Eliashberg spectral functions and the electron-phonon coupling constants have been calculated in the two-band model for several concentrations up to x(Al)=0.55 and y(C)=0.175. We solved numerically the two-band Eliashberg gap equations without considering interband scattering. Using a single parameter for the Coulomb pseudopotential, which was determined for the undoped compound, we were able to reproduce the experimental doping dependence of Delta_sigma, Delta_pi, and T_c for both alloys on a quantitative level. In particular, the observed differences in the doping range of superconductivity between Al and C doping indicate a pronounced influence of the doping site, which can be explained naturally in the present approach without the need to invoke interband scattering, suggesting that this factor plays only a minor role.

Keywords

Cite

@article{arxiv.1012.3330,
  title  = {Electron-phonon coupling and two-band superconductivity of Al- and C-doped MgB2},
  author = {O. De la Peña-Seaman and R. de Coss and R. Heid and K. -P. Bohnen},
  journal= {arXiv preprint arXiv:1012.3330},
  year   = {2010}
}

Comments

18 pages, 6 figures