Superconducting properties of tin-copper amorphous thin films
Abstract
The thermodynamic properties of the superconducting state in the amorphous thin films have been characterized. The concentration of copper changes in the range from to . The calculations have been conducted in the framework of the strong-coupling formalism, wherein the Eliashberg functions determined in the tunnel experiment (Phys. Rev. B {\bf 51}, 685 (1995)) have been used. The value of the Coulomb pseudopotential equal to has been adopted. It has been found that the critical temperature () decreases from K to K. The ratio of the energy gap to the critical temperature: , differs significantly from the BCS value: . Similarly behaves the ratio of the specific heat jump to the specific heat of the normal state: , and the parameter: , where is the thermodynamic critical field. In particular, and .
Keywords
Cite
@article{arxiv.1602.04780,
title = {Superconducting properties of tin-copper amorphous thin films},
author = {E. A. Drzazga and R. Szczęśniak and I. A. Domagalska and and K. Piwowarska},
journal= {arXiv preprint arXiv:1602.04780},
year = {2016}
}