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Ab-initio computation of superconducting properties of elemental superconductors and MgB2

Version 2 2024-03-12, 14:20
Version 1 2024-03-01, 09:39
journal contribution
posted on 2024-03-12, 14:20 authored by A. Continenza, G. Profeta, Andrea FlorisAndrea Floris, C. Franchini, S. Massidda, N. N. Lathiotakis, M. A. L. Marques, M. Lüders, E. K. U. Gross
<p>We present ab-initio predictions of superconducting properties of some elemental superconductors and of MgB2, based on the Super-Conducting Density Functional theory (SC-DFT). This formalism allows a description of superconducting properties at thermal equilibrium by means of three “densities”: the ordinary electron density, the superconducting order parameter, and the diagonal of the nuclear N-body density matrix. These quantities are determined through self-consistent solutions of Bogoliubov-de Gennes Kohn-Sham like equations, involving exchange-correlation potentials which are universal functionals of the three above-mentioned quantities. By means of approximate expressions for the relevant functionals, we obtain an ab-initio description of the superconducting state, completely free of empirical parameters. The results of our present implementation of SC-DFT for selected materials are discussed in terms of superconducting energy gap, critical temperature and specific heat, and compared with experiments.</p>

History

School affiliated with

  • School of Mathematics and Physics (Research Outputs)

Publication Title

Journal of Superconductivity

Volume

18

Issue

5-6

Pages/Article Number

649-652

Publisher

Springer verlag

ISSN

0896-1107

eISSN

1572-9605

Date Submitted

2016-06-07

Date Accepted

2005-11-01

Date of First Publication

2005-09-15

Date of Final Publication

2005-11-01

Date Document First Uploaded

2016-06-07

ePrints ID

22811

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