English

Transmission through correlated Cu$_n$CoCu$_n$ heterostructures

Materials Science 2015-09-02 v1

Abstract

The effects of local electronic interactions and finite temperatures upon the transmission across the Cu4_4CoCu4_4 metallic heterostructure are studied in a combined density functional and dynamical mean field theory. It is shown that, as the electronic correlations are taken into account via a local but dynamic self-energy, the total transmission at the Fermi level gets reduced (predominantly in the minority spin channel), whereby the spin polarization of the transmission increases. The latter is due to a more significant dd-electrons contribution, as compared to the non-correlated case in which the transport is dominated by ss and pp electrons.

Keywords

Cite

@article{arxiv.1504.06588,
  title  = {Transmission through correlated Cu$_n$CoCu$_n$ heterostructures},
  author = {L. Chioncel and C. Morari and A. Östlin and W. H. Appelt and A. Droghetti and M. M. Radonjić and I. Rungger and L. Vitos and U. Eckern and A. V. Postnikov},
  journal= {arXiv preprint arXiv:1504.06588},
  year   = {2015}
}

Comments

29 pages, 7 figures, submited to PRB