Structure and transport in multi-orbital Kondo systems
Abstract
We consider Kondo impurity systems with multiple local orbitals, such as rare earth ions in a metallic host or multi--level quantum dots coupled to metallic leads. It is shown that the multiplet structure of the local orbitals leads to multiple Kondo peaks above the Fermi energy , and to ``shadow'' peaks below . We use a slave boson mean field theory, which recovers the strong coupling Fermi liquid fixed point, to calculate the Kondo peak positions, widths, and heights analytically at T=0, and NCA calculations to fit the temperature dependence of high--resolution photoemission spectra of Ce compounds. In addition, an approximate conductance quantization for transport through multi--level quantum dots or single--atom transistors in the Kondo regime due to a generalized Friedel sum rule is demonstrated.
Cite
@article{arxiv.cond-mat/0702578,
title = {Structure and transport in multi-orbital Kondo systems},
author = {J. Kroha and S. Kirchner and G. Sellier and P. W"olfle and D. Ehm and F. Reinert and S. H"ufner and C. Geibel},
journal= {arXiv preprint arXiv:cond-mat/0702578},
year = {2015}
}
Comments
4 pages, 3 figures. Invited article, 23rd International Conference on Low Temperature Physics LT23, Hiroshima, Japan 2002