Kondo decoherence: finding the right spin model for iron impurities in gold and silver

We exploit the decoherence of electrons due to magnetic impurities, studied via weak localization, to resolve a long-standing question concerning the classic Kondo systems of Fe impurities in the noble metals gold and silver: which Kondo-type model yields a realistic description of the relevant mult...

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Veröffentlicht in:Phys. Rev. Lett 2009-02, Vol.102 (5), p.056802-056802, Article 056802
Hauptverfasser: Costi, T A, Bergqvist, L, Weichselbaum, A, von Delft, J, Micklitz, T, Rosch, A, Mavropoulos, P, Dederichs, P H, Mallet, F, Saminadayar, L, Bäuerle, C
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Sprache:eng
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Zusammenfassung:We exploit the decoherence of electrons due to magnetic impurities, studied via weak localization, to resolve a long-standing question concerning the classic Kondo systems of Fe impurities in the noble metals gold and silver: which Kondo-type model yields a realistic description of the relevant multiple bands, spin, and orbital degrees of freedom? Previous studies suggest a fully screened spin S Kondo model, but the value of S remained ambiguous. We perform density functional theory calculations that suggest S=3/2. We also compare previous and new measurements of both the resistivity and decoherence rate in quasi-one-dimensional wires to numerical renormalization group predictions for S=1/2, 1, and 3/2, finding excellent agreement for S=3/2.
ISSN:0031-9007
1079-7114
1079-7114
DOI:10.1103/physrevlett.102.056802