Evidence of strong correlations and coherence-incoherence crossover in the iron pnictide superconductor KFe2As2

Using resistivity, heat-capacity, thermal-expansion, and susceptibility measurements we study the normal-state behavior of KFe2As2. Both the Sommerfeld coefficient (γ≈103 mJ mol(-1) K(-2)) and the Pauli susceptibility (χ≈4×10(-4)) are strongly enhanced, which confirm the existence of heavy quasipart...

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Veröffentlicht in:Physical review letters 2013-07, Vol.111 (2), p.027002-027002
Hauptverfasser: Hardy, F, Böhmer, A E, Aoki, D, Burger, P, Wolf, T, Schweiss, P, Heid, R, Adelmann, P, Yao, Y X, Kotliar, G, Schmalian, J, Meingast, C
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Sprache:eng
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Zusammenfassung:Using resistivity, heat-capacity, thermal-expansion, and susceptibility measurements we study the normal-state behavior of KFe2As2. Both the Sommerfeld coefficient (γ≈103 mJ mol(-1) K(-2)) and the Pauli susceptibility (χ≈4×10(-4)) are strongly enhanced, which confirm the existence of heavy quasiparticles inferred from previous de Haas-van Alphen and angle-resolved photoemission spectroscopy experiments. We discuss this large enhancement using a Gutzwiller slave-boson mean-field calculation, which shows the proximity of KFe2As2 to an orbital-selective Mott transition. The temperature dependence of the magnetic susceptibility and the thermal expansion provide strong experimental evidence for the existence of a coherence-incoherence crossover, similar to what is found in heavy fermion and ruthenate compounds, due to Hund's coupling between orbitals.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.111.027002