Tunneling spectroscopy reveals Hund-induced superdispersion in Sr2RuO4, matching DFT+DMFT predictions via non-monotonic real-part self-energy.
Fanfarillo \ and\ author E
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VMC study of two-orbital Hubbard-Kanamori model finds s± superconductivity only near Mott state at half-filling with no orbital selectivity, unlike three-orbital models.
Cr substitution induces hole doping and Hund's correlations in BaFe2As2, with superconductivity suppressed by local-moment competition instead of Fermi-surface evolution.
citing papers explorer
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Revealing Hund superdispersion with tunneling spectroscopy
Tunneling spectroscopy reveals Hund-induced superdispersion in Sr2RuO4, matching DFT+DMFT predictions via non-monotonic real-part self-energy.
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Variational Monte Carlo study of a two-orbital Hubbard model for the iron pnictides
VMC study of two-orbital Hubbard-Kanamori model finds s± superconductivity only near Mott state at half-filling with no orbital selectivity, unlike three-orbital models.
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Hole doping and electronic correlations in Cr-substituted BaFe$_{2}$As$_{2}$
Cr substitution induces hole doping and Hund's correlations in BaFe2As2, with superconductivity suppressed by local-moment competition instead of Fermi-surface evolution.