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- W4206929862 abstract "We report thermoelectric studies of ${mathrm{FeS}}_{1ensuremath{-}x}{mathrm{Se}}_{x}$ ($x=0,0.06$) superconducting single crystals that feature high irreversibility fields and critical current density ${J}_{c}$ comparable to materials with much higher superconducting critical temperatures (${T}_{c}$'s). The ratio of ${T}_{c}$ to the Fermi temperature ${T}_{F}$ is very small, indicating weak electronic correlations. With a slight selenium substitution on sulfur site in FeS both ${T}_{c}/{T}_{F}$ and the effective mass ${m}^{*}$ rise considerably, implying increase in electronic correlation of the bulk conducting states. The first-principle calculations show rise of the density of states at the Fermi level in ${mathrm{FeS}}_{0.94}{mathrm{Se}}_{0.06}$ when compared to FeS, which is related not only to Fe but also to chalcogen-derived electronic states." @default.
- W4206929862 created "2022-01-26" @default.
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- W4206929862 date "2022-01-24" @default.
- W4206929862 modified "2023-09-27" @default.
- W4206929862 title "Thermoelectricity and electronic correlation enhancement in FeS by light Se doping" @default.
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- W4206929862 doi "https://doi.org/10.1103/physrevb.105.045133" @default.
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