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- W2018335156 abstract "We investigated the onset of the many-body coherence in the $f$-orbital single crystalline alloys ${text{Ce}}_{1ensuremath{-}x}$${text{Yb}}_{x}$${text{CoIn}}_{5}$ ($0ensuremath{le}xensuremath{le}0.775$) through thermodynamic and magnetotransport measurements. Our study shows the evolution of the many-body electronic state as the Kondo lattice of Ce moments is transformed into an array of Ce impurities. Specifically, we observe a crossover from the predominantly localized Ce moment regime to the predominantly itinerant Yb $f$-electronic states regime for about 60$%$ of Yb doping. Our analysis of the residual resistivity data unveils the presence of correlations between Yb ions, while from our analysis of specific heat data we conclude that for $0.65ensuremath{le}xensuremath{le}0.775$, Yb $f$ electrons strongly interact with the conduction electrons while the Ce moments remain completely decoupled. The sublinear temperature dependence of resistivity across the whole range of Yb concentrations suggest the presence of a unconventional scattering mechanism for the conduction electrons." @default.
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- W2018335156 date "2014-03-05" @default.
- W2018335156 modified "2023-09-28" @default.
- W2018335156 title "From local moment to mixed-valence regime inCe1−xYbxCoIn5alloys" @default.
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- W2018335156 doi "https://doi.org/10.1103/physrevb.89.115106" @default.
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