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- W2253558963 abstract "Low-temperature specific-heat measurements are reported on $ensuremath{alpha}$-phase $Auensuremath{-}mathrm{Ga}$ alloys. The electronic specific-heat coefficient $ensuremath{gamma}$ is observed to increase upon alloying at the initial rate $frac{dmathrm{ln}ensuremath{gamma}}{mathrm{dz}}=0.95$. The Debye temperature is observed to decrease in the alloys at the rate - 1.63 K/at.%. The increase in $ensuremath{gamma}$ is compared with increasing values of $ensuremath{lambda}$, the electron-phonon mass enhancement as evaluated from measurements of the superconducting transition temperature. Comparison is also made between the values of $ensuremath{gamma}$ and $ensuremath{lambda}$ for $Agensuremath{-}mathrm{Ga}$ and $Cuensuremath{-}mathrm{Ga}$ $ensuremath{alpha}$-phase alloys. We find that the band-structure density of states at the Fermi level, ${N}_{mathrm{bs}}$ for $Auensuremath{-}mathrm{Ga}$ and $Amathrm{g}ensuremath{-}mathrm{Ga}$ alloys is a weakly increasing function of composition, while for $Cuensuremath{-}mathrm{Ga}$ alloys it is slightly decreasing and in good agreement with the calculations of Lasseter and Soven." @default.
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- W2253558963 date "1976-07-15" @default.
- W2253558963 modified "2023-09-25" @default.
- W2253558963 title "Low-temperature specific heat and superconductivity ofα-phaseAu−Gaalloys" @default.
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- W2253558963 doi "https://doi.org/10.1103/physrevb.14.441" @default.
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