Thermodynamic properties of Ba1-xMxFe2As2 (M = La and K)

Abstract

The specific heat C(T) of BaFe2As2 single crystal, electron-doped Ba0.7La0.3Fe2As2 and hole-doped Ba0.5K0.5Fe2As2 polycrystals were measured. For undoped BaFe2As2 single crystal, a very sharp specific heat peak was observed at 136 K. This is attributed to the structural and antiferromagnetic transitions occurring at the same temperature. C(T) of the electron-doped non-superconducting Ba0.7La0.3Fe2As2 also shows a small peak at 120 K, indicating a similar but weaker structural/antiferromagnetic transition. For the hole-doped superconducting Ba0.5K0.5Fe2As2, a clear peak of C/T was observed at Tc = 36 K, which is the highest peak seen at superconducting transition for iron-based high-Tc superconductors so far. The electronic specific heat coefficient γ and Debye temperature D of these compounds were obtained from the low temperature data.

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