arXiv · 1106.5471
Multi-gap superconductivity in single crystals of Ba$_{0.65}$Na$_{0.35}$Fe$_2$As$_2$: A calorimetric investigation
Abstract
We investigate the electronic properties and the superconducting gap characteristics of a single crystal of hole-doped 122 Fe-pnictide Ba$_{0.65}$Na$_{0.35}$Fe$_2$As$_2$ by means of specific heat measurements. The specific heat exhibits a pronounced anomaly around the superconducting transition temperature $T_c$ = 29.4 K, and a small residual part at low temperature. In a magnetic field of 90 kOe, the transition is broadened and $T_c$ is lowered insignificantly by an amount $\sim$ 1.5 K. We estimate a high electronic coefficient in the normal state with a value 57.5 mJ mol$^{-1}$ K$^2$, being consistent with hole-doped 122 compounds. The temperature-dependent superconducting electronic specific heat cannot be described with single-gap BCS theory under weak coupling approach. Instead, our analysis implies a presence of two s-wave like gaps with magnitudes $Δ_1(0)/k_BT_c$ = 1.06 and $Δ_2(0)/k_BT_c$ = 2.08 with their respective weights of 48% and 52%. While our results have qualitative similarities with other hole-doped 122 materials, the gap's magnitude and their ratio are quite different.
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A. K. Pramanik, M. Abdel-Hafiez, S. Aswartham, A. U. B. Wolter, S. Wurmehl, V. Kataev, B. Büchner. 2011-06-27. Multi-gap superconductivity in single crystals of Ba$_{0.65}$Na$_{0.35}$Fe$_2$As$_2$: A calorimetric investigation. https://doi.org/10.1103/physrevb.84.064525
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