arXiv · 1909.04734
Analysis of the London penetration depth in Ni-doped CaKFe4As4
Abstract
We report combined experimental and theoretical analysis of superconductivity in CaK(Fe$_{1-x}$Ni$_x$)$_4$As$_4$ (CaK1144) for $x=$0, 0.017 and 0.034. To obtain the superfluid density, $ρ=\left(1+Δλ_L(T)/λ_L(0) \right)^{-2}$, the temperature dependence of the London penetration depth, $Δλ_L (T)$, was measured by using tunnel-diode resonator (TDR) and the results agreed with the microwave coplanar resonator (MWR) with the small differences accounted for by considering a three orders of magnitude higher frequency of MWR. The absolute value of $λ_L (T \ll T_c) \approx λ_L(0)$ was measured by using MWR, $λ_L (\mathrm{5~K}) \approx 170 \pm 20$ nm, which agreed well with the NV-centers in diamond optical magnetometry that gave $λ_L (\mathrm{5~K}) \approx 196 \pm 12$ nm. The experimental results are analyzed within the Eliashberg theory, showing that the superconductivity of CaK1144 is well described by the nodeless s$_{\pm}$ order parameter and that upon Ni doping the interband interaction increases.
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D. Torsello, K. Cho, K. R. Joshi, S. Ghimire, G. A. Ummarino, N. M. Nusran, M. A. Tanatar, W. R. Meier, M. Xu, S. L. Budko, P. C. Canfield, G. Ghigo, R. Prozorov. 2019-09-10. Analysis of the London penetration depth in Ni-doped CaKFe4As4. https://doi.org/10.1103/physrevb.100.094513
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