arXiv · 1106.6266
Millimeter-wave study of London penetration depth temperature dependence in Ba(Fe0.926Co0.074)2As2 single crystal
Abstract
In-plane surface Ka-band microwave impedance of optimally doped single crystals of the Fe-based superconductor Ba(Fe0.926Co0.074)2As2 (Tc= 22.8K) was measured. Sensitive sapphire disk quasi-optical resonator with high-Tc cuprate conducting endplates was developed specially for Fe-pnictide superconductors. It allowed finding temperature variation of London penetration depth in a form of power law, namely Δλ(T)~ Tn with n = 2.8 from low temperatures up to at least 0.6Tc consisted with radio-frequency measurements. This exponent points towards nodeless state with pairbreaking scattering, which can support one of the extended s-pairing symmetries. The dependence λ(T) at low temperatures is well described by one superconducting small-gap (Δ\cong 0.75 in kTc units, where k is Boltzman coefficient) exponential dependence.
Explore related subjects
Keep this discovery
A. A. Barannik, N. T. Cherpak, N. Ni, M. A. Tanatar, S. A. Vitusevich, V. N. Skresanov, P. C. Canfield, R. Prozorov, V. V. Glamazdin, K. I. Torokhtii. 2011-06-30. Millimeter-wave study of London penetration depth temperature dependence in Ba(Fe0.926Co0.074)2As2 single crystal. https://doi.org/10.1063/1.3660321
Cite the original work for its findings. Save a collection to share your selection of sources.