arXiv · 1511.05017
Tracing the $s_\pm$-symmetry in iron pnictides by controlled disorder
Abstract
Consecutive proton irradiation of iron pnictides reduces the superconducting transition temperature to decrease monotonically. Our systematic optical THz investigations of Ba(Fe$_{0.9}$Co$_{0.1}$)$_2$As$_2$ thin films reveal, however, that the low-energy superconducting gap is first suppressed, but recovers for higher irradiation doses. At the same time the decrease of the superfluid density with disorder comes to a halt. These observations are in excellent agreement with theoretical calculations, which predict a disorder-induced transition of the order parameter from $s_{\pm}$ to $s_{++}$ symmetry. Thereby we solve the longstanding puzzle of the iron pnictides gap symmetry in favor of $s_{\pm}$-symmetry and demonstrate THz spectroscopy as a tool to determine the symmetry of the superconducting order parameter.
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Micha Benjamin Schilling, Andreas Baumgartner, Boris Gorshunov, Elena Zhukova, Valery Dravin, Kiril Mitsen, Dmitri Efremov, Oleg Dolgov, Kazumasa Iida, Martin Dressel, Sina Zapf. 2016-05-24. Tracing the $s_\pm$-symmetry in iron pnictides by controlled disorder. https://doi.org/10.1103/physrevb.93.174515
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