Politecnico di Torino, Department of Applied Science and Technology, Torino 10129, Italy.
Istituto Nazionale di Fisica Nucleare, Sezione di Torino, Torino 10125, Italy.
Phys Rev Lett. 2018 Sep 7;121(10):107001. doi: 10.1103/PhysRevLett.121.107001.
Microwave measurements of the London penetration depth and critical temperature T_{c} were used to show evidence of a disordered-driven transition from s_{±} to s_{++} order parameter symmetry in optimally doped Ba(Fe_{1-x}Rh_{x}){2}As{2} single crystals, where disorder was induced by means of 3.5 MeV proton irradiation. Signatures of such a transition, as theoretically predicted [V. D. Efremov et al., Phys. Rev. B 84, 180512(R) (2011)PRBMDO1098-012110.1103/PhysRevB.84.180512], are found as a drop in the low-temperature values of the London penetration depth and a virtually disorder-independent superconducting T_{c}. We show how these experimental observations can be described by multiband Eliashberg calculations in which the effect of disorder is accounted for in a suitable way. To this aim, an effective two-band approach is adopted, allowing us to treat disorder in a range between the Born approximation and the unitary limit.
微波测量伦敦穿透深度和临界温度 Tc 被用来证明在最佳掺杂 Ba(Fe1-xRhx)2As2 单晶中,从 s±到 s++ 序参量对称的无序驱动转变的证据,其中无序是通过 3.5 MeV 质子辐照引入的。这种转变的特征,正如理论预测的那样[V. D. Efremov 等人,物理评论 B84, 180512(R)(2011)PRBMDO1098-012110.1103/PhysRevB.84.180512],表现为低温下伦敦穿透深度值下降和超导 Tc 几乎与无序无关。我们展示了这些实验观察结果如何可以通过多带 Eliashberg 计算来描述,其中无序的影响以适当的方式考虑。为此,采用了有效的双带方法,使我们能够在 Born 近似和单位极限之间的范围内处理无序。