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Effects of disorder induced by heavy-ion irradiation on (Ba1−x K x )Fe2As2 single crystals, within the three-band Eliashberg s± wave model

机译:在三能谱Eliashberg s±波模型中,重离子辐照引起的无序对(Ba1-x K x)Fe2As2单晶的影响

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摘要

One of the open issues concerning iron-based superconductors is whether the s± wave model is able to account for the overall effects of impurity scattering, including the low rate of decrease of the critical temperature with the impurity concentration. Here we investigate Ba1−x K x Fe2As2 crystals where disorder is introduced by Au-ion irradiation. Critical temperature, Tc , and London penetration depth, λL , were measured by a microwave resonator technique, for different values of the irradiation fluence. We compared experimental data with calculations made on the basis of the three-band Eliashberg equations, suitably accounting for the impurity scattering. We show that this approach is able to explain in a consistent way the effects of disorder both on Tc and on λL(T), within the s± wave model. In particular, a change of curvature in the low-temperature λL(T) curves for the most irradiated crystals is fairly well reproduced.
机译:关于铁基超导体的未解决问题之一是s±波模型是否能够考虑杂质散射的总体影响,包括临界温度随杂质浓度的降低率较低。在这里,我们研究了Ba1-x K x Fe2As2晶体,其中通过金离子辐照引入了无序。对于微波辐射通量的不同值,通过微波谐振器技术测量了临界温度Tc和伦敦穿透深度λL。我们将实验数据与基于三频带Eliashberg方程进行的计算进行了比较,并适当考虑了杂质的散射。我们表明,这种方法能够以一致的方式解释s±波模型中无序对Tc和λL(T)的影响。尤其是,对于辐射最多的晶体,低温λL(T)曲线的曲率变化可以很好地再现。

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