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Iron Isotope Effect and Local Lattice Dynamics in the (Ba K)Fe2As2 Superconductor Studied by Temperature-Dependent EXAFS

机译:温度依赖的EXAFS研究(BaK)Fe2As2超导体中的铁同位素效应和局部晶格动力学

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摘要

Currently available investigations of the isotope effect in Fe-based superconductors are all based on macroscopic resistivity and susceptibility measurements and results are highly controversial. Here we present an investigation of the Fe isotope effect in the (Ba, K)Fe2As2 superconductor by temperature-dependent EXAFS in the framework of Einstein model. This method separates the static structural isotope contribution and the local lattice isotope contribution. Results point out the isotope substitution has a negligible effect on inter-atomic distances. On the contrary, both the local vibrations of the Fe-As and the Fe-Fe bonds show strong iron isotope dependence, which is a marker of an “intrinsic” isotope effect. This bulk iron isotope contribution to the local lattice dynamics suggests the local phonons play an important role in the (Ba, K)Fe2As2 superconductor and a three-dimensional electron-phonon interaction should be considered to understand the superconducting mechanism of iron-based superconductors.
机译:目前对铁基超导体中同位素效应的现有研究均基于宏观电阻率和磁化率测量,结果存在很大争议。在这里,我们在爱因斯坦模型的框架下,通过温度依赖型EXAFS研究(Ba,K)Fe2As2超导体中的铁同位素效应。该方法将静态结构同位素贡献与局部晶格同位素贡献分开。结果指出,同位素取代对原子间距离的影响可忽略不计。相反,Fe-As和Fe-Fe键的局部振动都显示出强烈的铁同位素依赖性,这是“固有”同位素效应的标志。大量铁同位素对局部晶格动力学的贡献表明,局部声子在(Ba,K)Fe2As2超导体中起着重要作用,应考虑三维电子-声子相互作用,以了解铁基超导体的超导机理。

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