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Role of valence changes and nanoscale atomic displacements in BiS2-based superconductors

机译:化合价变化和纳米级原子位移在基于BiS2的超导体中的作用

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摘要

Superconductivity within layered crystal structures has attracted sustained interest among condensed matter community, primarily due to their exotic superconducting properties. EuBiS2F is a newly discovered member in the BiS2-based superconducting family, which shows superconductivity at 0.3 K without extrinsic doping. With 50 at.% Ce substitution for Eu, superconductivity is enhanced with Tc increased up to 2.2 K. However, the mechanisms for the Tc enhancement have not yet been elucidated. In this study, the Ce-doping effect on the self-electron-doped superconductor EuBiS2F was investigated by X-ray absorption spectroscopy (XAS). We have established a relationship between Ce-doping and the Tc enhancement in terms of Eu valence changes and nanoscale atomic displacements. The new finding sheds light on the interplay among superconductivity, charge and local structure in BiS2-based superconductors.
机译:分层晶体结构内的超导性一直吸引着凝聚态物质界的持续关注,这主要是由于它们具有奇异的超导特性。 EuBiS2F是基于BiS2的超导族中的新发现成员,该超导族在0.3 K的温度下显示出超导性,而没有外部掺杂。用50%at。%的Ce代替Eu,Tc升高到2.2 K时,超导性得到了增强,但是,Tc增强的机理尚未阐明。在这项研究中,通过X射线吸收光谱(XAS)研究了Ce掺杂对自电子掺杂超导体EuBiS2F的影响。我们已经根据Eu价变化和纳米级原子位移建立了Ce掺杂与Tc增强之间的关系。这一新发现阐明了基于BiS2的超导体中超导性,电荷和局部结构之间的相互作用。

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