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Possible unconventional superconductivity in substituted BaFe2As2 revealed by magnetic pair-breaking studies

机译:磁对断裂研究揭示了取代BaFe2As2中可能的非常规超导性

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摘要

The possible existence of a sign-changing gap symmetry in BaFe2As2-derived superconductors (SC) has been an exciting topic of research in the last few years. To further investigate this subject we combine Electron Spin Resonance (ESR) and pressure-dependent transport measurements to investigate magnetic pair-breaking effects on BaFe1.9M0.1As2 (M = Mn, Co, Cu, and Ni) single crystals. An ESR signal, indicative of the presence of localized magnetic moments, is observed only for M = Cu and Mn compounds, which display very low SC transition temperature (Tc) and no SC, respectively. From the ESR analysis assuming the absence of bottleneck effects, the microscopic parameters are extracted to show that this reduction of Tc cannot be accounted by the Abrikosov-Gorkov pair-breaking expression for a sign-preserving gap function. Our results reveal an unconventional spin- and pressure-dependent pair-breaking effect and impose strong constraints on the pairing symmetry of these materials.
机译:在最近几年中,BaFe2As2衍生的超导体(SC)中可能存在符号变化的间隙对称性,这一直是令人兴奋的研究课题。为了进一步研究该主题,我们结合了电子自旋共振(ESR)和压力依赖性传输测量,以研究对BaFe1.9M0.1As2(M = Mn,Co,Cu和Ni)单晶的磁对断裂效应。仅对M = Cu和Mn化合物观察到了表示存在局部磁矩的ESR信号,它们分别显示出非常低的SC转变温度(Tc)和无SC。从没有瓶颈效应的ESR分析中,提取了微观参数,以表明Tc的这种降低不能由Abrikosov-Gorkov对破式表达来解释,以保留符号。我们的结果揭示了非常规的自旋和压力依赖性成对断裂效应,并对这些材料的成对对称性施加了强力约束。

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