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Nodeless superconductivity in the presence of spin-density wave in pnictide superconductors: The case of BaFe2−xNixAs2

机译:在自旋密度波存在的情况下,无锡超导体中的无结超导电性:BaFe2-xNixAs2的情况

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摘要

The characteristics of Fe-based superconductors are manifested in their electronic, magnetic properties, and pairing symmetry of the Cooper pair, but the latter remain to be explored. Usually in these materials, superconductivity coexists and competes with magnetic order, giving unconventional pairing mechanisms. We report on the results of the bulk magnetization measurements in the superconducting state and the low-temperature specific heat down to 0.4 K for BaFe2−xNixAs2 single crystals. The electronic specific heat displays a pronounced anomaly at the superconducting transition temperature and a small residual part at low temperatures in the superconducting state. The normal-state Sommerfeld coefficient increases with Ni doping for x=0.092, 0.096, and 0.10, which illustrates the competition between magnetism and superconductivity. Our analysis of the temperature dependence of the superconducting-state specific heat and the London penetration depth provides strong evidence for a two-band s-wave order parameter. Further, the data of the London penetration depth calculated from the lower critical field follow an exponential temperature dependence, characteristic of a fully gapped superconductor. These observations clearly show that the superconducting gap in the nearly optimally doped compounds is nodeless.
机译:铁基超导体的特性体现在其电子,磁性和库珀对的配对对称性上,但后者仍有待探索。通常,在这些材料中,超导会共存并与磁序竞争,从而形成非常规的配对机制。我们报告了BaFe2-xNixAs2单晶在超导状态和低至0.4 K的低温比热下的大块磁化强度测量结果。电子比热在超导转变温度下显示出明显的异常,而在超导状态下则在低温下显示出小的残留部分。 x = 0.092、0.096和0.10时,Ni掺杂时,常态Sommerfeld系数增加,这说明了磁性和超导性之间的竞争。我们对超导状态比热和伦敦渗透深度的温度依赖性的分析为两波段s波阶参数提供了有力的证据。此外,从下临界场计算出的伦敦穿透深度的数据服从指数温度依赖性,这是全间隙超导体的特征。这些观察清楚地表明,几乎最佳掺杂的化合物中的超导间隙是无节点的。

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