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首页> 外文期刊>Physica, C. Superconductivity and its applications >Unconventional superconductivity originating from disconnected Fermi surfaces in correlated superconductors: A case study for iron pnictides
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Unconventional superconductivity originating from disconnected Fermi surfaces in correlated superconductors: A case study for iron pnictides

机译:相关超导体中不连续的费米面引起的超常规超导性:铁离子的案例研究

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We first generally summarize the effect of disconnected Fermi surfaces in spin fluctuation mediated superconductivity. We argue that disconnected Fermi surfaces are favorable in that the sign of the superconducting gap can be changed without nodal lines intersecting the Fermi surface. Then, as an example of actual materials that have disconnected Fermi surfaces, we focus on the iron-based high T_c superconductors. We construct a model that contains all of the five Fe d bands, and apply random-phase approximation. We find that multiple spin fluctuation modes develop due to the nesting between disconnected Fermi surfaces, and the superconductivity originating from the cooperation or competition between these multiple spin fluctuation modes depends on the lattice structure. In particular, the appearance of the Fermi surface around (π,π) in the unfolded Brillouin zone is sensitive to the pnictogen height h_(Pn) measured from the Fe plane, and the height can act as a switch between high T_c nodeless and low T_c nodal pairings. In the high T_c case, the superconducting gap is fully open on all of the five Fermi surfaces, but changes sign across the nesting vectors that bridge the disconnected Fermi surfaces.
机译:我们首先通常总结不连续的费米表面在自旋涨落介导的超导中的作用。我们认为,断开的费米表面是有利的,因为可以改变超导间隙的符号而无需使节线与费米表面相交。然后,以断开费米表面的实际材料为例,我们将重点放在铁基高T_c超导体上。我们构建了一个包含所有五个Fe d波段的模型,并应用随机相位近似。我们发现,由于不连续的费米面之间的嵌套而形成了多个自旋波动模式,而源自这些多个自旋波动模式之间的协作或竞争的超导性取决于晶格结构。特别是,在未折叠的布里渊区(π,π)周围的费米表面的出现对从Fe平面测得的光生原高度h_(Pn)敏感,并且该高度可以充当高T_c无结点和低结点之间的切换T_c节点配对。在高T_c情况下,超导间隙在所有五个费米表面上都完全开放,但在桥接不相连费米表面的嵌套向量上改变符号。

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