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Pairing symmetries of several iron-based superconductor families and some similarities with cuprates and heavy-fermions

机译:几种铁基超导体族的配对对称性以及与铜酸盐和重费米子的一些相似性

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We show that, by using the unit-cell transformation between 1 Fe per unit cell to 2 Fe per unit cell, one can qualitatively understand the pairing symmetry of several families of iron-based superconductors. In iron-pnictides and iron-chalcogenides, the nodeless s±-pairing and the resulting magnetic resonance mode transform nicely between the two unit cells, while retaining all physical properties unchanged. However, when the electron-pocket disappears from the Fermi surface with complete doping in KFe2As2, we find that the unit-cell invariant requirement prohibits the occurrence of s±-pairing symmetry (caused by inter-hole-pocket nesting). However, the intra-pocket nesting is compatible here, which leads to a nodal d-wave pairing. The corresponding Fermi surface topology and the pairing symmetry are similar to Ce-based heavy-fermion superconductors. Furthermore, when the Fermi surface hosts only electron-pockets in KyFe2-xSe2, the inter-electron-pocket nesting induces a nodeless and isotropic d-wave pairing. This situation is analogous to the electron-doped cuprates, where the strong antiferromagnetic order creates similar disconnected electron-pocket Fermi surface, and hence nodeless d-wave pairing appears. The unit-cell transformation in KyFe2-xSe2 exhibits that the d-wave pairing breaks the translational symmetry of the 2 Fe unit cell, and thus cannot be realized unless a vacancy ordering forms to compensate for it. These results are consistent with the coexistence picture of a competing order and nodeless d-wave superconductivity in both cuprates and KyFe1.6Se2.
机译:我们表明,通过使用每单位电池1 Fe到每单位电池2 Fe之间的单位电池转换,人们可以定性地理解几个铁基超导体家族的配对对称性。在铁素化物和硫属硫属化物中,无结点的s±对和所产生的磁共振模式在两个晶胞之间很好地转换,同时保持所有物理特性不变。然而,当在KFe2As2中完全掺杂而使电子囊从费米表面消失时,我们发现晶胞不变性要求阻止了s±配对对称性的发生(由空穴间的嵌套引起)。但是,此处的袋内嵌套是兼容的,这导致节点d波配对。相应的费米表面拓扑和配对对称性类似于基于Ce的重费米子超导体。此外,当费米表面仅容纳KyFe2-xSe2中的电子口袋时,电子口袋间的嵌套会引起无节点且各向同性的d波对。这种情况类似于电子掺杂的铜酸盐,其中强反铁磁序会产生类似的断开的电子口袋费米表面,因此出现无节点的d波对。 KyFe2-xSe2中的晶胞转换显示出d波对破坏了2 Fe晶胞的平移对称性,因此除非以空位排序形式对其进行补偿才能实现。这些结果与铜酸盐和KyFe1.6Se2中竞争级和无节点d波超导的共存图片一致。

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