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Spin Fluctuation, Orbital States and Non-conventional Superconductivity in Actinides Compounds

机译:肌腱化合物中的旋转波动,轨道状态和非常规超导性

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In t/-wave unconventional superconductors, superconducting Cooper pairs are believed to be formed via magnetic fluctuations. In fact, the superconducting transition temperature Tc roughly correlates with the antiferromagnetic spin fluctuation energy in rf-wave unconventional superconductors including high Tc cuprates. In addition to this correlations the superconducting pairing symmetry and the magnetic anisotropy of the normal state are found empirically to be strongly correlated in/-electron unconventional superconductors having crystallographic symmetry lower than cubic. In antiferromagnetic systems, unconventional superconductivity appears with singlet (d-wave) pairing for cases of XY anisotropy. In contrast, in ferromagnetic systems, unconventional superconductivity with triplet (e.g. p-wave) pairing appears for cases of Ising anisotropy. In this report, the rf-wave case is addressed, the origin of XY anisotropy is discussed in terms of the orbital character; and the angular momentum character jz for each piece of Fermi surfaces is determined.
机译:在T / -WAVE非传统超导体中,据信通过磁波动形成超导组合器对。实际上,超导转变温度Tc与包括高TC铜酸盐的RF波非常规超导体中的反铁磁旋转波动能量大致相关。除了这种相关性超导配对对称性和正常状态的磁各向异性被发现凭经验为强关联在/π电子非传统的超导体具有晶体学对称性低于立方。在防冻系统中,对于XY各向异性案例的单次(D波)配对出现非常规超导。相反,在铁磁性系统中,出现具有三重态(例如p波)配对的非传统超导,以便进行各向异性的情况。在本报告中,解决了RF波案例,XY各向异性的起源在轨道特征方面讨论;确定每条费米表面的角动量字符JZ。

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