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Fully gapped superconductivity with no sign change in the prototypical heavy-fermion CeCu2Si2

机译:完全重隙的超导电性原型重金属CeCu2Si2中无符号变化

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摘要

In exotic superconductors, including high-Tc copper oxides, the interactions mediating electron Cooper pairing are widely considered to have a magnetic rather than a conventional electron-phonon origin. Interest in this exotic pairing was initiated by the 1979 discovery of heavy-fermion superconductivity in CeCu2Si2, which exhibits strong antiferromagnetic fluctuations. A hallmark of unconventional pairing by anisotropic repulsive interactions is that the superconducting energy gap changes sign as a function of the electron momentum, often leading to nodes where the gap goes to zero. We report low-temperature specific heat, thermal conductivity, and magnetic penetration depth measurements in CeCu2Si2, demonstrating the absence of gap nodes at any point on the Fermi surface. Moreover, electron irradiation experiments reveal that the superconductivity survives even when the electron mean free path becomes substantially shorter than the superconducting coherence length. This indicates that superconductivity is robust against impurities, implying that there is no sign change in the gap function. These results show that, contrary to long-standing belief, heavy electrons with extremely strong Coulomb repulsions can condense into a fully gapped s-wave superconducting state, which has an on-site attractive pairing interaction.
机译:在包括高Tc氧化铜的奇异超导体中,介导电子库珀对的相互作用被广泛认为具有磁性,而不是传统的电子声子起源。对这种奇异配对的兴趣是由1979年在CeCu2Si2中发现重铁费超导所引起的,该超导电性表现出强烈的反铁磁波动。各向异性排斥相互作用引起的非常规配对的标志是,超导能隙随电子动量的变化而改变符号,通常导致间隙变为零的节点。我们报告了CeCu2Si2中低温比热,热导率和磁穿透深度的测量结果,表明在费米表面上的任何点都没有间隙节点。此外,电子辐照实验表明,即使电子平均自由程明显短于超导相干长度,超导性仍然存在。这表明超导电性对杂质具有鲁棒性,这意味着间隙函数没有符号变化。这些结果表明,与长期以来的信念相反,具有极强库仑斥力的重电子可以凝聚成完全带隙的s波超导状态,具有现场吸引的配对相互作用。

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