Shiroka T, Shang T, Wang C, Cao G-H, Eremin I, Ott H-R, Mesot J
Laboratorium für Festkörperphysik, ETH Hönggerberg, Zürich, CH-8093, Switzerland.
Paul Scherrer Institut, Villigen, CH-5232, Switzerland.
Nat Commun. 2017 Jul 31;8(1):156. doi: 10.1038/s41467-017-00185-4.
Unlike the widely studied ReFeAsO series, the newly discovered iron-based superconductor ThFeAsN exhibits a remarkably high critical temperature of 30 K, without chemical doping or external pressure. Here we investigate in detail its magnetic and superconducting properties via muon-spin rotation/relaxation and nuclear magnetic resonance techniques and show that ThFeAsN exhibits strong magnetic fluctuations, suppressed below ~35 K, but no magnetic order. This contrasts strongly with the ReFeAsO series, where stoichiometric parent materials order antiferromagnetically and superconductivity appears only upon doping. The ThFeAsN case indicates that Fermi-surface modifications due to structural distortions and correlation effects are as important as doping in inducing superconductivity. The direct competition between antiferromagnetism and superconductivity, which in ThFeAsN (as in LiFeAs) occurs at already zero doping, may indicate a significant deviation of the s-wave superconducting gap in this compound from the standard s scenario.Exploring the interplay between the superconducting gap and the antiferromagnetic phase in Fe-based superconductors remains an open issue. Here, the authors show that Fermi-surface modifications by means of structural distortions and correlation effects are as important as doping in inducing superconductivity in undoped ThFeAsN.
与广泛研究的ReFeAsO系列不同,新发现的铁基超导体ThFeAsN在没有化学掺杂或外部压力的情况下,展现出高达30 K的显著临界温度。在这里,我们通过μ子自旋旋转/弛豫和核磁共振技术详细研究了它的磁性和超导特性,结果表明ThFeAsN表现出强烈的磁涨落,在约35 K以下受到抑制,但没有磁有序。这与ReFeAsO系列形成强烈对比,在ReFeAsO系列中,化学计量比的母体材料呈现反铁磁有序,只有在掺杂时才会出现超导性。ThFeAsN的情况表明,由于结构畸变和关联效应导致的费米面修饰在诱导超导性方面与掺杂同样重要。反铁磁性和超导性之间的直接竞争,在ThFeAsN(如同在LiFeAs中)在零掺杂时就已发生,这可能表明该化合物中的s波超导能隙与标准s波情形存在显著偏差。探索铁基超导体中超导能隙与反铁磁相之间的相互作用仍然是一个未解决的问题。在这里,作者表明,在未掺杂的ThFeAsN中,通过结构畸变和关联效应进行的费米面修饰在诱导超导性方面与掺杂同样重要。