Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Phys Rev Lett. 2012 Jun 15;108(24):247002. doi: 10.1103/PhysRevLett.108.247002. Epub 2012 Jun 12.
Superconductivity in the iron pnictides develops near antiferromagnetism, and the antiferromagnetic (AF) phase appears to overlap with the superconducting phase in some materials such as BaFe(2-x)T(x)As2 (where T=Co or Ni). Here we use neutron scattering to demonstrate that genuine long-range AF order and superconductivity do not coexist in BaFe(2-x)Ni(x)As2 near optimal superconductivity. In addition, we find a first-order-like AF-to-superconductivity phase transition with no evidence for a magnetic quantum critical point. Instead, the data reveal that incommensurate short-range AF order coexists and competes with superconductivity, where the AF spin correlation length is comparable to the superconducting coherence length.
铁磷族超导体在反铁磁有序附近发展,反铁磁(AF)相似乎与某些材料(如 BaFe(2-x)T(x)As2,其中 T=Co 或 Ni)中的超导相重叠。在这里,我们使用中子散射证明了在 BaFe(2-x)Ni(x)As2 中,真正的长程 AF 有序和超导性在最佳超导性附近并不共存。此外,我们发现了一种类似于一级相变的 AF 到超导相变,没有证据表明存在磁量子临界点。相反,数据显示,不相干的短程 AF 有序共存并与超导竞争,其中 AF 自旋关联长度与超导相干长度相当。