Condensed Matter Physics and Materials Science Department, Brookhaven National Laboratory, Upton, New York 11973, USA.
Phys Rev Lett. 2013 Jan 18;110(3):037001. doi: 10.1103/PhysRevLett.110.037001. Epub 2013 Jan 14.
An unexpected insensitivity of the Fermi surface to impurity scattering is found in Ru substituted BaFe(2)As(2) from first-principles theory, offering a natural explanation of the unusual resilience of transport and superconductivity to a high level of disordered substitution in this material. This robustness is shown to originate from a coherent interference of correlated on-site and intersite impurity scattering, similar in spirit to the microscopic mechanism of superdiffusion in one dimension. Our result also demonstrates a strong substitution dependence of the Fermi surface and carrier concentration and provides a resolution to current discrepancies in recent photoelectron spectroscopy. These effects offer a natural explanation of the diminishing long-range magnetic, orbital, and superconducting orders with high substitution.
从第一性原理理论出发,我们发现 Ru 取代 BaFe2As2 中费米面对杂质散射的出人意料的不敏感,这为该材料中高无序取代对输运和超导的异常弹性提供了自然的解释。这种鲁棒性源自相关局域和局间杂质散射的相干干扰,与一维中超扩散的微观机制相似。我们的结果还表明费米面和载流子浓度强烈依赖于取代,解决了最近光电子能谱中存在的当前差异。这些效应为高取代下长程磁序、轨道序和超导序的衰减提供了自然的解释。