论文标题
CAFE2AS2材料类超导性的结构异常
Structural anomaly in superconductivity of CaFe2As2 class of materials
论文作者
论文摘要
据信,基于Fe的系统中的量子过渡涉及自旋,电荷和列的波动。这些材料中的复杂结构相图通常强调共价在其外来特性中的重要性,这与局部结构网络直接相关,几乎没有理解。为了解决这个杰出的问题,我们研究了结构参数的演变及其对使用扩展的X射线吸收精细结构研究的122种材料类别的非常规超导性的影响。光谱在Fe K-和Cafe2AS2的K-吸收边缘附近的功能及其超导组成Cafe1.9co0.1as2(TC = 12 K)表现出具有FE贡献与FERMI水平附近的Co-Biubsitution增强的证据。从实验数据得出的AS-FE和FE-FE键长在整个磁结构过渡中显示出有趣的变化。奇怪的是,尽管没有磁结构过渡,但共掺杂的成分的演变与其母体化合物相似。此外,我们发现磁结构过渡和混乱附近温度的Ca-X(X = Fe,AS)的键长的异常变化似乎不太重要,这可能是由于电荷储层层筛选。这些结果揭示了兴奋剂引起的进化的证据,可能导致系统中的超导性。
Quantum transitions in Fe-based systems are believed to involve spin, charge and nematic fluctuations. Complex structural phase diagram in these materials often emphasizes importance of covalency in their exotic properties, which is directly linked to the local structural network and barely understood. In order to address this outstanding issue, we investigate the evolution of structural parameters and their implication in unconventional superconductivity of 122 class of materials employing extended x-ray absorption fine structure studies. The spectral functions near the Fe K- and As K-absorption edge of CaFe2As2 and its superconducting composition, CaFe1.9Co0.1As2 (Tc = 12 K) exhibit evidence of enhancement of Fe contribution with Co-substitution near the Fermi level. As-Fe and Fe-Fe bondlengths derived from the experimental data exhibit interesting changes with temperature across the magneto-structural transition. Curiously, the evolution in Co-doped composition is similar to its parent compound despite absence of magneto-structural transition. In addition, we discover anomalous change of Ca-X (X = Fe, As) bondlengths with temperature in the vicinity of magneto-structural transition and disorder appears to be less important presumably due to screening by the charge reservoir layer. These results reveal evidence of doping induced evolution to the proximity to critical behavior presumably leading to superconductivity in the system.