Srivastava M K, Qiu X-S, Chin Y Y, Hsieh S H, Shao Y C, Liang Y-H, Lai C-H, Du C H, Wang H T, Chiou J W, Lai Y C, Tsai H M, Pao C W, Lin H J, Lee J F, Asokan K, Pong W F
Department of Physics, Tamkang University, Tamsui, 251, Taiwan.
Department of Physics, Banasthali Vidyapith, Rajasthan, 304022, India.
Sci Rep. 2019 Dec 9;9(1):18586. doi: 10.1038/s41598-019-54772-0.
Temperature-dependent X-ray absorption near-edge structures, X-ray linear dichroism (XLD) and extended X-ray absorption fine structure (EXAFS) spectroscopic techniques were used to investigate the valence state, preferred orbital and local atomic structure that significantly affect the electrical and magnetic properties of a single crystal of YBaCuFeO (YBCFO). An onset of increase of resistivity at ~180 K, followed by a rapid increase at/below 125 K, is observed. An antiferromagnetic (AFM)-like transition is close to the temperature at which the resistivity starts to increase in the ab-plane and is also observed with strong anisotropy between the ab-plane and the c-axis. The XLD spectra at the Fe L-edge revealed a change in Fe 3d e holes from the preferential [Formula: see text] orbital at high temperature (300-150 K) to the [Formula: see text] orbital at/below 125 K. The analysis of the Fe K-edge EXAFS data of YBCFO further revealed an unusual increase in the Debye-Waller factor of the nearest-neighbor Fe-O bond length at/below 125 K, suggesting phonon-softening behavior, resulting in the breaking of lattice symmetry, particularly in the ab-plane of Fe-related square pyramids. These findings demonstrate a close correlation between electrical resistivity and coupling of the preferred Fe 3d orbital with lattice distortion of a single crystal of YBCFO.
利用温度依赖的X射线吸收近边结构、X射线线性二色性(XLD)和扩展X射线吸收精细结构(EXAFS)光谱技术,研究了对YBaCuFeO(YBCFO)单晶的电学和磁学性质有显著影响的价态、优先轨道和局部原子结构。观察到在~180 K时电阻率开始增加,随后在125 K及以下迅速增加。反铁磁(AFM)类转变接近电阻率在ab平面开始增加的温度,并且在ab平面和c轴之间也观察到强烈的各向异性。Fe L边的XLD光谱显示,Fe 3d e空穴从高温(300 - 150 K)时优先的[公式:见原文]轨道转变为125 K及以下时的[公式:见原文]轨道。对YBCFO的Fe K边EXAFS数据的分析进一步表明,在125 K及以下,最近邻Fe - O键长的德拜 - 瓦勒因子出现异常增加,表明声子软化行为,导致晶格对称性破坏,特别是在与Fe相关的四方金字塔的ab平面。这些发现表明了YBCFO单晶的电阻率与优先的Fe 3d轨道与晶格畸变的耦合之间的密切相关性。