Cao Shi, Zhang Xiaozhe, Paudel Tula R, Sinha Kishan, Wang Xiao, Jiang Xuanyuan, Wang Wenbin, Brutsche Stuart, Wang Jian, Ryan Philip J, Kim Jong-Woo, Cheng Xuemei, Tsymbal Evgeny Y, Dowben Peter A, Xu Xiaoshan
Department of Physics and Astronomy & Nebraska Center for Materials and Nanoscience, University of Nebraska, Lincoln, NE 68588, USA.
J Phys Condens Matter. 2016 Apr 20;28(15):156001. doi: 10.1088/0953-8984/28/15/156001. Epub 2016 Mar 16.
The electronic structure for the conduction bands of both hexagonal and orthorhombic LuFeO3 thin films have been measured using x-ray absorption spectroscopy at oxygen K (O K) edge. Dramatic differences in both the spectral features and the linear dichroism are observed. These differences in the spectra can be explained using the differences in crystal field splitting of the metal (Fe and Lu) electronic states and the differences in O 2p-Fe 3d and O 2p-Lu 5d hybridizations. While the oxidation states have not changed, the spectra are sensitive to the changes in the local environments of the Fe(3+) and Lu(3+) sites in the hexagonal and orthorhombic structures. Using the crystal-field splitting and the hybridizations that are extracted from the measured electronic structures and the structural distortion information, we derived the occupancies of the spin minority states in Fe(3+), which are non-zero and uneven. The single ion anisotropy on Fe(3+) sites is found to originate from these uneven occupancies of the spin minority states via spin-orbit coupling in LuFeO3.
利用X射线吸收光谱法在氧K(OK)边缘测量了六方和正交LuFeO3薄膜导带的电子结构。观察到光谱特征和线性二色性都存在显著差异。光谱中的这些差异可以用金属(Fe和Lu)电子态的晶体场分裂差异以及O 2p-Fe 3d和O 2p-Lu 5d杂化差异来解释。虽然氧化态没有变化,但光谱对六方和正交结构中Fe(3+)和Lu(3+)位点的局部环境变化很敏感。利用从测量的电子结构和结构畸变信息中提取的晶体场分裂和杂化,我们推导出了Fe(3+)中自旋少数态的占据情况,这些占据情况是非零且不均匀的。发现Fe(3+)位点上的单离子各向异性源于通过LuFeO3中的自旋轨道耦合导致的自旋少数态的这些不均匀占据。