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Trigonal distortion in zigzag-antiferromagnet iron phosphorus trisulfide
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Trigonal distortion in zigzag-antiferromagnet iron phosphorus trisulfide

Aldrin G. Chang, Liang-Wei Lan, Yao-Jui Chan, Chia-Nung Kuo, Ting Chen, Chih-Heng Huang, Tzu-Hung Chuang, Der-Hsin Wei, Chin-Shan LueChien-Cheng Kuo
Physical Review B, 卷.106(12), 125412
09/2022

摘要

Electronic Optical and Magnetic Materials Condensed Matter Physics
The electronic structure of FePS3 was resolved using x-ray absorption spectroscopy with linear dichroism of x ray between in-plane and out-of-plane geometries. By integrating the measurements with semiempirical calculations, the observed nonvanishing feature in the dichroism spectra demands a site symmetry lower than cubic to be taken into account. These effects cause an energy splitting between a1g and egπ orbitals of around 0.350 eV, contrary to previous reports purporting a smaller and insignificant energy splitting. Furthermore, reduction in the Slater integral was needed to establish agreement with experiment and theory suggesting metal-ligand covalency in the system. These findings shed light on how the local crystalline environment affects the electronic structure and the anisotropy in FePS3 and will prove imperative in its potential spintronic applications.

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