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First-principles calculations of X-ray absorption spectra at the K-edge of 3d transition metals: an electronic structure analysis of the pre-edge

机译:3d过渡金属K边缘X射线吸收光谱的第一性原理计算:前边缘的电子结构分析

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摘要

We first present an extended introduction of the various methods used to extract electronic and structural information from the K pre-edge X-ray absorption spectra of 3d transition metal ions. The K pre-edge structure is then modelled for a selection of 3d transition metal compounds and analyzed using first-principles calculations based on the density functional theory (DFT) in the local density approximation (LDA). The selected compounds under study are presented in an ascending order of electronic structure complexity, starting with the Ti K-edge of rutile and anatase, and finishing with the Fe K-edge of the cyanomet-myoglobin. In most cases, the calculations are compared to polarized experimental spectra. It is shown that DFT-LDA methods enable us to reproduce satisfactorily the experimental features and to understand the nature of the electronic transitions involved in the pre-edge region. The limiting aspects of such methods in modelling the core-hole electron interaction and the 3d electron-electron repulsion are also pointed out.
机译:我们首先介绍用于从3d过渡金属离子的K边缘X射线吸收光谱中提取电子和结构信息的各种方法的扩展介绍。然后,对K预边缘结构进行建模以选择3d过渡金属化合物,并使用第一原理基于局部密度近似(LDA)中的密度泛函理论(DFT)进行分析。从电子结构复杂性的升序开始,以金红石和锐钛矿的Ti K-边缘开始,并以氰基-肌红蛋白的Fe K-边缘结束。在大多数情况下,将计算结果与极化实验光谱进行比较。结果表明,DFT-LDA方法使我们能够令人满意地重现实验特征,并了解前边缘区域所涉及的电子跃迁的性质。还指出了此类方法在模拟核-空穴电子相互作用和3d电子-电子排斥方面的局限性。

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