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一种用于计算价态到芯态共振X射线发射光谱的受限开放单激发组态相互作用方法:一个案例研究。

A Restricted Open Configuration Interaction with Singles Method To Calculate Valence-to-Core Resonant X-ray Emission Spectra: A Case Study.

作者信息

Maganas Dimitrios, DeBeer Serena, Neese Frank

机构信息

Max Planck Institute for Chemical Energy Conversion , Stiftstrasse 34-36, D-45470 Mülheim an der Ruhr, Germany.

出版信息

Inorg Chem. 2017 Oct 2;56(19):11819-11836. doi: 10.1021/acs.inorgchem.7b01810. Epub 2017 Sep 18.

Abstract

In this work, a new protocol for the calculation of valence-to-core resonant X-ray emission (VtC RXES) spectra is introduced. The approach is based on the previously developed restricted open configuration interaction with singles (ROCIS) method and its parametrized version, based on a ground-state Kohn-Sham determinant (DFT/ROCIS) method. The ROCIS approach has the following features: (1) In the first step approximation, many-particle eigenstates are calculated in which the total spin is retained as a good quantum number. (2) The ground state with total spin S and excited states with spin S' = S, S ± 1, are obtained. (3) These states have a qualitatively correct multiplet structure. (4) Quasi-degenerate perturbation theory is used to treat the spin-orbit coupling operator variationally at the many-particle level. (5) Transition moments are obtained between the relativistic many-particle states. The method has shown great potential in the field of X-ray spectroscopy, in particular in the field of transition-metal L-edge, which cannot be described correctly with particle-hole theories. In this work, the method is extended to the calculation of resonant VtC RXES [alternatively referred to as 1s-VtC resonant inelastic X-ray scattering (RIXS)] spectra. The complete Kramers-Dirac-Heisenerg equation is taken into account. Thus, state interference effects are treated naturally within this protocol. As a first application of this protocol, a computational study on the previously reported VtC RXES plane on a molecular managanese(V) complex is performed. Starting from conventional X-ray absorption spectra (XAS), we present a systematic study that involves calculations and electronic structure analysis of both the XAS and non-resonant and resonant VtC XES spectra. The very good agreement between theory and experiment, observed in all cases, allows us to unravel the complicated intensity mechanism of these spectroscopic techniques as a synergic function of state polarization and interference effects. In general, intense features in the RIXS spectra originate from absorption and emission processes that involve nonorthogonal transition moments. We also present a graphical method to determine the sign of the interference contributions.

摘要

在这项工作中,引入了一种计算价到芯共振X射线发射(VtC RXES)光谱的新方案。该方法基于先前开发的含单激发的受限开放组态相互作用(ROCIS)方法及其基于基态Kohn-Sham行列式的参数化版本(DFT/ROCIS)方法。ROCIS方法具有以下特点:(1)在一级近似中,计算多粒子本征态,其中总自旋作为一个好的量子数被保留。(2)获得总自旋为S的基态和自旋为S' = S、S ± 1的激发态。(3)这些态具有定性正确的多重态结构。(4)在多粒子水平上变分地使用准简并微扰理论来处理自旋-轨道耦合算符。(5)得到相对论多粒子态之间的跃迁矩。该方法在X射线光谱领域,特别是在过渡金属L边领域显示出巨大潜力,而粒子-空穴理论无法正确描述该领域。在这项工作中,该方法被扩展到共振VtC RXES [也称为1s-VtC共振非弹性X射线散射(RIXS)] 光谱的计算。考虑了完整的克莱默斯-狄拉克-海森伯方程。因此,在该方案中自然地处理了态干涉效应。作为该方案的首次应用,对先前报道的分子锰(V)配合物的VtC RXES平面进行了计算研究。从传统的X射线吸收光谱(XAS)开始,我们进行了一项系统研究,包括对XAS以及非共振和共振VtC XES光谱的计算和电子结构分析。在所有情况下观察到的理论与实验之间的非常好的一致性,使我们能够揭示这些光谱技术复杂的强度机制,它是态极化和干涉效应的协同函数。一般来说,RIXS光谱中的强特征源于涉及非正交跃迁矩的吸收和发射过程。我们还提出了一种图形方法来确定干涉贡献的符号。

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