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广义自旋限制开壳层组态相互作用方法:应用于铁磁和反铁磁耦合二聚体的金属K边X射线吸收光谱

General Spin-Restricted Open-Shell Configuration Interaction Approach: Application to Metal K-Edge X-ray Absorption Spectra of Ferro- and Antiferromagnetically Coupled Dimers.

作者信息

Leyser da Costa Gouveia Tiago, Maganas Dimitrios, Neese Frank

机构信息

Max-Planck-Institut für Kohlenforschung, Kaiser-Wilheim-Platz 1, 45470 Mülheim an der Ruhr, Germany.

出版信息

J Phys Chem A. 2025 Jan 9;129(1):330-345. doi: 10.1021/acs.jpca.4c05228. Epub 2024 Dec 16.

Abstract

In this work, we present a generalized implementation of the previously developed restricted open-shell configuration interaction singles (ROCIS) family of methods. The new method allows us to treat high-spin (HS) ferro- as well as antiferromagnetically (AF) coupled systems while retaining the total spin as a good quantum number. To achieve this important and nontrivial goal, we employ the machinery of the iterative configuration expansion (ICE) method, which is able to tackle general configuration interaction (CI) problems on the basis of spin-adapted configuration state functions (CSFs). While ICE is designed to work in restricted orbital spaces, the new general-spin ROCIS (GS-ROCIS) method is designed to be applicable to larger molecules by employing a prototyping strategy. This new method can be applied to closed-shell, high-spin open-shell, as well as antiferromagnetic reference CSFs. In addition, GS-ROCIS can be combined with the pair natural orbital (PNO) machinery in the form of the PNO-GS-ROCIS method. With this extension, one can drastically reduce the required virtual space in the vicinity of the involved core orbitals, leading to computational savings of several orders of magnitude with negligible (<1%) loss in accuracy. To demonstrate the use of the new methodology, the metal K pre-edge X-ray absorption excitation problem of an antiferromagnetically coupled copper model dimer was investigated. By first analyzing a model copper dimer, it is shown that even for the minimum core excitation problem that involves the two antiferromagnetically coupled singly occupied orbitals and one virtual orbital, the resulting GS-ROCIS and broken-symmetry configuration interaction singles (BS-CIS) spectra may differ in terms of the number, energy position, and relative intensity of the computed bands. Furthermore, the methodology was validated to perform equally well in computing the K-edge spectra of antiferromagnetic nickel oxide dimers and mixed-valence cobalt oxide trimers. Collectively, the present development represents an important methodological advance in the application of theoretical X-ray spectroscopy.

摘要

在这项工作中,我们展示了之前开发的受限开壳层组态相互作用单激发(ROCIS)方法家族的一种广义实现。新方法使我们能够处理高自旋(HS)铁磁以及反铁磁(AF)耦合系统,同时保持总自旋作为一个好的量子数。为实现这一重要且具有挑战性的目标,我们采用了迭代组态展开(ICE)方法的机制,该方法能够基于自旋适配的组态态函数(CSF)来处理一般的组态相互作用(CI)问题。虽然ICE设计用于在受限轨道空间中工作,但新的通用自旋ROCIS(GS - ROCIS)方法通过采用一种原型策略设计为适用于更大的分子。这种新方法可应用于闭壳层、高自旋开壳层以及反铁磁参考CSF。此外,GS - ROCIS可以与对自然轨道(PNO)机制结合形成PNO - GS - ROCIS方法。通过这种扩展,可以大幅减少所涉及的核心轨道附近所需的虚拟空间,从而在精度损失可忽略不计(<1%)的情况下实现几个数量级的计算节省。为了演示新方法的使用,研究了反铁磁耦合铜模型二聚体的金属K边X射线吸收激发问题。通过首先分析一个模型铜二聚体,结果表明,即使对于涉及两个反铁磁耦合的单占据轨道和一个虚拟轨道的最小核心激发问题,所得的GS - ROCIS和破缺对称性组态相互作用单激发(BS - CIS)光谱在计算谱带的数量、能量位置和相对强度方面可能会有所不同。此外,该方法在计算反铁磁氧化镍二聚体和混合价氧化钴三聚体的K边光谱时也被验证具有同样良好的性能。总体而言,目前的进展代表了理论X射线光谱学应用中的一项重要方法学进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/49c3/11726630/5f968c94821b/jp4c05228_0001.jpg

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