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价态电离和卫星跃迁的参考能量。

Reference Energies for Valence Ionizations and Satellite Transitions.

作者信息

Marie Antoine, Loos Pierre-François

机构信息

Laboratoire de Chimie et Physique Quantiques (UMR 5626), Université de Toulouse, CNRS, UPS, Toulouse 31062, France.

出版信息

J Chem Theory Comput. 2024 Jun 11;20(11):4751-4777. doi: 10.1021/acs.jctc.4c00216. Epub 2024 May 22.

Abstract

Upon ionization of an atom or a molecule, another electron (or more) can be simultaneously excited. These concurrently generated states are called "satellites" (or shakeup transitions) as they appear in ionization spectra as higher-energy peaks with weaker intensity and larger width than the main peaks associated with single-particle ionizations. Satellites, which correspond to electronically excited states of the cationic species, are notoriously challenging to model using conventional single-reference methods due to their high excitation degree compared to the neutral reference state. This work reports 42 satellite transition energies and 58 valence ionization potentials (IPs) of full configuration interaction quality computed in small molecular systems. Following the protocol developed for the quest database [Véril, M.; Scemama, A.; Caffarel, M.; Lipparini, F.; Boggio-Pasqua, M.; Jacquemin, D.; and Loos, P.-F. Wiley Interdiscip. Rev.: Comput. Mol. Sci. e1517], these reference energies are computed using the configuration interaction using a perturbative selection made iteratively (CIPSI) method. In addition, the accuracy of the well-known coupled-cluster (CC) hierarchy (CC2, CCSD, CC3, CCSDT, CC4, and CCSDTQ) is gauged against these new accurate references. The performances of various approximations based on many-body Green's functions (, GF2, and -matrix) for IPs are also analyzed. Their limitations in correctly modeling satellite transitions are discussed.

摘要

原子或分子电离时,可能会同时激发另一个(或更多)电子。这些同时产生的状态被称为“卫星峰”(或伴生跃迁),因为它们在电离光谱中表现为能量较高的峰,其强度比与单粒子电离相关的主峰弱,宽度比主峰大。卫星峰对应阳离子物种的电子激发态,由于与中性参考态相比其激发程度较高,使用传统的单参考方法对其进行建模具有极大的挑战性。本文报道了在小分子体系中计算得到的42个卫星跃迁能量和58个全组态相互作用质量的价层电离势(IPs)。按照为探索数据库[Véril, M.; Scemama, A.; Caffarel, M.; Lipparini, F.; Boggio-Pasqua, M.; Jacquemin, D.; and Loos, P.-F. Wiley Interdiscip. Rev.: Comput. Mol. Sci. e1517]开发的协议,这些参考能量使用迭代微扰选择的组态相互作用(CIPSI)方法进行计算。此外,将著名的耦合簇(CC)层级(CC2、CCSD、CC3、CCSDT、CC4和CCSDTQ)的精度与这些新的精确参考值进行了比较。还分析了基于多体格林函数(、GF2和-矩阵)的各种近似方法对IPs的性能。讨论了它们在正确模拟卫星跃迁方面的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e045/11171335/59839c290841/ct4c00216_0001.jpg

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