形式主义(音乐)
原子轨道
密度泛函理论
电离
分子轨道
统计物理学
电离能
物理
自旋密度
计算机科学
计算物理学
分子
量子力学
凝聚态物理
电子
离子
艺术
视觉艺术
音乐剧
作者
Tobias Möhle,Olga S. Bokareva,Gilbert Grell,Oliver Kühn,Sergey I. Bokarev
标识
DOI:10.1021/acs.jctc.8b00707
摘要
Photoelectron spectroscopy represents a valuable tool to analyze structural and dynamical changes in molecular systems. Comprehensive interpretation of experimental data requires, however, involvement of reliable theoretical modeling. In this work, we present a protocol based on the combination of well-established linear-response time-dependent density functional theory and Dyson orbital formalism for the accurate prediction of both ionization energies and intensities. Essential here is the utilization of the optimally tuned range-separated hybrid density functionals, improving the ionization potentials not only of frontier but also of the deeper lying orbitals. In general, the protocol provides accurate results as illustrated by comparison to experiments for several gas-phase molecules, belonging to different classes. Further, we analyze possible pitfalls of this approach and, namely, discuss the ambiguities in the choice of optimal range-separation parameters, the influence of the stability of the ground state, and the spin contamination issues as possible sources of inaccuracies.
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