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Non-Orthogonal Configuration Interaction with Single Substitutions for Core-Excited States: An Extension to Doublet Radicals

机译:与核心激发状态的单级替换的非正交配置交互:双翼器自由基的延伸

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摘要

In this paper, we present an open-shell extension of the non-orthogonal configuration interaction singles (NOCIS) method for the calculation of core-excited states, intended for peak assignment in XAS spectra of doublet radicals. This extension requires the consideration of additional configurations due to the singly occupied open-shell orbital, and the addition of essential orbital relaxation effects is found to provide a significant improvement on standard CIS, while maintaining the desirable properties of spin purity, variationality, and size consistency. We apply this method to the calculation of core excitations for several open-shell molecules and demonstrate that it performs competitively with other available methods, despite a lack of dynamic correlation. In particular, relative to CVS-ADC(2)-x, RMS error is reduced by a factor of 6 over usual orthogonal CIS and is comparable to time-dependent density functional theory with the best short-range corrected functionals.
机译:在本文中,我们介绍了用于计算核心激发状态的非正交配置交互单打(NOCIS)方法的开壳扩展,用于在双峰自由基的XAS光谱中进行峰值分配。 该延伸需要考虑由于单独占领的开壳轨道引起的额外配置,并且发现基本的轨道松弛效果是对标准CI的显着改善,同时保持旋转纯度,变分性和尺寸的理想性质 一致性。 我们将这种方法应用于几个开壳分子的核心激发来计算,并证明它尽管缺乏动态相关性,但它竞争性地与其他可用方法进行竞争力。 特别地,相对于CVS-ADC(2)-X,RMS误差减小了6倍通常正交的顺式的倍数6,并且与具有最佳短程校正功能的时间依赖性密度泛函理论相当。

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