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Excited electronic states from a variational approach based on symmetry-projected Hartree–Fock configurations

机译:基于对称投影Hartree-Fock配置的变分方法的激发电子态

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摘要

Recent work from our research group has demonstrated that symmetry-projected Hartree–Fock (HF) methods provide a compact representation of molecular ground state wavefunctions based on a superposition of non-orthogonal Slater determinants. The symmetry-projected ansatz can account for static correlations in a computationally efficient way. Here we present a variational extension of this methodology applicable to excited states of the same symmetry as the ground state. Benchmark calculations on the C2 dimer with a modest basis set, which allows comparison with full configuration interaction results, indicate that this extension provides a high quality description of the low-lying spectrum for the entire dissociation profile. We apply the same methodology to obtain the full low-lying vertical excitation spectrum of formaldehyde, in good agreement with available theoretical and experimental data, as well as to a challenging model C2v insertion pathway for BeH2. The variational excited state methodology developed in this work has two remarkable traits: it is fully black-box and will be applicable to fairly large systems thanks to its mean-field computational cost.
机译:我们研究小组的最新工作表明,对称投影的Hartree-Fock(HF)方法基于非正交Slater行列式的叠加,提供了分子基态波函数的紧凑表示。对称投影的ansatz可以以计算有效的方式解决静态相关问题。在这里,我们提出了该方法的变体扩展,适用于与基态相同对称性的激发态。在具有适度基础集的C2二聚体上进行的基准计算(可以与完整配置的相互作用结果进行比较)表明,此扩展为整个解离谱图提供了低光谱的高质量描述。我们使用相同的方法来获得甲醛的完整低洼垂直激发光谱,与可用的理论和实验数据以及BeH2的具有挑战性的C2v插入模型具有很好的一致性。这项工作中开发的变分激发态方法具有两个显着特征:它完全是黑盒子,并且由于其平均场计算成本而将适用于相当大的系统。

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