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A systematic benchmark of the ab initio Bethe-Salpeter equation approach for low-lying optical excitations of small organic molecules

机译:从头算起的Bethe-Salpeter方程方法用于有机小分子低层光学激发的系统基准

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摘要

The predictive power of the ab initio Bethe-Salpeter equation (BSE) approach, rigorously based on many-body Green's function theory but incorporating information from density functional theory, has already been demonstrated for the optical gaps and spectra of solid-state systems. Interest in photoactive hybrid organic/inorganic systems has recently increased and so has the use of the BSE for computing neutral excitations of organic molecules. However, no systematic benchmarks of the BSE for neutral electronic excitations of organic molecules exist. Here, we study the performance of the BSE for the 28 small molecules in Thiel's widely used time-dependent density functional theory benchmark set [Schreiber et al., J. Chem. Phys. 128, 134110 (2008)]. We observe that the BSE produces results that depend critically on the mean-field starting point employed in the perturbative approach. We find that this starting point dependence is mainly introduced through the quasiparticle energies obtained at the intermediate GW step and that with a judicious choice of starting mean-field, singlet excitation energies obtained from BSE are in excellent quantitative agreement with higher-level wavefunction methods. The quality of the triplet excitations is slightly less satisfactory. (C) 2015 AIP Publishing LLC.
机译:严格地基于多体格林函数理论但结合了密度泛函理论的信息的从头算起的Bethe-Salpeter方程(BSE)方法的预测能力已被证明可用于固态系统的光学间隙和光谱。最近,人们对光敏混合有机/无机系统的兴趣增加了,因此使用BSE来计算有机分子的中性激发。但是,没有针对有机分子的中性电子激发的BSE系统基准。在这里,我们研究了Thiel广泛使用的随时间变化的密度泛函理论基准测试集中的28种小分子BSE的性能[Schreiber et al。,J. Chem。物理128,134110(2008)]。我们观察到,疯牛病产生的结果严重取决于摄动法中采用的平均场起点。我们发现,这种起始点依赖性主要是通过在中间GW步骤获得的准粒子能量引入的,并且明智地选择起始平均场,从BSE获得的单重态激发能量与高级波函数方法具有良好的定量一致性。三重激发的质量稍差一些。 (C)2015 AIP Publishing LLC。

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