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Quasi-Particle Self-Consistent GW for Molecules

机译:准粒子自洽GW

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We present the formalism and implementation of quasi-particle self-consistent GW (qsGW) and eigenvalue only quasi-particle self-consistent GW (evGW) adapted to standard quantum chemistry packages. Our implementation is benchmarked against high-level quantum chemistry computations (coupled-cluster theory) and experimental results using a representative set of molecules. Furthermore, we compare the qsGW approach for five molecules relevant for organic photovoltaics to self-consistent GW results (scGW) and analyze the effects of the self-consistency on the ground state density by comparing calculated dipole moments to their experimental values. We show that qsGW makes a significant improvement over conventional G(0)W(0) and that partially self-consistent flavors (in particular evGW) can be excellent alternatives.
机译:我们提出准粒子自洽GW(qsGW)和仅适用于特征值的准粒子自洽GW(evGW)的形式主义和实现方法,以适应标准量子化学软件包。我们的实现以使用一组代表性分子的高级量子化学计算(耦合簇理论)和实验结果为基准。此外,我们将与有机光伏相关的五个分子的qsGW方法与自洽GW结果(scGW)进行了比较,并通过将计算出的偶极矩与其实验值进行比较,分析了自洽对基态密度的影响。我们表明,qsGW相对于常规G(0)W(0)进行了重大改进,并且部分自洽的香精(特别是evGW)可以作为出色的替代品。

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