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Koopmans-Compliant Functionals and Potentials and Their Application to the GW100 Test Set

机译:符合Kw100测试集的Koopmans兼容功能和潜力及其应用程序

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Koopmans-compliant (KC) functionals have been shown to provide accurate spectral properties through a generalized condition of piecewise linearity of the total energy as a function of the fractional addition/removal of an electron to/from any orbital. We analyze the performance of different KC functionals on a large and standardized set of 100 molecules, the GW100 test set, comparing vertical ionization potentials (taken as opposite of the orbital energies) to those obtained from accurate quantum chemistry methods, and to experimental results. We find excellent agreement, with a mean absolute error of 0.20 eV for the KIPZ functional on the first ionization potential, which is state-of-the-art for both density functional theory (DFT)-based calculations and many-body perturbation theory. We highlight similarities and differences between KC functionals and other electronic-structure approaches, such as dielectric-dependent hybrid functionals and Green's function methods, both from a theoretical and from a practical point of view, arguing that KC potentials can be considered as local and orbital-dependent approximations to the electronic self-energy, already including approximate vertex corrections.
机译:符合Koopmans兼容(KC)功能已经显示通过作为从任何轨道到/从任何轨道的分数添加/去除电子的分段线性的分段线性的函数来提供精确的光谱特性。我们分析了在大型和标准化的100个分子上的不同KC功能的性能,GW100测试组,比较垂直电离电位(与轨道能量相反)与精确量子化学方法获得的那些,以及实验结果。我们找到了很好的一致性,具有0.20eV的平均绝对误差为kipz功能,在第一电离电位上是密度泛函理论(DFT)的计算和许多身体扰动理论的最先进的。我们突出了KC功能和其他电子结构方法之间的相似性和差异,例如介电依赖的混合功能和绿色的功能方法,无论是从理论和实际的角度来看,争论KC潜力可以被视为局部和轨道 - 对电子自我能量的依赖性近似,已经包括近似顶点校正。

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