论文标题
Kohn-Sham电位中的次级动力学峰及其与响应步骤的联系
Secondary kinetic peak in the Kohn-Sham potential and its connection to the response step
论文作者
论文摘要
我们考虑了一种典型的1D模型,用于拉伸异核分子,并构建相应KS电位的单个成分,即:动力学,N -1和条件电位。这些组件在密度大大低的区域显示出非常特殊的特征,例如峰值和步骤。其中一些特征是众所周知的,而另一些特征,例如动力电位的次级峰或条件电位的第二次颠簸,完全较少或一无所知。我们讨论了基于J. Chem中处理的分析模型的这些特征。理论计算。 14,4151(2018)。特别是,我们为基础机制提供了一个解释,该机制决定了动力电位中两个峰的出现,并阐明了为什么这些峰描绘了由于n -1电位而导致的高原结构所在的区域。我们评估了Heitler-London Ansatz在较大但有限的核外距离上的有效性,这表明,如果使用了最佳轨道,则该模型是与确切波函数的绝佳近似值。值得注意的是,我们发现第二个天然轨道在更远的原子的侧面呈现出一个额外的节点。
We consider a prototypical 1D model Hamiltonian for a stretched heteronuclear molecule and construct individual components of the corresponding KS potential, namely: the kinetic, the N - 1, and the conditional potentials. These components show very special features, such as peaks and steps, in regions where the density is drastically low. Some of these features are quite well known, whereas others, such as a secondary peak in the kinetic potential or a second bump in the conditional potential, are less or not known at all. We discuss these features building on the analytical model treated in J. Chem. Theory Comput. 14, 4151 (2018). In particular, we provide an explanation for the underlying mechanism which determines the appearance of both peaks in the kinetic potential and elucidate why these peaks delineate the region over which the plateau structure, due to the N - 1 potential, stretches. We assess the validity of the Heitler-London Ansatz at large but finite internuclear distance, showing that, if optimal orbitals are used, this model is an excellent approximation to the exact wavefunction. Notably, we find that the second natural orbital presents an extra node very far out on the side of the more electronegative atom.