论文标题
在能量坐标上使用电子分布的密度功能理论的范式
A Paradigm for Density Functional Theory Using Electron Distribution on the Energy Coordinate
论文作者
论文摘要
当用电子的常规共同功能理论(DFT)描述共价键的解离时,静态相关误差(SCE)不可避免地会出现。即使在最简单的分子中,SCE在解离极限处的势能也会严重过冲。该误差归因于交换相关能量EXC的近似函数的基本框架,该功能仅指坐标为r处的局部属性,即电子n(r)及其衍生物。为了解决问题,我们开发了一种功能性EE,该功能EE使用XC的能量电子分布NE(E)作为DFT中的基本变量。 NE(e)是通过密度n(r)投影到具有外部潜力的能量坐标e上获得的。该功能应用于小分子中单,双键和三键的解离,与高水平分子轨道理论给出的结果达成了合理的协议。我们还将功能应用于与碳原子中自旋去极化和对称对称性相关的能量变化的计算,从而改善了常规功能。这项工作为开发更强大的功能开发了必要电子(例如动能功能)的非本地性能。
Static correlation error(SCE) inevitably emerges when a dissociation of a covalent bond is described with a conventional denstiy-functional theory (DFT) for electrons. SCE gives rise to a serious overshoot in the potential energy at the dissociation limit even in the simplest molecules. The error is attributed to the basic framework of the approximate functional for the exchange correlation energy Exc which refers only to local properties at coordinate r, namely, the electron density n(r) and its derivatives. To solve the problem we developed a functional Ee which uses xc the energy electron distribution ne(e) as a fundamental variable in DFT. ne(e) is obtained by the projection of the density n(r) onto an energy coordinate e defined with the external potential of interest. The functional was applied to the dissociations of single, double, and triple bonds in small molecules showing reasonable agreements with the results given by a high level molecular orbitals theory. We also applied the functional to the computation of the energy change associated with spin depolarization and symmetrization in Carbon atom, which made an improvement over the conventional functional. This work opens the way for development of tougher functional that necessitates non-local properties of electrons such as kinetic energy functional.