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Simple Fully Nonlocal Density Functionals for Electronic Repulsion Energy

机译:用于电子排斥能的简单的完全非局部密度函数

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From a simplified version of the mathematical structure of the strong coupling limit of the exact exchange-correlation functional, we construct an approximation for the electronic repulsion energy at physical coupling strength, which is fully nonlocal. This functional is self-interaction free and yields energy densities within the definition of the electrostatic potential of the exchange-correlation hole that are locally accurate and have the correct asymptotic behavior. The model is able to capture strong correlation effects that arise from chemical bond dissociation, without relying on error cancellation. These features, which are usually missed by standard density functional theory (DFT) functionals, are captured by the highly nonlocal structure, which goes beyond the "Jacob's ladder" framework for functional construction, by using integrals of the density as the key ingredient. Possible routes for obtaining the full exchange-correlation functional by recovering the missing kinetic component of the correlation energy are also implemented and discussed.
机译:根据精确交换相关功能的强耦合限制的数学结构的简化版本,我们在物理耦合强度下构造电子排斥能量的近似,这是完全非局部的。该功能是自由的自相互作用,并在局部准确的交换相关孔的静电电位定义内产生能量密度,并且具有正确的渐近行为。该模型能够捕获从化学债券解离产生的强相关效果,而不依赖于误差消除。这些特征通常由标准密度泛函理论(DFT)函数错过,通过高度非局部结构捕获,其超出了功能结构的“Jacob梯形”框架,通过使用密度作为关键成分的积分。还实施了并讨论了通过恢复相关能量的缺失动力学分量来获得完全交换关联功能的可能路由。

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