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Approximate self-consistent potentials for density-functional-theory exchange-correlation functionals

机译:密度泛函理论交换相关泛函的近似自洽势

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We show that potentials for exchange-correlation functionals within the Kohn-Sham density-functional-theory framework may be written as potentials for simpler functionals multiplied by a factor close to unity, and in a self-consistent field calculation, these effective potentials find the correct self-consistent solutions. This simple theory is demonstrated with self-consistent exchange-only calculations of the atomization energies of some small molecules using the Perdew-Kurth-Zupan-Blaha (PKZB) meta-generalized-gradient-approximation (meta-GGA) exchange functional. The atomization energies obtained with our method agree with or surpass previous meta-GGA calculations performed in a non-self-consistent manner. The results of this work suggest the utility of this simple theory to approximate exchange-correlation potentials corresponding to energy functionals too complicated to generate closed forms for their potentials. We hope that this method will encourage the development of complex functionals which have correct boundary conditions and are free of self-interaction errors without the worry that the functionals are too complex to differentiate to obtain potentials.
机译:我们表明,Kohn-Sham密度泛函理论框架内交换相关泛函的潜能可以写为简单泛函乘以接近于一个因子的潜能,在自洽场计算中,这些有效潜能发现正确的自洽解决方案。通过使用Perdew-Kurth-Zupan-Blaha(PKZB)元广义梯度逼近(meta-GGA)交换函数对某些小分子的雾化能进行自洽的仅交换计算,证明了此简单的理论。用我们的方法获得的雾化能量与以非自洽的方式执行的以前的meta-GGA计算相符或超越。这项工作的结果表明,该简单理论的实用性是近似于与能量功能相对应的交换相关势,该势能太复杂而无法为其势生成闭合形式。我们希望这种方法将鼓励开发具有正确边界条件且没有自相互作用错误的复杂功能,而不必担心功能太复杂而无法区分以获得电位。

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