Rodríguez-Mayorga Mauricio, Ramos-Cordoba Eloy, Via-Nadal Mireia, Piris Mario, Matito Eduard
Kimika Fakultatea, Euskal Herriko Unibertsitatea UPV/EHU, and Donostia International Physics Center (DIPC), P.K. 1072, 20080 Donostia, Euskadi, Spain.
Phys Chem Chem Phys. 2017 Sep 13;19(35):24029-24041. doi: 10.1039/c7cp03349d.
The energy usually serves as a yardstick in assessing the performance of approximate methods in computational chemistry. After all, these methods are mostly used for the calculation of the electronic energy of chemical systems. However, computational methods should be also aimed at reproducing other properties, such strategy leading to more robust approximations with a wider range of applicability. In this study, we suggest a battery of ten tests with the aim to analyze density matrix functional approximations (DMFAs), including several properties that the exact functional should satisfy. The tests are performed on a model system with varying electron correlation, carrying a very small computational effort. Our results not only put forward a complete and exhaustive benchmark test for DMFAs, currently lacking, but also reveal serious deficiencies of existing approximations that lead to important clues in the construction of more robust DMFAs.
在计算化学中,能量通常作为评估近似方法性能的一个标准。毕竟,这些方法大多用于计算化学体系的电子能量。然而,计算方法也应该旨在重现其他性质,这种策略会带来适用范围更广且更稳健的近似方法。在本研究中,我们提出了一组十个测试,旨在分析密度矩阵泛函近似(DMFAs),其中包括精确泛函应满足的几个性质。这些测试是在一个具有不同电子相关性的模型系统上进行的,计算量非常小。我们的结果不仅为目前缺乏的DMFAs提出了一个完整且详尽的基准测试,还揭示了现有近似方法的严重缺陷,这些缺陷为构建更稳健的DMFAs提供了重要线索。