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首页> 外文期刊>The Journal of Chemical Physics >Ab initio density functional theory: The best of both worlds?
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Ab initio density functional theory: The best of both worlds?

机译:从头算密度函数理论:两全其美?

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摘要

Density functional theory (DFT), in its current local, gradient corrected, and hybrid implementations and their extensions, is approaching an impasse. To continue to progress toward the quality of results demanded by today's ab initio quantum chemistry encourages a new direction. We believe ab initio DFT is a promising route to pursue. Whereas conventional DFT cannot describe weak interactions, photoelectron spectra, or many potential energy surfaces, ab initio DFT, even in its initial, optimized effective potential, second-order many-body perturbation theory form [OEP (2)-semi canonical], is shown to do all well. In fact, we obtain accuracy that frequently exceeds MP2, being competitive with coupled-cluster theory in some cases. Furthermore, this is accomplished within a relatively fast computational procedure that scales like iterative second order. We illustrate our results with several molecular examples including Ne-2,Be-2,F-2, and benzene. (C) 2005 American Institute of Physics.
机译:密度泛函理论(DFT),以其当前的局部,梯度校正和混合实现及其扩展,正在陷入僵局。继续朝着今天的从头开始的量子化学要求的结果质量前进,这鼓励了一个新的方向。我们认为从头开始DFT是一种有前途的追求方法。常规DFT无法描述弱相互作用,光电子光谱或许多势能面,而从头算DFT,即使是在其初始的,优化的有效势中,也是二阶多体摄动理论形式[OEP(2)-半规范]。显示一切都很好。实际上,我们获得的准确性经常超过MP2,在某些情况下与耦合聚类理论相抗衡。此外,这是在相对快速的计算过程中完成的,该过程像迭代二阶一样进行缩放。我们用几个分子实例(包括Ne-2,Be-2,F-2和苯)说明了我们的结果。 (C)2005美国物理研究所。

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