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首页> 外文期刊>The Journal of Chemical Physics >Particle-particle ladder based basis-set corrections applied to atoms and molecules using coupled-cluster theory
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Particle-particle ladder based basis-set corrections applied to atoms and molecules using coupled-cluster theory

机译:基于粒子梯的基础设定校正应用于使用耦合簇理论的原子和分子

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We investigate the basis-set convergence of electronic correlation energies calculated using coupled cluster theory and a recently proposed finite basis-set correction technique. The correction is applied to atomic and molecular systems and is based on a diagrammatically decomposed coupled cluster singles and doubles (CCSD) correlation energy. Only the second-order energy and the particle-particle ladder term are corrected for their basis-set incompleteness error. We present absolute correlation energies and results for a large benchmark set. Our findings indicate that basis set reductions by two cardinal numbers are possible for atomization energies, ionization potentials, and electron affinities without compromising accuracy when compared to conventional CCSD calculations. In the case of reaction energies, we find that reductions by one cardinal number are possible compared to conventional CCSD calculations. The employed technique can readily be applied to other many-electron theories without the need for three- or four-electron integrals.
机译:我们研究了使用耦合簇理论计算的电子相关能量的基础集合,以及最近提出的有限基础设定校正技术。校正应用于原子和分子系统,并且基于示意性分解的耦合簇单打和双打(CCSD)相关能量。仅纠正二阶能量和粒子粒子梯形术语,以纠正其基础设定的不完全误差。我们为大型基准组呈现绝对的相关能量和结果。我们的研究结果表明,与传统的CCSD计算相比,雾化能量,电离电位和电子亲和力可以通过两种基数的基础设定为雾化能量,电离电位和电子亲和力。在反应能量的情况下,与传统的CCSD计算相比,我们发现一个基数的减少是可能的。所采用的技术可以容易地应用于其他许多电子理论,而不需要三个或四个电子积分。

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