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首页> 外文期刊>The Journal of Chemical Physics >Towards benchmark second-order correlation energies for large atoms: Zn2+ revisited
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Towards benchmark second-order correlation energies for large atoms: Zn2+ revisited

机译:迈向大原子的基准二阶相关能:Zn2 +

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摘要

To provide very accurate reference results for the second-order Moller-Plesset (MP2) energy and its various components for Zn2+, which plays for 3d-electron systems a similar role as Ne for smaller atoms and molecules, we have performed extensive calculation by two completely different implementations of the MP2 method: the finite element method (FEM) and the variation-perturbation (VP) method. The FEM and VP calculations yield partial wave contributions up to l(max)=45 and 12, respectively. Detailed comparison of all FEM and VP energy components for l(max)=12 has disclosed an extraordinary similarity, which justifies using the present results as benchmarks. The present correlation energies are compared with other works. The dependability of an earlier version of FEM, already applied to very large closed-shell atoms, is confirmed. It has been found that for larger atoms the accuracy of the analytical Hartree-Fock results has an impact on the accuracy of the MP2 energies greater than for smaller atoms. Fields of applications of the present results in studies of various electron correlation effects in 3d-electron atoms and molecules are indicated. (C) 2004 American Institute of Physics.
机译:为了为二阶Moller-Plesset(MP2)能量及其对Zn2 +的各种成分提供非常准确的参考结果,该元素在3d电子系统中起的作用与Ne在较小原子和分子上的作用相似,我们已经进行了两次广泛的计算MP2方法的完全不同的实现方式:有限元方法(FEM)和变化摄动(VP)方法。 FEM和VP计算分别产生高达l(max)= 45和12的部分波贡献。对于l(max)= 12的所有FEM和VP能量分量的详细比较,已经揭示了一个非常相似的地方,这证明使用当前结果作为基准是合理的。将当前的相关能量与其他工作进行比较。确认了已经应用于非常大的闭壳原子的FEM早期版本的可靠性。已经发现,对于较大的原子,分析Hartree-Fock结果的准确性比较小的原子对MP2能量的准确性影响更大。指出了本结果在3d-电子原子和分子中各种电子相关效应研究中的应用领域。 (C)2004年美国物理研究所。

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