首页> 外文期刊>Journal of chemical theory and computation: JCTC >Remarkable Accuracy of an O(N6) Perturbative Correction to Opposite-Spin CCSD: Are Triples Necessary for Chemical Accuracy in Coupled Cluster?
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Remarkable Accuracy of an O(N6) Perturbative Correction to Opposite-Spin CCSD: Are Triples Necessary for Chemical Accuracy in Coupled Cluster?

机译:O(n6)对对立旋转CCSD的O(n6)扰动校正的显着准确性:耦合簇中的化学精度是必需的三元组吗?

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The focus of this work is OS-CCSD-SPT(2), which is a second-order similarity transformed perturbation theory correction to opposite spin coupled cluster singles doubles, where in the latter the same-spin amplitudes are removed and the opposite-spin ones are solved self-consistently. OS-CCSD-SPT(2) is free of empirical parameters, has an instrinsic scaling of O (N ~(6)), and makes no use of triples. We demonstrate that, for non-multireference molecules, OS-CCSD-SPT(2) produces relative energies whose accuracy is significantly higher than what is generally expected of a triples-free model. For example, using PBE0 orbitals in the reference, OS-CCSD-SPT(2) exhibits a mean absolute deviation (MAD) of 1.13 kcal/mol with respect to CCSD(2_(F )) benchmark values for the non-multireference subset of W4-08 atomization energies (cf. a MAD > 6.5 kcal/mol for CCSD) and a MAD of 0.68 kcal/mol for the energies of reactions generated from the W4-08 molecules. These MADs are reduced to 0.61 and 0.63 kcal/mol, respectively, by a simple one-parameter spin-component scaling of the OS-CCSD-SPT(2) same-spin correlation energy. OS-CCSD is also naturally amenable to higher order corrections: the associated third-order correction, OS-CCSD-SPT(3), which does involve connected triples and quadruples, exhibits a MAD of 0.44 kcal/mol for the same atomization-energy benchmark.
机译:这项工作的重点是OS-CCSD-SPT(2),这是一个二阶相似性转化的扰动理论校正对相对的旋转耦合簇单打双打,其中在后者中移除了相同的旋转幅度和相对旋转那些是自我解决的。 OS-CCSD-SPT(2)没有经验参数,具有 o的仪式缩放( n〜(6)),无需使用三元组。我们证明,对于非多功能分子,OS-CCSD-SPT(2)产生的相对能量,其精度明显高于一般预期的三叶草模型。例如,在参考中使用pbe0轨道,OS-CCSD-SPT(2)展示了关于CCSD(2 _( 6.5千卡/ MOL),对于从W4-08分子产生的反应的能量的能量,MAD为0.68kcal / mol。这些MADS分别通过OS-CCSD-SPT(2)相同旋转相关能量的简单一参数分流组成缩放,分别减少到0.61和0.63kcal / mol。 OS-CCSD也自然地适用于高阶校正:相关的三阶校正,OS-CCSD-SPT(3)涉及连接的三元组和四分之二,对于相同的雾化能量,呈现为0.44千卡/摩尔的MAD基准。

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