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Benchmarking density-functional theory calculations of NMR shielding constants and spin-rotation constants using accurate coupled-cluster calculations

机译:使用精确的耦合簇计算对NMR屏蔽常数和自旋旋转常数进行基准密度函数理论计算

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Accurate sets of benchmark nuclear-magnetic-resonance shielding constants and spin-rotation constants are calculated using coupled-cluster singles-doubles (CCSD) theory and coupled-cluster singles-doubles-perturbative-triples [CCSD(T)] theory, in a variety of basis sets consisting of (rotational) London atomic orbitals. The accuracy of the calculated coupled-cluster constants is established by a careful comparison with experimental data, taking into account zero-point vibrational corrections. Coupled-cluster basis-set convergence is analyzed and extrapolation techniques are employed to estimate basis-set-limit quantities, thereby establishing an accurate benchmark data set. Together with the set provided for rotational g-tensors and magnetizabilities in our previous work [O. B. Lutn?s, A. M. Teale, T. Helgaker, D. J. Tozer, K. Ruud, and J. Gauss, J. Chem. Phys. 131, 144104 (2009)]10.1063/1.3242081, it provides a substantial source of consistently calculated high-accuracy data on second-order magnetic response properties. The utility of this benchmark data set is demonstrated by examining a wide variety of Kohn-Sham exchange-correlation functionals for the calculation of these properties. None of the existing approximate functionals provide an accuracy competitive with that provided by CCSD or CCSD(T) theory. The need for a careful consideration of vibrational effects is clearly illustrated. Finally, the pure coupled-cluster results are compared with the results of Kohn-Sham calculations constrained to give the same electronic density. Routes to future improvements are discussed in light of this comparison.
机译:使用耦合簇单打双打(CCSD)理论和耦合簇单打双打扰三重[CCSD(T)]理论计算精确的基准核磁共振屏蔽常数集和自旋旋转常数集。由(旋转的)伦敦原子轨道组成的各种基础集。通过仔细地与实验数据进行比较,并考虑到零点振动校正,可以确定计算出的耦合簇常数的准确性。分析了耦合集群的基集收敛,并采用外推技术来估计基集极限量,从而建立了一个准确的基准数据集。连同我们先前工作中提供的旋转g张量和磁化强度的设置[O. B.Lutn?s,A.M。Teale,T.Helgaker,D.J.Tozer,K.Ruud和J.Gauss,J.Chem。物理131,144104(2009)] 10.1063 / 1.3242081,它提供了有关二阶磁响应特性的一致计算的高精度数据的重要来源。通过检查各种Kohn-Sham交换关联函数来计算这些属性,可以证明此基准数据集的实用性。现有的近似功能均无法提供与CCSD或CCSD(T)理论所提供的精度相抗衡的精度。清楚地说明了需要仔细考虑振动影响的需求。最后,将纯耦合簇结果与约束给相同电子密度的Kohn-Sham计算结果进行比较。根据这种比较,讨论了未来改进的途径。

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