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一种显式相关的局域耦合簇方法,用于计算接近基组极限的大分子。

An explicitly correlated local coupled cluster method for calculations of large molecules close to the basis set limit.

机构信息

Institut für Theoretische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569 Stuttgart, Germany.

出版信息

J Chem Phys. 2011 Oct 14;135(14):144117. doi: 10.1063/1.3647565.

Abstract

A new explicitly correlated local coupled-cluster method with single and double excitations and a perturbative treatment of triple excitations [DF-LCCSD(T0)-F12x (x = a,b)] is presented. By means of truncating the virtual orbital space to pair-specific local domains (domain approximation) and a simplified treatment of close, weak and distant pairs using LMP2-F12 (pair approximation) the scaling of the computational cost with molecular size is strongly reduced. The basis set incompleteness errors as well as the errors due to the domain approximation are largely eliminated by the explicitly correlated terms. All integrals are computed using efficient density fitting (DF) approximations. The accuracy of the method is investigated for 52 reactions involving medium size molecules. A comparison of DF-LCCSD(T0)-F12x reaction energies with canonical CCSD(T)-F12x calculations shows that the errors introduced by the domain approximation are indeed very small. Care must be taken to keep the errors due to the additional pair approximation equally small, and appropriate distance criteria are recommended. Using these parameters, the root mean square (RMS) deviations of DF-LCCSD(T0)-F12a calculations with triple-ζ basis sets from estimated CCSD(T) complete basis set (CBS) limits and experimental data amount to only 1.5 kJ mol(-1) and 2.9 kJ mol(-1), respectively. For comparison, the RMS deviation of the CCSD(T)/CBS values from the experimental values amounts to 3.0 kJ mol(-1). The potential of the method is demonstrated for five reactions of biochemical or pharmacological interest which include molecules with up to 61 atoms. These calculations show that molecules of this size can now be treated routinely and yield results that are close to the CCSD(T) complete basis set limits.

摘要

一种新的显式关联局部耦合簇方法,包含单激发和双激发以及三重激发的微扰处理 [DF-LCCSD(T0)-F12x(x=a,b)]。通过将虚拟轨道空间截断为对特定的局部域(域近似)以及使用 LMP2-F12 对近、弱和远对进行简化处理(对近似),大大降低了分子大小的计算成本。显式相关项消除了基组不完整性误差以及域近似引起的误差。所有积分均使用高效密度拟合(DF)近似计算。该方法的准确性通过涉及中等大小分子的 52 个反应进行了研究。DF-LCCSD(T0)-F12x 反应能与规范 CCSD(T)-F12x 计算的比较表明,域近似引起的误差确实很小。必须注意保持对附加对近似的误差同样小,并推荐适当的距离标准。使用这些参数,三 ζ 基组的 DF-LCCSD(T0)-F12a 计算与估计 CCSD(T)完全基组(CBS)极限和实验数据的均方根(RMS)偏差分别仅为 1.5 kJ mol(-1)和 2.9 kJ mol(-1)。相比之下,CCSD(T)/CBS 值与实验值的 RMS 偏差为 3.0 kJ mol(-1)。该方法的潜力通过涉及生化或药理兴趣的五个反应得到了证明,其中包括多达 61 个原子的分子。这些计算表明,现在可以常规处理这种大小的分子,并得到接近 CCSD(T)完全基组极限的结果。

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