首页> 外文期刊>The Journal of Chemical Physics >An expanded calibration study of the explicitly correlated CCSD(T)-F12b method using large basis set standard CCSD(T) atomization energies
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An expanded calibration study of the explicitly correlated CCSD(T)-F12b method using large basis set standard CCSD(T) atomization energies

机译:使用大基集标准CCSD(T)雾化能量的显式相关CCSD(T)-F12b方法的扩展校准研究

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The effectiveness of the recently developed, explicitly correlated coupled cluster method CCSD(T)-F12b is examined in terms of its ability to reproduce atomization energies derived from complete basis set extrapolations of standard CCSD(T). Most of the standard method findings were obtained with aug-cc-pV7Z or aug-cc-pV8Z basis sets. For a few homonuclear diatomic molecules it was possible to push the basis set to the aug-cc-pV9Z level. F12b calculations were performed with the cc-pVnZ-F12 (n = D, T, Q) basis set sequence and were also extrapolated to the basis set limit using a Schwenke-style, parameterized formula. A systematic bias was observed in the F12b method with the (VTZ-F12/VQZ-F12) basis set combination. This bias resulted in the underestimation of reference values associated with small molecules (valence correlation energies <0.5 E_h) and an even larger overestimation of atomization energies for bigger systems. Consequently, caution should be exercised in the use of F12b for high accuracy studies. Root mean square and mean absolute deviation error metrics for this basis set combination were comparable to complete basis set values obtained with standard CCSD(T) and the aug-cc-pVDZ through aug-cc-pVQZ basis set sequence. However, the mean signed deviation was an order of magnitude larger. Problems partially due to basis set superposition error were identified with second row compounds which resulted in a weak performance for the smaller VDZ-F12/VTZ-F12 combination of basis sets.
机译:就最近开发的,显式相关的耦合簇方法CCSD(T)-F12b的重现雾化能量的能力(从标准CCSD(T)的完整基集外推得出)的能力进行了检验。大多数标准方法的发现都是通过aug-cc-pV7Z或aug-cc-pV8Z基集获得的。对于一些同核双原子分子,可以将基础设置推至aug-cc-pV9Z水平。 F12b计算是使用cc-pVnZ-F12(n = D,T,Q)基础集序列进行的,并且还使用Schwenke风格的参数化公式外推至基础集极限。使用(VTZ-F12 / VQZ-F12)基集组合在F12b方法中观察到系统偏差。这种偏差导致与小分子有关的参考值被低估(化合价相关能量<0.5 E_h),对于更大的系统,雾化能量甚至被更大地高估。因此,在使用F12b进行高精度研究时应谨慎行事。此基集组合的均方根和平均绝对偏差误差度量与通过标准CCSD(T)和aug-cc-pVDZ通过aug-cc-pVQZ基集序列获得的完整基集值相当。但是,平均有符号偏差要大一个数量级。第二行化合物识别出部分由于基集叠加误差而导致的问题,这对于较小的VDZ-F12 / VTZ-F12基集组合导致较弱的性能。

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