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Hybrid correlation models based on active-space partitioning:Seeking accurate O(N~5) ab initio methods for bond breaking

机译:基于活动空间划分的混合相关模型:寻求精确的O(N〜5)从头算方法进行键断裂

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摘要

Moller-Plesset second-order (MP2) perturbation theory remains the least expensive standard ab initio method that includes electron correlation,scaling as O(N~5) with the number of molecular orbitals N.Unfortunately,when restricted Hartree-Fock orbitals are employed,the potential energy curves calculated with this method are of little use at large interatomic separations because of the divergent behavior of MP2 in these regions.In our previous study [J.Chem.Phys.122,234110 (2005)] we combined the MP2 method with the singles and doubles coupled cluster (CCSD) method to produce a hybrid method that retains the computational scaling of MP2 and improves dramatically the shape of the MP2 curves.In this work we expand the hybrid methodology to several other schemes.We investigate a new,improved MP2-CCSD method as well as a few other O(N~5) methods related to the Epstein-Nesbet pair correlation theory.Nonparallelity errors across the dissociation curve as well as several spectroscopic constants are computed for BH,HF,H_2O,CH~+,CH_4,and Li_2 molecules with the 6-31G* basis set and compared with the corresponding full configuration interaction results.We show that among the O(N~5) methods considered,our new hybrid MP2-CCSD method is the most accurate and significantly outperforms MP2 not only at large interatomic separations,but also near equilibrium geometries.
机译:Moller-Plesset二阶(MP2)扰动理论仍然是最便宜的标准从头算方法,该方法包括电子相关性,随着分子轨道数N缩放为O(N〜5)。不幸的是,当使用受限的Hartree-Fock轨道时,由于MP2在这些区域中的发散行为,因此用这种方法计算的势能曲线在较大的原子间分离中几乎没有用。在我们以前的研究中[J.Chem.Phys.122,234110(2005)],我们将MP2组合在一起用单双耦合簇(CCSD)方法生成一种混合方法,该方法保留了MP2的计算比例,并显着改善了MP2曲线的形状。在这项工作中,我们将混合方法扩展到其他几种方案。新的,改进的MP2-CCSD方法以及其他一些与Epstein-Nesbet对相关理论有关的O(N〜5)方法。解离曲线上的非平行性误差以及几个光谱常数计算具有6-31G *基集的BH,HF,H_2O,CH〜+,CH_4和Li_2分子的s,并将其与相应的完整构型相互作用结果进行比较。我们表明,在考虑的O(N〜5)方法中,我们新的混合MP2-CCSD方法是最准确的,不仅在较大的原子间间距处而且在接近平衡的几何形状方面均明显优于MP2。

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