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A multireference coupled-electron pair approximation combined with complete-active space perturbation theory in local pair-natural orbital framework

机译:一种多引导耦合 - 电子对近似与当地对自然轨道框架中的完全活动空间扰动理论相结合

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The Complete-Active Space Second-order Perturbation Theory (CASPT2) has been one of the most widely-used methods for reliably calculating electronic structures of multireference systems. Because of its lowest level treatment of dynamic correlation, it has a high computational feasibility; however, its accuracy in some cases falls short of needs. Here, as a simple yet higher-order alternative, we introduce a hybrid theory of the CASPT2 and a multireference variant of the Coupled-Electron Pair Approximation (CEPA), which is a class of high level correlation theory. A central feature of our theory (CEPT2) is to use the two underlying theories for describing different divisions of correlation components based on the full internal contraction framework. The external components, which usually give a major contribution to the dynamic correlation, are intensively described using the CEPA Ansatz, while the rests are treated at the CASPT2 level. Furthermore, to drastically reduce the computational demands, we have incorporated the pair-natural orbital (PNO) method into our multireference implementations. This development, thus, requires highly complex derivations and coding, while it has been largely facilitated with an automatic expression and code generation technique. To highlight the accuracy of the CEPT2 approach and to assess the errors caused by the PNO truncation, benchmark calculations are shown on small- to medium-size molecules, illustrating the high accuracy of the present CEPT2 model. By tightening the truncation thresholds, the PNO-CEPT2 energy converges toward the canonical counterpart and is more accurate than that of PNO-CASPT2 as long as the same truncation thresholds are used. Published under license by AIP Publishing.
机译:完全有效的空间二阶扰动理论(CASPT2)是可靠地计算多引导系统电子结构的最广泛使用的方法之一。由于其最低水平处理动态相关性,它具有高计算可行性;但是,在某些情况下,其准确性缺乏需求。这里,作为一种简单但高阶的替代方案,我们介绍了CASPT2的混合理论和耦合电子对近似(CEPA)的多推导变体,这是一类高电平相关理论。我们理论(Cept2)的核心特征是利用两个基于完整内部收缩框架来描述相关组件的不同分裂的潜在理论。通常使用CEPA ANSATZ强烈地描述通常对动态相关的主要贡献的外部组件,而其余部分在CASPT2水平处处理。此外,为了大大降低计算需求,我们已将对自然轨道(PNO)方法纳入我们的多人指导实现。因此,这种发展需要高度复杂的衍生和编码,而在很大程度上促进了自动表达和代码生成技术。为了突出CEPT2方法的准确性并评估由PNO截断引起的误差,基准计算显示在小于中等大小的分子上,示出了本发明的CEPT2模型的高精度。通过拧紧截断阈值,只要使用相同的截断阈值,PNO-CEPT2能量朝向规范对应物收敛并且比PNO-CASPT2更精确。通过AIP发布在许可证下发布。

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