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A coupled cluster approach with a hybrid treatment of connected triple excitations: Implementation and applications for open-shell systems

机译:耦合簇方法与已连接三重激发的混合处理:开壳系统的实现和应用

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摘要

An implementation of the coupled cluster (CC) singles, doubles, and a hybrid treatment of connected triples [denoted as CCSD(T)-h], based on the unrestricted Hartree-Fock (UHF) reference, is presented. Based on the spin-integrated formulation, we have developed a computer program to achieve the automatic derivation and implementation of the CCSD(T)-h approach. The CCSD(T)-h approach computationally scales as the seventh power of the system size, and is affordable for many medium-sized systems. The present approach has been applied to study the equilibrium geometries and harmonic vibrational frequencies in a number of open-shell diatomic molecules and bond breaking potential energy profiles in several open-shell molecules, including CH, NH 2, and SiH2. For all systems under study, the overall performance of the UHF-based CCSD(T)-h approach is very close to that of the corresponding CCSDT (CC singles, doubles, and triples), and much better than that of the UHF-based CCSD(T) (CC singles, doubles, and perturbative triples).
机译:提出了基于无限制Hartree-Fock(UHF)参考的耦合群集(CC)单打,双打和连接三联的混合处理[表示为CCSD(T)-h]的实现。基于自旋积分公式,我们开发了一种计算机程序来实现CCSD(T)-h方法的自动推导和实现。 CCSD(h)-h方法在计算上可扩展为系统大小的第七次幂,并且对于许多中型系统而言都是可以承受的。本方法已用于研究许多开壳双原子分子的平衡几何构型和谐波振动频率,以及包括CH,NH 2和SiH2在内的几个开壳分子的键断裂势能分布。对于所有正在研究的系统,基于UHF的CCSD(T)-h方法的总体性能非常接近相应的CCSDT(CC单打,双打和三重),并且比基于UHF的性能要好得多CCSD(T)(CC单打,双打和摄动三重)。

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