首页> 外文期刊>Journal of chemical theory and computation: JCTC >Intermediate Hamiltonian Fock Space Multireference Coupled Cluster Approach to Core Excitation Spectra
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Intermediate Hamiltonian Fock Space Multireference Coupled Cluster Approach to Core Excitation Spectra

机译:中间哈密顿量空间多参考耦合聚类方法研究核激发光谱

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The Fock space multireference coupled cluster (FSMRCC) method provides an efficient approach for the direct calculation of excitation energies. In intermediate Hamiltonian (IH-FSMRCC) formulation, the method is free from intruder state problems and associated convergence difficulties, even with a large model space. In this paper, we demonstrate that the IH-FSMRCC method with suitably chosen model space can be used for the accurate description of core excitation spectra of molecules, and our results are in excellent agreement with the experimental values. We have investigated the effect of choice of model space on the computed results. Unlike the equation-of-motion (EOM)-based method, the IH-FSMRCC does not require any special technique for convergence and in singles and doubles approximation gives a performance comparable to that of the standard EOMEE-CCSD method, even better in some of the cases.
机译:Fock空间多参考耦合簇(FSMRCC)方法为直接计算激发能提供了一种有效的方法。在中间哈密顿量(IH-FSMRCC)公式中,即使存在较大的模型空间,该方法也不会出现入侵者状态问题和相关的收敛困难。在本文中,我们证明了具有适当选择的模型空间的IH-FSMRCC方法可用于精确描述分子的核心激发光谱,我们的结果与实验值非常吻合。我们研究了模型空间选择对计算结果的影响。与基于运动方程(EOM)的方法不同,IH-FSMRCC不需要任何特殊的收敛技术,并且单次和双次逼近可以提供与标准EOMEE-CCSD方法相当的性能,甚至在某些情况下更好的情况。

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