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Singlet-paired coupled cluster theory for open shells

机译:开壳的单重态成对耦合簇理论

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Restricted single-reference coupled cluster theory truncated to single and double excitations accurately describes weakly correlated systems, but often breaks down in the presence of static or strong correlation. Good coupled cluster energies in the presence of degeneracies can be obtained by using a symmetry-broken reference, such as unrestricted Hartree-Fock, but at the cost of good quantum numbers. A large body of work has shown that modifying the coupled cluster ansatz allows for the treatment of strong correlation within a single-reference, symmetry-adapted framework. The recently introduced singlet-paired coupled cluster doubles (CCD0) method is one such model, which recovers correct behavior for strong correlation without requiring symmetry breaking in the reference. Here, we extend singlet-paired coupled cluster for application to open shells via restricted open-shell singlet-paired coupled cluster singles and doubles (ROCCSD0). The ROCCSD0 approach retains the benefits of standard coupled cluster theory and recovers correct behavior for strongly correlated, open-shell systems using a spin-preserving ROHF reference. Published by AIP Publishing.
机译:被限制为单激励和双激励的受限单参考耦合聚类理论准确地描述了弱相关系统,但在存在静态或强相关时经常崩溃。在存在简并性的情况下,可以通过使用对称对称的引用(例如不受限制的Hartree-Fock)获得良好的耦合簇能量,但要以牺牲良好的量子数为代价。大量工作表明,修改耦合簇ansatz可以在单参考,对称适应的框架内处理强相关性。最近引入的单线对配对簇双(CCD0)方法就是这样一种模型,它可以恢复正确的行为以实现强相关性,而无需在参考中破坏对称性。在这里,我们将单线对配对群集扩展为通过受限的开壳单线对配对群集单打和双打(ROCCSD0)应用于开放外壳。 ROCCSD0方法保留了标准耦合簇理论的优点,并使用保留自旋的ROHF参考,为强相关的开壳系统恢复了正确的行为。由AIP Publishing发布。

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