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Canonical transformation theory for multireference problems

机译:多参考问题的规范变换理论

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We propose a theory to describe dynamic correlations in bonding situations where there is also significant nondynamic character. We call this the canonical transformation (CT) theory. When combined with a suitable description of nondynamic correlation, such as given by a complete-active-space self-consistent Field (CASSCF) or density matrix renormalization group wave function, it provides a theory to describe bonding situations across the entire potential energy surface with quantitative accuracy for both dynamic and nondynamic correlation. The canonical transformation theory uses a unitary exponential ansatz, is size consistent, and has a computational cost of the same order as a single-reference coupled cluster theory with the same level of excitations. Calculations using the CASSCF based CT method with single and double operators for the potential energy curves for water and nitrogen molecules, the BeH2 insertion reaction, and hydrogen fluoride and boron hydride bond breaking, consistently yield quantitative accuracies typical of equilibrium region coupled cluster theory, but across all geometries, and better than obtained with multireference perturbation theory.
机译:我们提出了一种理论来描述键合情况下的动态相关,在这种情况下,也存在明显的非动力学特性。我们称其为规范变换(CT)理论。当与非动态相关性的适当描述(例如由完全活动空间自洽场(CASSCF)或密度矩阵重归一化群波函数给出的描述)结合使用时,它提供了一种理论来描述整个势能面的键合情况动态和非动态相关的定量精度。规范变换理论使用单一指数ansatz,大小一致,并且具有与具有相同激发水平的单参考耦合聚类理论相同数量的计算成本。使用基于CASSCF的CT方法(带有单和双算子)进行水和氮分子的势能曲线,BeH2插入反应以及氟化氢和氢化硼键断裂的计算,始终可得出平衡区耦合簇理论的典型定量精度,但是涵盖所有几何形状,并且优于使用多参考微扰理论获得的结果。

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