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首页> 外文期刊>The Journal of Chemical Physics >Symmetry breaking in benzene and larger aromatic molecules within generalized valence bond coupled cluster methods
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Symmetry breaking in benzene and larger aromatic molecules within generalized valence bond coupled cluster methods

机译:广义价键耦合簇方法中苯和较大芳烃分子的对称破坏

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The origin of symmetry breaking (SB) in benzene in generalized valence bond methods is investigated within a coupled cluster formalism that correlates all valence electrons. Retention of a limited number of pair correlation amplitudes (as in the perfect- and imperfect-pairing models) that incompletely describes interpair correlations leads to symmetry breaking as the orbitals and amplitudes are optimized. Local correlation models that are exact for one, two, and three interacting pairs at the doubles excitation level are compared against the exact pair correlation treatment, which correlates four interacting pairs at once in the connected double substitution operator. For simplicity, this comparison is performed with a second-order model of electron correlation, which is reasonably faithful to the infinite-order result. The significant SB known for the one-pair model (perfect pairing) is not eliminated at the two-pair level, but is virtually eliminated at the three-pair level. Therefore, a tractable hybrid model is proposed, which combines three-pair correlations at the second-order level and infinite-order treatment for the strong imperfect-pairing correlations involving one and two-pair correlations. This model greatly reduces SB in benzene and larger delocalized pi systems such as naphthalene and the phenalenyl cation and anion. The resulting optimized orbitals are localized in the sigma space but exhibit significant delocalization in the pi space. This means that correlation effects associated with different resonance structures are treated in a more balanced way than if the pi orbitals localize, leading to reduced SB. (c) 2008 American Institute of Physics.
机译:在关联所有价电子的耦合簇形式中,研究了广义价键法中苯对称断裂(SB)的起源。保留有限数量的对相关振幅(如在完全配对和不完全配对模型中),无法完全描述配对之间的相关性,这会随着轨道和振幅的优化而导致对称性破坏。将在双倍激发级别对一个,两个和三个相互作用对精确的局部相关模型与精确对相关处理进行比较,后者在连接的双取代算子中一次使四个相互作用对相关。为简单起见,此比较是使用电子相关性的二阶模型执行的,该模型非常忠实于无穷阶结果。一对模型(完美配对)中已知的有效SB不会在两对级别上消除,而实际上会在三对级别上消除。因此,提出了一种可处理的混合模型,该模型将二阶三对相关性和无限次处理相结合,以解决涉及一对和两对相关性的强不完美配对相关性。该模型大大减少了苯中的SB以及较大的离域pi系统,例如萘和苯二甲酰基阳离子和阴离子。生成的优化轨道位于sigma空间,但在pi空间中显示出明显的离域。这意味着与pi轨道定位相比,与不同共振结构相关的相关效应将以更加平衡的方式处理,从而导致SB降低。 (c)2008年美国物理研究所。

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