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Compressed intramolecular dispersion interactions

机译:压缩分子内分散相互作用

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The feasibility of the compression of localized virtual orbitals is explored in the context of intramolecular long-range dispersion interactions. Singular value decomposition (SVD) of coupled cluster doubles amplitudes associated with the dispersion interactions is analyzed for a number of long-chain systems, including saturated and unsaturated hydrocarbons and a silane chain. Further decomposition of the most important amplitudes obtained from these SVDs allows for the analysis of the dispersion-specific virtual orbitals that are naturally localized. Consistent with previous work on intermolecular dispersion interactions in dimers, it is found that three important geminals arise and account for the majority of dispersion interactions at the long range, even in the many body intramolecular case. Furthermore, it is shown that as few as three localized virtual orbitals per occupied orbital can be enough to capture all pairwise long-range dispersion interactions within a molecule.
机译:在分子内的远程分散相互作用的背景下探讨了局部虚拟轨道压缩的可行性。 分析与分散相互作用相关的偶联簇的奇异值分解(SVD),用于多个长链系统,包括饱和和不饱和烃和硅烷链。 进一步分解由这些SVD获得的最重要的幅积允许分析自然局部的分散特异性虚拟轨道。 与先前的工作组一致的二聚体中的分子间分散相相互作用,发现三个重要的初始胎儿产生并占长距离的大多数分散相互作用,即使在许多身体分子内情况下也是如此。 此外,表明,只有三个局部虚拟轨道的每个占用的轨道可以足以捕获分子内的所有成对的远程分散相互作用。

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