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首页> 外文期刊>The Journal of Chemical Physics >Cluster decomposition of full configuration interaction wave functions: A tool for chemical interpretation of systems with strong correlation
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Cluster decomposition of full configuration interaction wave functions: A tool for chemical interpretation of systems with strong correlation

机译:全配置交互波函数的集群分解:一种具有强相关性的系统化学解释的工具

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Approximate full configuration interaction (FCI) calculations have recently become tractable for systems of unforeseen size, thanks to stochastic and adaptive approximations to the exponentially scaling FCI problem. The result of an FCI calculation is a weighted set of electronic configurations, which can also be expressed in terms of excitations from a reference configuration. The excitation amplitudes contain information on the complexity of the electronic wave function, but this information is contaminated by contributions from disconnected excitations, i.e., those excitations that are just products of independent lower-level excitations. The unwanted contributions can be removed via a cluster decomposition procedure, making it possible to examine the importance of connected excitations in complicated multireference molecules which are outside the reach of conventional algorithms. We present an implementation of the cluster decomposition analysis and apply it to both true FCI wave functions, as well as wave functions generated from the adaptive sampling CI algorithm. The cluster decomposition is useful for interpreting calculations in chemical studies, as a diagnostic for the convergence of various excitation manifolds, as well as as a guidepost for polynomially scaling electronic structure models. Applications are presented for (i) the double dissociation of water, (ii) the carbon dimer, (iii) the pi space of polyacenes, and (iv) the chromium dimer. While the cluster amplitudes exhibit rapid decay with an increasing rank for the first three systems, even connected octuple excitations still appear important in Cr-2, suggesting that spin-restricted single-reference coupled-cluster approaches may not be tractable for some problems in transition metal chemistry. Published by AIP Publishing.
机译:近似完全配置交互(FCI)计算最近对不可预见的系统的系统来说,由于对指数缩放的FCI问题的随机和自适应近似。 FCI计算的结果是加权电子配置,也可以以来自参考配置的激励来表达。激发幅度包含有关电子波函数的复杂性的信息,但是该信息被断开激励的贡献污染,即,只有独立较低级别激励的产品的激发。可以通过集群分解过程去除不需要的贡献,使得可以检查在常规算法范围之外的复杂多引导分子中连接激发的重要性。我们介绍了集群分解分析的实现,并将其应用于真正的FCI波函数,以及从自适应采样CI算法生成的波函数。集群分解对于解释化学研究的计算是有用的,作为各种激励歧管的收敛的诊断,以及作为多项式缩放电子结构模型的引导件。提出(i)水的双解离水,(ii)碳二聚体,(iii)聚乙烯的PI空间,(iv)铬二聚体。虽然群集幅度随着前三个系统的增加而越来越快地衰减,但甚至连通的八联激励仍然在CR-2中表现出很重要,甚至在CR-2中表现出很重要,这表明旋转受限制的单引用耦合簇方法可能在转换中存在一些问题可能不会被遗传金属化学。通过AIP发布发布。

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