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首页> 外文期刊>The Journal of Chemical Physics >Seniority number description of potential energy surfaces: Symmetric dissociation of water, N-2, C-2, and Be-2
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Seniority number description of potential energy surfaces: Symmetric dissociation of water, N-2, C-2, and Be-2

机译:势能面的资历数字描述:水,N-2,C-2和Be-2的对称解离

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The present study further explores the concept of the seniority number (SI) by examining different configuration interaction (CI) truncation strategies in generating compact wave functions in a systematic way. While the role of Omega in addressing static (strong) correlation problem has been addressed in numerous previous studies, the usefulness of seniority number in describing weak (dynamic) correlation has not been investigated in a systematic way. Thus, the overall objective in the present work is to investigate the role of Omega in addressing also dynamic electron correlation in addition to the static correlation. Two systematic CI truncation strategies are compared beyond minimal basis sets and full valence active spaces. One approach is based on the seniority number (defined as the total number of singly occupied orbitals in a determinant) and another is based on an excitation-level limitation. In addition, molecular orbitals are energy-optimized using multiconfigurational-self-consistent-field procedure for all these wave functions. The test cases include the symmetric dissociation of water (6-310), N-2 (6-310), C-2 (6-310), and Be-2 (cc-pVTZ). We find that the potential energy profile for H2O dissociation can be reasonably well described using only the Omega = 0 sector of the CI wave function. For the Be-2 case, we show that the full CI potential energy curve (cc-pVTZ) is almost exactly reproduced using either 1-based (including configurations having up to Omega = 2 in the virtual-orbital-space) or excitation-based (up to single-plus-double-substitutions) selection methods, both out of a full-valencereference function. Finally, in dissociation cases of N-2 and C-2, we shall also consider novel hybrid wave functions obtained by a union of a set of CI configurations representing the full valence space and a set of CI configurations where seniority-number restriction is imposed for a complete set (full-valence-space and virtual) of correlated molecular orbitals, simultaneously. We discuss the usefulness of the seniority number concept in addressing both static and dynamic electron correlation problems along dissociation paths. (C) 2015 AIP Publishing PLC.
机译:本研究通过检查系统地生成紧凑波函数中的不同配置交互(CI)截断策略,进一步探讨了资历编号(SI)的概念。尽管先前的许多研究都已经解决了欧米茄在解决静态(强)相关性问题中的作用,但尚未系统地研究过资历数字在描述弱(动态)相关性方面的有用性。因此,当前工作的总体目标是研究Omega在解决静态相关性之外还解决动态电子相关性方面的作用。除了最小基数集和全价有效空间之外,还比较了两种系统的CI截断策略。一种方法是基于优先级数(定义为行列式中单个占据的轨道总数),另一种方法是基于激励级别限制。此外,针对所有这些波函数,使用多构型自洽场过程对分子轨道进行了能量优化。测试案例包括水(6-310),N-2(6-310),C-2(6-310)和Be-2(cc-pVTZ)的对称解离。我们发现仅使用CI波函数的Omega = 0扇区就可以合理地描述H2O离解的势能分布。对于Be-2的情况,我们证明了完整的CI势能曲线(cc-pVTZ)几乎是使用基于1的(包括在虚拟轨道空间中具有至多Omega = 2的配置)或激发-基于(最多一加双替代)的选择方法,都超出了全价参考功能。最后,在解离N-2和C-2的情况下,我们还将考虑通过将代表满价空间的一组CI配置和一组受工龄数限制的CI配置的并集获得的新颖混合波函数同时获得一整套相关分子轨道(全价空间和虚拟)。我们讨论了资历数字概念在解决沿解离路径的静态和动态电子相关性问题中的有用性。 (C)2015 AIP发布PLC。

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