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Combining Pair-Density Functional Theory and Variational Two-Electron Reduced-Density Matrix Methods

机译:结合对密度函数理论和变分二电子减压矩阵方法

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摘要

Complete active space self-consistent field (CASSCF) computations can be realized at polynomial cost via the variational optimization of the active-space two-electron reduced-density matrix (2-RDM). Like conventional approaches to CASSCF, variational 2-RDM (v2RDM) driven CASSCF captures nondynamical electron correlation in the active space, but it lacks a description of the remaining dynamical correlation effects. Such effects can be modeled through a combination of v2RDM-CASSCF and on-top pair-density functional theory (PDFT). The resulting v2RDM-CASSCF-PDFT approach provides a computationally inexpensive framework for describing both static and dynamical correlation effects in multiconfigurational and strongly correlated systems. On-top pair-density functionals can be derived from familiar Kohn-Sham exchange-correlation (XC) density functionals through the translation of the v2RDM-CASSCF reference densities [Li Manni et al. J. Chem. Theory Comput. 2014, 10, 3669-3680]. Translated and fully translated on-top PDFT versions of several common XC functionals are applied to the potential energy curves of N-2, H2O, and CN-, as well as to the singlet/triplet energy splittings in the linear polyacene series. Using v2RDM-CASSCF-PDFT and the translated PBE functional, the singlet/triplet energy splitting of an infinitely long acene molecule is estimated to be 4.87 kcal mol(-1).
机译:完整的主动空间自洽场(CASSCF)计算可以通过多项式成本实现通过有源空间二电子减压矩阵(2-RDM)的变分优化来实现。与CASSCF的传统方法一样,变分2-RDM(V2RDM)驱动的CASSCF在活动空间中捕获Nondynamical电子相关性,但是它缺乏对剩余动态相关效果的描述。这些效果可以通过V2RDM-CASSCF和顶部对密度泛函理论(PDFT)的组合来建模。由此产生的V2RDM-CASSCF-PDFT方法提供了一种计算廉价的框架,用于描述多功能和强相关系统中的静态和动态相关效果。通过V2RDM-CASSCF参考密度的翻译,可以从熟悉的Kohn-Max-Colrelelations(XC)密度函数源自熟悉的Kohn-Max-Consulity(XC)密度函数[Li Manni等人。 J.Chem。理论计算。 2014,10,3669-3680]。几种公共XC功能的翻译和完全翻译的顶部PDFT版本应用于N-2,H2O和CN-的电位能量曲线,以及线性聚乙烯系列中的单线/三态能量分裂。使用V2RDM-CASSCF-PDFT和翻译的PBE功能,无限长的丙烯分子的单次/三重态能量分裂估计为4.87kcal摩尔(-1)。

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