首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Excited states of large open-shell molecules: An efficient, general, and spin-adapted approach based on a restricted open-shell ground state wave function
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Excited states of large open-shell molecules: An efficient, general, and spin-adapted approach based on a restricted open-shell ground state wave function

机译:大开壳分子的激发态:基于受限开壳基态波函数的高效,通用且自旋适应的方法

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摘要

A spin-adapted configuration interaction with singles method that is based on a restricted open-shell reference function (ROCIS) with general total spin S is presented. All excited configuration state functions (CSFs) are generated with the aid of a spin-free second quantization formalism that only leads to CSFs within the first order interacting space. By virtue of the CSF construction, the formalism involves higher than singly excited determinants but not higher than singly excited configurations. Matrix elements between CSFs are evaluated on the basis of commutator relationships using a symbolic algebra program. The final equations were, however, hand-coded in order to maximize performance. The method can be applied to fairly large systems with more than 100 atoms in reasonable wall-clock times and also parallelizes well. Test calculations demonstrate that the approach is far superior to UHF-based configuration interaction with single excitations but necessarily falls somewhat short of quantitative accuracy due to the lack of dynamic correlation contributions. In order to implicitly account for dynamic correlation in a crude way, the program optionally allows for the use of Kohn-Sham orbitals in combination with a modest downscaling of two-electron integrals (DFT/ROCIS). All two-electron integrals of Kohn-Sham orbitals that appear in the Hamiltonian matrix are reduced by a total of three scaling parameters that are suitable for a wide range of molecules. Test calculations on open-shell organic radicals as well as transition metal complexes demonstrate the wide applicability of the method and its ability to calculate the electronic spectra of large molecular systems.
机译:提出了一种基于单身方法的自旋自适应配置交互,该方法基于具有常规总自旋S的受限开壳参考函数(ROCIS)。所有激发构型状态函数(CSF)都是借助无旋转的第二量化形式生成的,该形式仅导致CSF处于一阶交互空间内。借助CSF的构造,形式主义所涉及的因素高于单激发的行列式,但不高于单激发的配置。使用符号代数程序,基于换向器关系来评估CSF之间的矩阵元素。但是,最后的方程式是手工编码的,以使性能最大化。该方法可以在合理的时钟时间内应用于具有100个以上原子的相当大的系统,并且可以很好地并行化。测试计算表明,该方法远优于基于单激发的基于UHF的配置交互,但由于缺乏动态相关性,因此必然在定量精度上有所欠缺。为了以一种粗略的方式隐式地考虑动态相关性,该程序可以选择允许使用Kohn-Sham轨道,并结合适度缩小两电子积分(DFT / ROCIS)。出现在哈密顿矩阵中的Kohn-Sham轨道的所有两个电子积分被总共三个适合于各种分子的缩放参数减少。对开壳有机自由基以及过渡金属配合物的测试计算证明了该方法的广泛适用性以及其计算大分子系统电子光谱的能力。

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