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Taming the Electronic Structure of Diradicals through the Window of Computationally Cost Effective Multireference Perturbation Theory

机译:通过计算有效的多参考摄动理论窗口来控制双自由基的电子结构

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Recently a state-specific multireference perturbation theory (SSMRPT) with an improved virtual orbitals complete active space configuration interaction (IVO-CASCI) reference function has been proposed for treating electronic structures of radicals such as methylene, m-benzyne, pyridyne, and pyridynium cation. This new development in MRPT, termed as IVO-SSMRPT, ensures that it is able to describe the structure of radicaloids with reasonable accuracy even with small reference spaces. IVO-SSMRPT is also capable of predicting the correct ordering of the lowest singlet triplet gaps. Investigation of the first three electronic states of the oxygen molecule has also been used for rating our method. The agreement of our estimates with the available far more expensive benchmark state-of-the-art ab initio calculations is creditable. The IVO-SSMRPT method provides an effective avenue with manageable cost/accuracy ratio for accurately dealing with radicaloid systems possessing varying degrees of quasidegeneracy.
机译:最近,已经提出了一种具有特定状态的多参考微扰理论(SSMRPT),它具有改进的虚拟轨道完成的主动空间配置相互作用(IVO-CASCI)参考功能,用于处理自由基的电子结构,例如亚甲基,间-苯并,吡啶和吡啶鎓阳离子。 MRPT中的这一新进展被称为IVO-SSMRPT,可确保即使在较小的参考空间下也能以合理的精度描述类比基的结构。 IVO-SSMRPT还能够预测最低单重态三重态间隙的正确顺序。氧分子的前三个电子态的研究也已用于评估我们的方法。我们的估计与可用的,更昂贵的基准最新技术从头算的一致。 IVO-SSMRPT方法提供了一种具有可控成本/精度比的有效途径,可以准确处理具有不同程度的拟边基化的自由基系统。

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