首页> 外文期刊>The Journal of Chemical Physics >Combining active-space coupled-cluster methods with moment energy corrections via the CC(P;Q) methodology, with benchmark calculations for biradical transition states
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Combining active-space coupled-cluster methods with moment energy corrections via the CC(P;Q) methodology, with benchmark calculations for biradical transition states

机译:通过CC(P; Q)方法将主动空间耦合簇方法与力矩能量校正相结合,并结合双自由基过渡态的基准计算

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We have recently suggested the CC(P;Q) methodology that can correct energies obtained in the active-space coupled-cluster (CC) or equation-of-motion (EOM) CC calculations, which recover much of the nondynamical and some dynamical electron correlation effects, for the higher-order, mostly dynamical, correlations missing in the active-space CC/EOMCC considerations. It is shown that one can greatly improve the description of biradical transition states, both in terms of the resulting energy barriers and total energies, by combining the CC approach with singles, doubles, and active-space triples, termed CCSDt, with the CC(P;Q)-style correction due to missing triple excitations defining the CC(t;3) approximation.
机译:我们最近提出了一种CC(P; Q)方法,该方法可以校正在活动空间耦合簇(CC)或运动方程(EOM)CC计算中获得的能量,该能量可恢复许多非动态电子和一些动态电子对于有效空间CC / EOMCC注意事项中缺少的高阶(主要是动态)相关性,存在相关效应。结果表明,通过将CC方法与称为CCSDt的单,双和活性空间三元组结合使用CC(CC),可以从产生的能垒和总能量方面极大地改善双自由基过渡态的描述。 P; Q)型校正是由于缺少定义CC(t; 3)近似的三重激发引起的。

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