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Non-iterative coupled-cluster methods employing multi-reference perturbation theory wave functions

机译:多参考摄动理论波动函数的非迭代耦合簇方法

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A new class of non-iterative coupled-cluster (CC) methods, which improve the results of standard CC and equation-of-motion (EOM) CC calculations for ground and excited-state potential energy surfaces along bond breaking coordinates and for excited states dominated by two-electron transitions, is explored. The proposed approaches combine the method of moments of coupled-cluster equations (MMCC), in which the a posteriori corrections due to higher-order correlations are added to standard CC/EOMCC energies, with the multi-reference many-body perturbation theory (MRMBPT), which provides information about the most essential non-dynamic and dynamic correlation effects that are relevant to electronic quasi-degeneracies. The performance of the basic MRMBPT-corrected MMCC approximation, in which inexpensive noniterative corrections due to triple excitations are added to ground- and excited-state energies obtained with the CC/EOMCC singles and doubles approach, is illustrated by the results of a few test calculations, including bond breaking in HF and H2O, and excited states of CH+. (c) 2006 Elsevier B.V. All rights reserved.
机译:新型的非迭代耦合簇(CC)方法,改进了沿着键断裂坐标和激发态的基态和激发态势能面的标准CC和运动方程(EOM)CC计算结果探索了以两电子跃迁为主的结构。所提出的方法将耦合簇方程的矩量法(MMCC)与多参考多体摄动理论(MRMBPT)相结合,在该方法中,由于高阶相关性而导致的后验校正被添加到标准CC / EOMCC能量中。 ),提供有关与电子准简并性有关的最基本的非动态和动态相关效应的信息。几次测试的结果说明了基本MRMBPT校正的MMCC近似的性能,其中将由三次激发引起的廉价非迭代校正添加到通过CC / EOMCC单次和两次方法获得的基态和激发态能量中计算,包括HF和H2O中的键断裂以及CH +的激发态。 (c)2006 Elsevier B.V.保留所有权利。

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