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首页> 外文期刊>The Journal of Chemical Physics >Evaluation of the performance of single root multireference coupled cluster method for ground and excited states, and its application to geometry optimization
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Evaluation of the performance of single root multireference coupled cluster method for ground and excited states, and its application to geometry optimization

机译:基和激发态的单根多参考耦合聚类方法性能评估及其在几何优化中的应用

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The complete model space (CAS) based genuine single root multireference (MR) coupled cluster (sr-MRCC) method [Mahapatra and Chattopadhyay, J. Chem. Phys. 133, 074102 (2010)] has been extended to enable geometry optimizations by adopting the numerical gradient scheme. The sr-MRCC theory is designed to treat quasidegeneracies of varying degrees through the computation of essential static and dynamic correlation effects in a balanced way while bypassing the intruder states problem in a size-extensive manner. The efficacy of our sr-MRCC gradient approach has been illustrated by the optimization of the geometries of N _2H_2,CH_2,C_2H_4,C _4H_4,O_3 as well as trimethylenemethane (TMM) molecular systems, since such cases, by virtue of their complexity, warrant truly multireference description. We have explored the capability of the sr-MRCC approach to yield rotational energy surfaces for the ground and first singlet excited states of N_2H_2. We also intend to explore the ground and the excited state energetics of some model systems (such as P_4, H_4, and H8) for the computation of excitation energies by relying on the sr-MRCC method. An analysis of the results and a comparison with previous pertinent theoretical works including state specific MRCC (SS-MRCC) theory of Mukherjee and co-workers have also been presented. Although in most of the cases, we observe a close behavior between the sr-MRCC and SS-MRCC method, the error in the sr-MRCC is lower than the overall error of the SS-MRCC calculations in the vicinity of the transition region (manifesting a significant quasidegenerate character). The present results show that the sr-MRCC method and its numerical gradient variant are generally applicable to very demanding model and realistic chemical problems at acceptable accuracy and affordable computational expense which together attests the efficacy and viability of the sr-MRCC formalism for handling of static and dynamic correlations simultaneously thereby ensuring a balanced description for bond-breaking and other quasidegenerate situations with a various degree of MR character. Our preliminary results illustrate that our sr-MRCC method is a potential competitor for other state specific MRCC theories.
机译:基于完整模型空间(CAS)的真正单根多参考(MR)耦合簇(sr-MRCC)方法[Mahapatra and Chattopadhyay,J. Chem。物理133,074102(2010)]已扩展为通过采用数值梯度方案来实现几何优化。 sr-MRCC理论旨在通过平衡地计算基本静态和动态相关效应,同时以尺寸扩展的方式绕过入侵者状态问题,从而处理不同程度的准边族。我们通过优化N _2H_2,CH_2,C_2H_4,C _4H_4,O_3以及三甲基甲烷(TMM)分子系统的几何结构证明了sr-MRCC梯度方法的有效性,因为这种情况由于其复杂性,保证真正的多引用描述。我们已经探索了sr-MRCC方法产生N_2H_2的基态和第一单重激发态的旋转能表面的能力。我们还打算通过sr-MRCC方法探索一些模型系统(例如P_4,H_4和H8)的基态和激发态能级,以计算激发能。还对结果进行了分析,并与包括Mukherjee及其同事的国家特定MRCC(SS-MRCC)理论在内的相关理论著作进行了比较。尽管在大多数情况下,我们观察到sr-MRCC和SS-MRCC方法之间存在接近的行为,但sr-MRCC中的误差低于过渡区域附近SS-MRCC计算的整体误差(表现出重要的准生成特征)。目前的结果表明,sr-MRCC方法及其数值梯度变体通常可用于非常苛刻的模型和现实的化学问题,且可接受的精度和可负担的计算费用,共同证明了sr-MRCC形式论处理静电的有效性和可行性。同时具有动态相关性,从而确保对具有不同程度MR特性的键断裂和其他准生成情况的平衡描述。我们的初步结果表明,我们的sr-MRCC方法是其他特定于州的MRCC理论的潜在竞争者。

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