首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Noniterative Doubles Corrections to the Random Phase and Higher Random Phase Approximations: Singlet and Triplet Excitation Energies
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Noniterative Doubles Corrections to the Random Phase and Higher Random Phase Approximations: Singlet and Triplet Excitation Energies

机译:非特性双打校正对随机相和更高的随机相位近似:单线件和三联励磁能量

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摘要

The second-order noniterative doubles-corrected random phase approximation (RPA) method has been extended to triplet excitation energies and the doubles-corrected higher RPA method as well as a shifted version for calculating singlet and triplet excitation energies are presented here for the first time. A benchmark set consisting of 20 molecules with a total of 117 singlet and 71 triplet excited states has been used to test the performance of the new methods by comparison with previous results obtained with the second-order polarization propagator approximation (SOPPA) and the third order approximate coupled cluster singles, doubles and triples model CC3. In general, the second-order doubles corrections to RPA and HRPA significantly reduce both the mean deviation as well as the standard deviation of the errors compared to the CC3 results. The accuracy of the new methods approaches the accuracy of the SOPPA method while using only 10-60% of the calculation time. (c) 2019 The Authors. Journal of Computational Chemistry published by Wiley Periodicals, Inc.
机译:已经延伸到三重次激励能量的二阶非行李校正随机相位逼近(RPA)方法,并且第一次在此延伸到三重校正的较高的RPA方法以及用于计算单线和三重态励磁能量的偏移版本。由20个分子组成的基准组,共有117个单线态和71个三联兴奋状态,通过与用二阶偏振传播逼近(SOPPA)和三阶获得的先前结果进行比较来测试新方法的性能近似耦合簇单打,双倍和三元组模型CC3。通常,与CC3结果相比,对RPA和HRPA的二阶加倍校正显着降低了误差的平均偏差以及误差的标准偏差。新方法的准确性接近SOPPA方法的准确性,同时仅使用10-60%的计算时间。 (c)2019年作者。中国威利期刊(Inc)出版的计算化学杂志CHINESE。

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