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首页> 外文期刊>Molecular physics >The effect of approximating some molecular integrals in coupled-cluster calculations: fundamental frequencies and rovibrational spectroscopic constants for isotopologues of cyclopropenylidene
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The effect of approximating some molecular integrals in coupled-cluster calculations: fundamental frequencies and rovibrational spectroscopic constants for isotopologues of cyclopropenylidene

机译:在耦合簇计算中近似某些分子积分的影响:环丙烯烯的同位素同向异构体的基本频率和振动光谱常数

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The effect of approximating the three-and four-virtual molecular orbital integrals in single and double coupled-cluster theory including a perturbational correction for connected triple excitations [CCSD(T)] is investigated for the calculation of higher-order properties, specifically the calculation of a molecular quartic force field and spectroscopic constants. The approach was proposed previously, but investigated for only second- and lower-order properties. It is shown that the conclusions reached previously are essentially unchanged on moving to higher-order properties. That is, approximating the selected integrals has essentially no effect on the accuracy of CCSD(T) calculations, and the error due to approximating integrals is much smaller than the residual error due to one-particle basis set deficiencies. The advantage of this approach is that it significantly reduces the amount of data needed to perform CCSD(T) calculations, thereby reducing computational requirements associated with input/output operations and message passing in massively parallel, distributed memory algorithms. These savings are particularly important for large basis set calculations where the reduction in data can be as high as three orders of magnitude for similar to 1000 unoccupied molecular orbitals. The approach was tested by computing the quartic force field, vibrational frequencies, and spectroscopic constants of cyclopropenylidene and isotopologues. Comparison of our best results with available experimental data shows excellent agreement between theory and experiment. It is hoped that the theoretical spectroscopic data presented herein for cyclopropenylidene and isotopologues is useful in the interpretation of future laboratory experiments and astronomical observations.
机译:为了计算高阶性质,特别是计算,研究了在单双耦合簇理论中近似三,四虚拟分子轨道积分的影响,包括对连接的三重激发[CCSD(T)]进行微扰校正。分子四次力场和光谱常数的关系该方法是先前提出的,但仅针对二阶和低阶性质进行了研究。结果表明,先前得出的结论在转向高阶性质时基本不变。也就是说,近似选择的积分对CCSD(T)计算的准确性基本上没有影响,并且由于近似积分而导致的误差远小于由于单粒子基础集缺陷而导致的残留误差。这种方法的优势在于,它大大减少了执行CCSD(T)计算所需的数据量,从而减少了与大规模并行分布式内存算法中与输入/输出操作和消息传递相关的计算需求。对于大型基础集计算而言,这些节省尤为重要,因为对于约1000个未占用的分子轨道,数据的减少可能高达三个数量级。通过计算环丙烯基和同位素同聚物的四次力场,振动频率以及光谱常数对该方法进行了测试。我们的最佳结果与可用的实验数据的比较表明,理论与实验之间具有极好的一致性。希望本文提供的关于环丙烯基和同位素异位体的理论光谱数据可用于解释未来的实验室实验和天文观测。

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