Liu Junzi, Matthews Devin A, Cheng Lan
School of Chemistry and Biological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Department of Chemistry, Southern Methodist University, Dallas, Texas 75275, United States.
J Chem Theory Comput. 2022 Apr 12;18(4):2281-2291. doi: 10.1021/acs.jctc.1c01210. Epub 2022 Mar 21.
An efficient implementation of the quadratic unitary coupled-cluster singles and doubles (qUCCSD) scheme for calculations of electronic ground and excited states using an unrestricted molecular spin-orbital formulation and an efficient tensor contraction library is reported. The accuracy of the qUCCSD scheme and the efficiency of the present implementation are demonstrated using extensive benchmark calculations of excitation energies and an application to S → S vertical excitation energies for - and -4,4dihydrotriphenylene. The qUCCSD scheme has been shown to provide improved excitation energies compared with the UCC3 scheme formulated based on perturbation theory. A UCC truncation scheme that can provide excitation energies correct through the fourth order is also presented to further improve the accuracy of the qUCCSD scheme.
报道了一种高效的二次幺正耦合簇单双激发(qUCCSD)方案的实现,该方案使用无限制分子自旋轨道公式和高效张量收缩库来计算电子基态和激发态。通过对激发能的广泛基准计算以及对-4,4-二氢三亚苯的S→S垂直激发能的应用,证明了qUCCSD方案的准确性和当前实现的效率。与基于微扰理论制定的UCC3方案相比,qUCCSD方案已被证明能提供更高的激发能。还提出了一种能提供直至四阶正确激发能的UCC截断方案,以进一步提高qUCCSD方案的准确性。