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扩展动态加权完全活性空间微扰理论二阶方法:融合两种优势

Extended Dynamically Weighted CASPT2: The Best of Two Worlds.

作者信息

Battaglia Stefano, Lindh Roland

机构信息

Department of Chemistry-BMC, Uppsala University, P.O. Box 576, SE-75123 Uppsala, Sweden.

出版信息

J Chem Theory Comput. 2020 Mar 10;16(3):1555-1567. doi: 10.1021/acs.jctc.9b01129. Epub 2020 Feb 21.

Abstract

We introduce a new variant of the complete active space second-order perturbation theory (CASPT2) method that performs similarly to multistate CASPT2 (MS-CASPT2) in regions of the potential energy surface where the electronic states are energetically well separated and is akin to extended MS-CASPT2 (XMS-CASPT2) in case the underlying zeroth-order references are near-degenerate. Our approach follows a recipe analogous to that of XMS-CASPT2 to ensure approximate invariance under unitary transformations of the model states and a dynamic weighting scheme to smoothly interpolate the Fock operator between state-specific and state-average regimes. The resulting extended dynamically weighted CASPT2 (XDW-CASPT2) methodology possesses the most desirable features of both MS-CASPT2 and XMS-CASPT2, that is, the ability to provide accurate transition energies and correctly describe avoided crossings and conical intersections. The reliability of XDW-CASPT2 is assessed on a number of molecular systems. First, we consider the dissociation of lithium fluoride, highlighting the distinctive characteristics of the new approach. Second, the invariance of the theory is investigated by studying the conical intersection of the distorted allene molecule. Finally, the relative accuracy in the calculation of vertical excitation energies is benchmarked on a set of 26 organic compounds. We found that XDW-CASPT2, albeit being only approximately invariant, produces smooth potential energy surfaces around conical intersections and avoided crossings, performing equally well to the strictly invariant XMS-CASPT2 method. The accuracy of vertical transition energies is almost identical to MS-CASPT2, with a mean absolute deviation of 0.01-0.02 eV, in contrast to 0.12 eV for XMS-CASPT2.

摘要

我们介绍了一种完全活性空间二阶微扰理论(CASPT2)方法的新变体,在势能面中电子态能量上分离良好的区域,其表现与多态CASPT2(MS - CASPT2)相似;而在基础零阶参考态接近简并的情况下,它类似于扩展MS - CASPT2(XMS - CASPT2)。我们的方法遵循与XMS - CASPT2类似的策略,以确保在模型态的酉变换下近似不变,并采用动态加权方案在特定态和态平均区域之间平滑地内插福克算子。由此产生的扩展动态加权CASPT2(XDW - CASPT2)方法兼具MS - CASPT2和XMS - CASPT2最理想的特征,即能够提供准确的跃迁能量,并正确描述避免交叉和锥形交叉。在多个分子体系上评估了XDW - CASPT2的可靠性。首先,我们考虑了氟化锂的解离,突出了新方法的独特特征。其次,通过研究扭曲丙二烯分子的锥形交叉来考察该理论的不变性。最后,在一组26种有机化合物上对垂直激发能计算的相对准确性进行了基准测试。我们发现,尽管XDW - CASPT2只是近似不变,但它在锥形交叉和避免交叉周围产生了平滑的势能面,其表现与严格不变的XMS - CASPT2方法相当。垂直跃迁能量的准确性与MS - CASPT2几乎相同,平均绝对偏差为0.01 - 0.02 eV,而XMS - CASPT2为0.12 eV。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dd6/7307887/5561f582bc94/ct9b01129_0001.jpg

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