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相似变换耦合簇响应(ST-CCR)理论——一种含时相似变换的电子相关方程(STEOM-CC)方法。

Similarity transformed coupled cluster response (ST-CCR) theory--a time-dependent similarity transformed equation-of-motion coupled cluster (STEOM-CC) approach.

机构信息

Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa, Israel.

出版信息

J Chem Phys. 2013 Jul 7;139(1):014110. doi: 10.1063/1.4811799.

Abstract

This paper presents a new method for calculating spectroscopic properties in the framework of response theory utilizing a sequence of similarity transformations (STs). The STs are preformed using the coupled cluster (CC) and Fock-space coupled cluster operators. The linear and quadratic response functions of the new similarity transformed CC response (ST-CCR) method are derived. The poles of the linear response yield excitation-energy (EE) expressions identical to the ones in the similarity transformed equation-of-motion coupled cluster (STEOM-CC) approach. ST-CCR and STEOM-CC complement each other, in analogy to the complementarity of CC response (CCR) and equation-of-motion coupled cluster (EOM-CC). ST-CCR/STEOM-CC and CCR/EOM-CC yield size-extensive and size-intensive EEs, respectively. Other electronic-properties, e.g., transition dipole strengths, are also size-extensive within ST-CCR, in contrast to STEOM-CC. Moreover, analysis suggests that in comparison with CCR, the ST-CCR expressions may be confined to a smaller subspace, however, the precise scope of the truncation can only be determined numerically. In addition, reformulation of the time-independent STEOM-CC using the same parameterization as in ST-CCR, as well as an efficient truncation scheme, is presented. The shown convergence of the time-dependent and time-independent expressions displays the completeness of the presented formalism.

摘要

本文提出了一种在利用相似变换(ST)序列的响应理论框架中计算光谱性质的新方法。这些 ST 是使用耦合簇(CC)和 Fock 空间耦合簇算符进行的。新的相似变换 CC 响应(ST-CCR)方法的线性和二次响应函数被推导出来。线性响应的极点产生的激发能(EE)表达式与相似变换运动方程耦合簇(STEOM-CC)方法中的表达式相同。ST-CCR 和 STEOM-CC 相互补充,类似于 CC 响应(CCR)和运动方程耦合簇(EOM-CC)的互补性。ST-CCR/STEOM-CC 和 CCR/EOM-CC 分别产生大小扩展和大小密集的 EE。其他电子性质,例如跃迁偶极强度,在 ST-CCR 中也是大小扩展的,而在 STEOM-CC 中则不是。此外,分析表明,与 CCR 相比,ST-CCR 表达式可能被限制在较小的子空间中,但是截断的精确范围只能通过数值确定。此外,还提出了使用与 ST-CCR 相同参数化的时间无关的 STEOM-CC 的重新表述以及有效的截断方案。所展示的时变和时不变表达式的收敛性显示了所提出的形式主义的完备性。

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