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Transition moments between excited electronic states from the Hermitian formulation of the coupled cluster quadratic response function

机译:来自耦合簇二次响应函数的封闭电子国家的激发电子状态之间的过渡瞬间

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摘要

We introduce a new method for the computation of the transition moments between the excited electronic states based on the expectation value formalism of the coupled cluster theory [B. Jeziorski and R. Moszynski, Int. J. Quantum Chem. 48, 161 (1993)]. The working expressions of the new method solely employ the coupled cluster operator T and an auxiliary operator S that is expressed as a finite commutator expansion in terms of T and T-dagger. In the approximation adopted in the present paper, the cluster expansion is limited to single, double, and linear triple excitations. The computed dipole transition probabilities for the singlet-singlet and triplet-triplet transitions in alkali earth atoms agree well with the available theoretical and experimental data. In contrast to the existing coupled cluster response theory, the matrix elements obtained by using our approach satisfy the Hermitian symmetry even if the excitations in the cluster operator are truncated, but the operator S is exact. The Hermitian symmetry is slightly broken if the commutator series for the operator S are truncated. As a part of the numerical evidence for the new method, we report calculations of the transition moments between the excited triplet states which have not yet been reported in the literature within the coupled cluster theory. Slater-type basis sets constructed according to the correlation-consistency principle are used in our calculations. Published by AIP Publishing.
机译:我们基于耦合簇理论的期望值形式主义来介绍一种新的励磁电子状态转变时刻的新方法[B. Jeziorski和R. Moszynski,int。 J. Quantum Chem。 48,161(1993)]。新方法的工作表达仅采用耦合的集群运营商T和辅助操作员S,该辅助操作员S表示为T和T-Dagger方面的有限换向器扩展。在本文采用的近似下,集群扩展仅限于单一,双重和线性三重激励。碱土原子的单线单态和三重态三重态转变的计算偶极转换概率与可用的理论和实验数据一致。与现有的耦合集群响应理论相反,即使群体运算符中的激发被截断,通过使用我们的方法获得的矩阵元件即使截断的激励,而且操作员S精确。如果操作员S的换向器系列被截断,则密封对称性略微破损。作为新方法的数值证据的一部分,我们报告了在耦合集群理论内尚未报道的激发三联状态之间的转变矩。根据相关 - 一致性原理构建的Slater-Type基集用于我们的计算。通过AIP发布发布。

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