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Benchmarking the Performance of Exchange-Correlation Functionals for Predicting Two-Photon Absorption Strengths

机译:基于汇编功能来预测二光子吸收强度的性能

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The present work investigates the performance of exchange-correlation functionals in the prediction of two-photon absorption (2PA) strengths. For this purpose, we considered six common functionals used for studying 2PA processes and tested these on six organoboron chelates. The set consisted of two semilocal (PBE and BLYP), two hybrid (B3LYP and PBEO), and two range-separated (LC-BLYP and CAM-B3LYP) functionals. The RI-CC2 method was chosen as a reference level and was found to give results consistent with the experimental data that are available for three of the molecules considered. Of the six exchange-correlation functionals studied, only the range-separated functionals predict an ordering of the 2PA strengths that is consistent with experimental and RI-CC2 results. Even though the range-separated functionals predict correct relative trends, the absolute values for the 2PA strengths are underestimated by a factor of 2-6 for the molecules considered. An in-depth analysis, on the basis of the derived generalized few-state model expression for the 2PA strength for a coupled-cluster wave function, reveals that the problem with these functionals can be linked to underestimated excited-state dipole moments and, to a lesser extent, overestimated excitation energies. The semilocal and hybrid functionals exhibit less predictable errors and a variation in the 2PA strengths in disagreement with the reference results. The semilocal and hybrid functionals show smaller average errors than the range-separated functionals, but our analysis reveals that this is due to fortuitous error cancellation between excitation energies and the transition dipole moments. Our results constitute a warning against using currently available exchange-correlation functionals in the prediction of 2PA strengths and highlight the need for functionals that correctly describe the electron density of excited electronic states.
机译:本作者研究了交换 - 相关功能在预测两光子吸收(2Pa)强度中的性能。为此目的,我们考虑了用于研究2PA过程的六种常用功能,并在六个有机咔啉螯合物上测试这些功能。该组由两个半核(PBE和BLYP),两个杂合(B3LYP和PBEO)和两个分离的(LC-BLYP和CAM-B3LYP)功能组成。选择RI-CC2方法作为参考水平,发现结果与可用于三种分子的实验数据一致。在研究的六个交换功能中,只有范围分离的功能预测了与实验和RI-CC2结果一致的2PA强度的排序。即使距离分离的功能预测正确的相对趋势,2PA强度的绝对值也被考虑的分子为2-6的倍数。一个深入的分析,基于耦合簇波函数的2PA强度的推导的广义少量模型表达,揭示了这些功能的问题可以与低估的兴奋状态偶极偶联的问题联系起来程度较小,高估激励能量。半焦和杂交功能表现出更少的可预测误差和2PA强度的变化与参考结果不同。半核和混合功能显示比范围分离的功能更小的平均误差,但我们的分析表明,这是由于激发能量和过渡偶极矩之间的偶然错误取消。我们的结果构成了在预测2PA强度的预测中使用当前可用的交换相关功能的警告,并突出了正确描述激发电子状态的电子密度的功能的需求。

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