Neugebauer Johannes, Hess Bernd A
Lehrstuhl für Theoretische Chemie, Universität Erlangen-Nurnberg, Egerlandstrasse 3, D-91058 Erlangen, Germany.
J Chem Phys. 2004 Jun 22;120(24):11564-77. doi: 10.1063/1.1697371.
The use of time-dependent density functional calculations for the optimization of excited-state structures and the subsequent calculation of resonance Raman intensities within the transform-theory framework is compared to calculations of Hartree-Fock/configuration interaction singles-type (CIS). The transform theory of resonance Raman scattering is based on Kramers-Kronig relations between polarizability tensor components and the optical absorption. Stationary points for the two lowest excited singlet states of uracil are optimized and characterized by means of numerical differentiation of analytical excited-state gradients. It is shown that the effect of electron correlation leads to substantial modifications of the relative intensities. Calculations of vibrational frequencies for ground and excited states are carried out, which show that the neglect of Duschinsky mixing and the assumption of equal wave numbers for ground and excited state are not in all cases good approximations. We also compare the transform-theory resonance Raman intensities with those obtained within a simple approximation from excited-state gradients at the ground-state equilibrium position, and find that they are in qualitative agreement in the case of CIS, but show some important differences in calculations based on density functional theory. Since the results from CIS calculations are in better agreement with experiment, we also present approximate resonance Raman spectra obtained using excited-state gradients from multireference perturbation theory calculations, which confirm the CIS gradients.
将基于变换理论框架使用含时密度泛函计算来优化激发态结构并随后计算共振拉曼强度,与Hartree-Fock/单激发组态相互作用(CIS)类型的计算进行了比较。共振拉曼散射的变换理论基于极化率张量分量与光吸收之间的克莱默斯-克勒尼希关系。通过对解析激发态梯度进行数值微分,对尿嘧啶的两个最低激发单重态的驻点进行了优化和表征。结果表明,电子关联效应导致相对强度发生显著变化。对基态和激发态的振动频率进行了计算,结果表明,忽略杜什金斯基混合以及假设基态和激发态具有相等的波数,并非在所有情况下都是很好的近似。我们还将变换理论共振拉曼强度与在基态平衡位置从激发态梯度通过简单近似得到的强度进行了比较,发现在CIS情况下它们在定性上是一致的,但在基于密度泛函理论的计算中存在一些重要差异。由于CIS计算结果与实验结果更吻合,我们还给出了使用多参考微扰理论计算得到的激发态梯度获得的近似共振拉曼光谱,这些光谱证实了CIS梯度。