Institute for Molecular Science, 38 Nishigonaka, Myodaiji, Okazaki 444-8585, Japan.
J Chem Phys. 2011 Jul 28;135(4):044316. doi: 10.1063/1.3617233.
In this series of studies, we systematically apply the analytical energy gradients of the direct symmetry-adapted cluster-configuration interaction singles and doubles nonvariational method to calculate the equilibrium geometries and vibrational frequencies of excited and ionized states of molecules. The harmonic vibrational frequencies were calculated using the second derivatives numerically computed from the analytical first derivatives and the anharmonicity was evaluated from the three-dimensional potential energy surfaces around the local minima. In this paper, the method is applied to the low-lying valence singlet and triplet excited states of HAX-type molecules, HCF, HCCl, HSiF, HSiCl, HNO, HPO, and their deuterium isotopomers. The vibrational level emission spectra of HSiF and DSiF and absorption spectra of HSiCl and DSiCl were also simulated within the Franck-Condon approximation and agree well with the experimental spectra. The results show that the present method is useful and reliable for calculating these quantities and spectra. The change in geometry in the excited states was qualitatively interpreted in the light of the electrostatic force theory. The effect of perturbation selection with the localized molecular orbitals on the geometrical parameters and harmonic vibrational frequencies is also discussed.
在这一系列研究中,我们系统地应用直接对称自适应簇配置相互作用单和双非变分方法的分析能量梯度来计算分子激发态和离子态的平衡几何形状和振动频率。使用从解析一阶导数数值计算得到的二阶导数来计算简谐振动频率,并且从局部极小值周围的三维势能表面评估非谐性。本文将该方法应用于 HAX 型分子(HCF、HCCl、HSiF、HSiCl、HNO、HPO 及其氘代物)的低能价单重激发态和三重激发态。还在 Franck-Condon 近似下模拟了 HSiF 和 DSiF 的振动能级发射光谱以及 HSiCl 和 DSiCl 的吸收光谱,并与实验光谱吻合良好。结果表明,该方法可用于计算这些量和光谱,结果可靠。根据静电作用力理论定性解释了激发态中几何形状的变化。还讨论了用局域分子轨道进行微扰选择对几何参数和简谐振动频率的影响。