Laboratoire de Spectroscopie Atomique, Moléculaire et Applications - LSAMA, Université de Tunis, Tunis, Tunisia.
J Chem Phys. 2013 Nov 7;139(17):174313. doi: 10.1063/1.4827520.
Accurate ab initio computations of structural and spectroscopic parameters for the HPS/HSP molecules and corresponding cations and anions have been performed. For the electronic structure computations, standard and explicitly correlated coupled cluster techniques in conjunction with large basis sets have been adopted. In particular, we present equilibrium geometries, rotational constants, harmonic vibrational frequencies, adiabatic ionization energies, electron affinities, and, for the neutral species, singlet-triplet relative energies. Besides, the full-dimensional potential energy surfaces (PESs) for HPS(x) and HSP(x) (x = -1,0,1) systems have been generated at the standard coupled cluster level with a basis set of augmented quintuple-zeta quality. By applying perturbation theory to the calculated PESs, an extended set of spectroscopic constants, including τ, first-order centrifugal distortion and anharmonic vibrational constants has been obtained. In addition, the potentials have been used in a variational approach to deduce the whole pattern of vibrational levels up to 4000 cm(-1) above the minima of the corresponding PESs.
已经对 HPS/HSP 分子及其相应的阳离子和阴离子的结构和光谱参数进行了精确的从头算计算。对于电子结构计算,采用了标准和显式相关耦合簇技术以及大型基组。特别是,我们给出了平衡几何形状、转动常数、调和振动频率、绝热电离能、电子亲和能,以及对于中性物种,单重态-三重态相对能量。此外,还在标准耦合簇水平上,使用具有augmented quintuple-zeta 质量基组,生成了 HPS(x)和 HSP(x)(x = -1,0,1)系统的全维势能面(PES)。通过将微扰理论应用于计算出的 PES,得到了一组扩展的光谱常数,包括τ、一阶离心畸变和非谐振动常数。此外,还使用了势能在变分方法中,推导出了对应 PES 上方 4000 cm(-1)以内的整个振动能级模式。