Schröder Benjamin, Sebald Peter
Institut für Physikalische Chemie, Georg August Universität Göttingen, Göttingen D-37077, Germany.
J Chem Phys. 2016 Jan 28;144(4):044307. doi: 10.1063/1.4940780.
An accurate local (near-equilibrium) potential energy surface (PES) is reported for the C3 molecule in its electronic ground state (X̃(1)Σg (+)). Special care has been taken in the convergence of the potential relative to high-order correlation effects, core-valence correlation, basis set size, and scalar relativity. Based on the aforementioned PES, several rovibrational states of all (12)C and (13)C substituted isotopologues have been investigated, and spectroscopic parameters based on term energies up to J = 30 have been calculated. Available experimental vibrational term energies are reproduced to better than 1 cm(-1) and rotational constants show relative errors of not more than 0.01%. The equilibrium bond length has been determined in a mixed experimental/theoretical approach to be 1.294 07(10) Å in excellent agreement with the ab initio composite value of 1.293 97 Å. Theoretical band intensities based on a newly developed electric dipole moment function also suggest that the infrared active (1, 1(1), 0)←(0, 0(0), 0) combination band might be observable by high-resolution spectroscopy.
报道了处于电子基态(X̃(1)Σg(+))的C3分子精确的局域(近平衡)势能面(PES)。在势能相对于高阶相关效应、芯价相关、基组大小和标量相对论性的收敛方面已格外小心。基于上述势能面,研究了所有(12)C和(13)C取代的同位素分子的几个振转态,并计算了基于高达J = 30的项能量的光谱参数。现有的实验振动项能量再现精度优于1 cm(-1),转动常数的相对误差不超过0.01%。采用实验/理论混合方法确定的平衡键长为1.294 07(10) Å,与1.293 97 Å的从头算复合值高度吻合。基于新开发的电偶极矩函数的理论带强度还表明,红外活性(1, 1(1), 0)←(0, 0(0), 0)组合带可能通过高分辨率光谱观测到。