Wang Zhongquan, Gong Mingyan, Zhang Yu, Feng Eryin, Cui Zhifeng
Department of Physics, Anhui Normal University, Wuhu 241000, People's Republic of China.
J Chem Phys. 2008 Jan 28;128(4):044309. doi: 10.1063/1.2823029.
The first two-dimensional potential energy surface for the Xe-CO van der Waals interaction is calculated by the single and double excitation coupled-cluster theory with noniterative treatment of triple excitations. Mixed basis sets, aug-cc-pVQZ for the C and O atoms, and aug-cc-pVQZ-PP for the Xe atom, with an additional (3s3p2d2f1g) set of midbond functions, are used. Our potential energy surface has a single, nearly T-shaped minimum of -131.87 cm(-1) at R(e)=7.80a(0) and theta(e)=102.5 degrees. Based on the potential, the bound state energies are calculated for seven isotopomers of the Xe-(12)C(16)O complex, seven isotopomers of the Xe-(13)C(16)O complex, and three isotopomers of the Xe-(13)C(18)O complex. Compared with available experimental data, the predicted transition frequencies and spectroscopic constants are in good agreement with the experimental results.
通过对三激发进行非迭代处理的单双激发耦合簇理论,计算了Xe - CO范德华相互作用的首个二维势能面。使用了混合基组,C和O原子采用aug - cc - pVQZ,Xe原子采用aug - cc - pVQZ - PP,并额外添加了一组(3s3p2d2f1g)的键中函数。我们的势能面在R(e)=7.80a(0)和theta(e)=102.5度处有一个单一的、近似T形的最小值,为-131.87 cm(-1)。基于该势能,计算了Xe-(12)C(16)O复合物的七种同位素异构体、Xe-(13)C(16)O复合物的七种同位素异构体以及Xe-(13)C(18)O复合物的三种同位素异构体的束缚态能量。与现有的实验数据相比,预测的跃迁频率和光谱常数与实验结果吻合良好。