Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, USA.
J Chem Phys. 2012 Mar 14;136(10):104309. doi: 10.1063/1.3692800.
A very accurate ground-state potential energy curve (PEC) of the He(2)(+) molecule is calculated with 1200 explicitly correlated Gaussian functions with shifted centers in the range between 0.9 and 100 a(0). The calculations include the adiabatic corrections determined for the (3)He(4)He(+), (3)He(2)(+), and (4)He(2)(+) isotopologues. The absolute accuracy of the PEC is better than 0.05 cm(-1) and that of the adiabatic corrections is around 0.01 cm(-1). The depths of the PECs augmented with the adiabatic corrections for the three isotopologues are: 19 956.708 cm(-1) for (4)He(2)(+), 19 957.054 cm(-1) for (3)He(4)He(+), and 19 957.401 cm(-1) for (3)He(2)(+). The rovibrational energies are also determined. For (3)He(4)He(+) the computed rovibrational transitions corresponding to the ν = 1-0 band differ from the experiment by less than 0.005 cm(-1). For the rovibrational transitions corresponding to the ν = 23-22 band the difference is around 0.012 cm(-1). Presently, this represents the best agreement between theory and experiment for He(2)(+).
用 1200 个带有偏移中心的显式相关高斯函数计算了 He(2)(+)分子的非常精确的基态势能曲线(PEC),中心位于 0.9 到 100 a(0)之间。这些计算包括为 (3)He(4)He(+)、(3)He(2)(+)和 (4)He(2)(+)同位素确定的绝热修正。PEC 的绝对精度优于 0.05 cm(-1),绝热修正的精度约为 0.01 cm(-1)。三个同位素的 PEC 加上绝热修正的深度分别为:(4)He(2)(+)为 19 956.708 cm(-1),(3)He(4)He(+)为 19 957.054 cm(-1),(3)He(2)(+)为 19 957.401 cm(-1)。还确定了转动振动能。对于 (3)He(4)He(+),计算出的 ν = 1-0 带对应的转动振动跃迁与实验值的差异小于 0.005 cm(-1)。对于 ν = 23-22 带对应的转动振动跃迁,差异约为 0.012 cm(-1)。目前,这代表了 He(2)(+)理论与实验之间的最佳一致性。