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首页> 外文期刊>The Journal of Chemical Physics >Determination of the binding energies of the np Rydberg states of H_2, HD, and D_2 from high-resolution spectroscopic data by multichannel quantum-defect theory
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Determination of the binding energies of the np Rydberg states of H_2, HD, and D_2 from high-resolution spectroscopic data by multichannel quantum-defect theory

机译:利用多通道量子缺陷理论确定高分辨率光谱数据中H_2,HD和D_2的np Rydberg态的结合能

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Multichannel quantum-defect theory (MQDT) is used to calculate the electron binding energies of np Rydberg states of H2, HD, and D2 around n = 60 at an accuracy of better than 0.5MHz. The theory includes the effects of rovibronic channel interactions and the hyperfine structure, and has been extended to the calculation of the asymmetric hyperfine structure of Rydberg states of a heteronuclear diatomic molecule (HD). Starting values for the eigenquantum-defect parameters of MQDT were extracted from ab initio potential-energy functions for the low-lying p Rydberg states of molecular hydrogen and subsequently refined in a global weighted fit to available experimental data on the singlet and triplet Rydberg states of H_2 and D_2. The electron binding energies of high-np Rydberg states derived in this work represent important quantities for future determinations of the adiabatic ionization energies of H_2, HD, and D_2 at sub-MHz accuracy.
机译:多通道量子缺陷理论(MQDT)用于计算n = 60附近H2,HD和D2的np Rydberg态的电子结合能,其准确度优于0.5MHz。该理论包括旋转电子通道相互作用和超精细结构的影响,并已扩展到异核双原子分子(HD)Rydberg态的不对称超精细结构的计算。 MQDT的本征量子缺陷参数的初始值是从分子氢的低p p Rydberg态的从头算势能函数中提取的,然后以全局加权拟合方式精炼为可用的单重态和三重态Rydberg态的实验数据H_2和D_2。这项工作中得出的高np Rydberg态的电子结合能代表了重要的数量,对于将来确定亚MHz精度的H_2,HD和D_2的绝热电离能是重要的。

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