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Accurate potential energy curve for B _2. Ab initio elucidation of the experimentally elusive ground state rotation-vibration spectrum

机译:B _2的准确势能曲线。从头开始阐明实验上难以捉摸的基态旋转振动频谱

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The electron-deficient diatomic boron molecule has long puzzled scientists. As yet, the complete set of bound vibrational energy levels is far from being known, experimentally as well as theoretically. In the present ab initio study, all rotational-vibrational levels of the X ~3Σ _g - ground state are determined up to the dissociation limit with near-spectroscopic accuracy (<10 cm ~(-1)). Two complete sets of bound vibrational levels for the ~(11)B _2 and ~(11)B- ~(10)B isotopomers, containing 38 and 37 levels, respectively, are reported. The results are based on a highly accurate potential energy curve, which also includes relativistic effects. The calculated set of all vibrational levels of the ~(11)B _2 isotopomer is compared with the few results derived from experiment [Bredohl, H., Dubois, I., and Nzohabonayo, P.J. Mol. Spectrosc. 1982, 93, 281; Bredohl, H., Dubois, I., and Melen, F.J. Mol. Spectrosc. 1987, 121, 128]. Theory agrees with experiment within 4.5 cm -1 on average for the four vibrational level spacings that are so far known empirically. In addition, the present theoretical analysis suggests, however, that the transitions from higher electronic states to the ground state vibrational levels v = 12-15 deserve to be reanalyzed. Whereas previous experimental investigators considered them to originate from the v′ = 0 vibrational level of the upper state (2) ~3Σ _u -, the present results make it likely that these transitions originate from a different upper state, namely the v′ = 16 or the v′ = 17 vibrational level of the (1) ~3Σ _u - state. The ground state dissociation energy D _0 is predicted to be 23164 cm ~(-1).
机译:缺乏电子的双原子硼分子长期困扰着科学家。到目前为止,无论是从实验还是从理论上来说,完整的束缚振动能级都是未知的。在目前的从头开始的研究中,所有X〜3Σ_g-基态的旋转振动能级都以接近光谱的精度(<10 cm〜(-1))达到解离极限。报道了两组完整的〜(11)B _2和〜(11)B-〜(10)B异构体的结合振动能级,分别包含38和37个能级。结果基于高度精确的势能曲线,其中还包括相对论效应。将〜(11)B _2同位素的所有振动能级的计算结果与实验[Bredohl,H.,Dubois,I.和Nzohabonayo,P.J. Mol。光谱。 1982,93,281; Bredohl,H.,Dubois,I.和Melen,F.J. Mol。光谱。 1987,121,128]。理论上与迄今经验上已知的四个振动水平间隔的平均值在4.5 cm -1以内的实验一致。此外,目前的理论分析表明,从高电子态到基态振动能级v = 12-15的过渡值得重新分析。先前的实验研究者认为它们起源于上部状态(2)〜3Σ_u-的v'= 0振动能级,而目前的结果使得这些转变很可能源自不同的上部状态,即v'= 16或(1)〜3Σ_u-状态的v'= 17振动水平。预测基态解离能D _0为23164 cm〜(-1)。

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