首页> 外文期刊>The Journal of Chemical Physics >LASER FLUORESCENCE EXCITATION SPECTROSCOPY OF BNE ELECTRONIC STATES CORRELATING WITH THE EXCITED VALENCE B(2S2P(2) D-2) ATOMIC ASYMPTOTE
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LASER FLUORESCENCE EXCITATION SPECTROSCOPY OF BNE ELECTRONIC STATES CORRELATING WITH THE EXCITED VALENCE B(2S2P(2) D-2) ATOMIC ASYMPTOTE

机译:与激发价B(2S2P(2)D-2)原子渐近线相关的BNE电子态的激光荧光激发光谱

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The laser fluorescence excitation spectrum of the BNe van der Waals complex, in the vicinity of the B atom 2s2p(2 2)D<--2s(2)2p P-2 transition at 208.9 nm, is reported. A total of six partially resolved molecular bands, as well as a broad, unstructured feature to the blue of these bands, have been observed. Three BNe electronic states, denoted as C-2 Delta, D-2 Pi, and E(2) Sigma(+), correlate with the B(2s2p(2 2)D)+Ne atomic asymptote, and the observed bands are assigned as (v',0) progressions of the C-2 Delta-X(2) Pi(1/2) and D-2 Pi-X(2) Pi(1/2) band systems. Rotational analysis of the C-X bands has been carried out, and spectroscopic constants characterizing the upper and lower states determined. The onset of the continuous excitation is assigned as the energy to reach the B(2s2p(2 2)D)+Ne atomic asymptote. Identification of this threshold has allowed the determination of dissociation energies of the X, C, and D states. The observation of banded features in this wavelength range contrasts sharply with the continuous free<--bound excitation in the B-2 Sigma(+)-X(2) Pi(1/2) transition, because of the purely repulsive B(2s(2)3s S-2)-Ne interaction [X. Yang, E. Hwang, P.J. Dagdigian, M. Yang, and M.H. Alexander, J. Chem. Phys. 103, 2779 (1995)]. The differences in the binding energies of the BNe electronic states are discussed in terms of their expected electronic structures. (C) 1996 American Institute of Physics. [References: 28]
机译:报告了在208.9 nm处B原子2s2p(2 2)D <-2s(2)2p P-2跃迁附近的BNe van der Waals络合物的激光荧光激发光谱。已经观察到总共六个部分分解的分子带,以及这些带的蓝色的宽泛的非结构化特征。三种BNe电子状态,分别表示为C-2 Delta,D-2 Pi和E(2)Sigma(+),与B(2s2p(2 2)D)+ Ne原子渐近线相关,并指定了观察带C-2 Delta-X(2)Pi(1/2)和D-2 Pi-X(2)Pi(1/2)波段系统的(v',0)级数。已经对C-X波段进行了旋转分析,并确定了表征上下状态的光谱常数。连续激发的开始被指定为达到B(2s2p(2 2)D)+ Ne原子渐近线的能量。识别该阈值使得可以确定X,C和D状态的解离能。在此波长范围内对带状特征的观察与B-2 Sigma(+)-X(2)Pi(1/2)跃迁中的连续自由束缚激发形成鲜明对比,这是由于纯排斥性的B(2s (2)3s S-2)-Ne相互作用[X。 Yang E. Hwang,P.J。Dagdigian,M。Yang和M.H.亚历山大·J·化学物理103,2779(1995)]。根据预期的电子结构,讨论了BNe电子态的结合能的差异。 (C)1996年美国物理研究所。 [参考:28]

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