Dynamics of the H2 levels lying between the third and fourth dissociation thresholds (132 500 – 139 000 cm− 1)

IF 1.4 4区 物理与天体物理 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL Journal of Molecular Spectroscopy Pub Date : 2023-05-01 DOI:10.1016/j.jms.2023.111796
M. Glass-Maujean , H. Schmoranzer
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Abstract

The absorption spectrum of H2 at room temperature, was recorded at high resolution at the BESSY II synchrotron radiation storage ring in the 132 500 – 139 000 cm−1 energy range, allowing the study of the dynamics of the excited levels (n1Σu+ and n1Πu±) located between the H(n = 3) + H(n = 1) and H(n = 4) + H(n = 1) thresholds. Ionization anddissociation were found to compete for levels with n ≤ 8. In most cases, for the levels with n > 8, ionization is the only decay channel. The relative importance of the direct ionization, direct dissociation, autoionization and predissociation processes was evaluated for the whole energy range. From the different detected channels, and from the comparison with theoretical approaches, the main continua responsible for the predissociations were assigned to the V and to the B"B¯ states and the H(3p)/H(n = 3) ratios of the dissociation fragments from the 4pπ and 5pπ 1Πu- levels were measured. Molecular fluorescence was observed for few 1Πu- levels and the importance of its contribution is discussed.

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H2水平在第三和第四个解离阈值(132 500 - 139 000 cm−1)之间的动态变化
在BESSY II同步辐射存储环上以高分辨率记录了室温下H2在132 500 ~ 139 000 cm−1能量范围内的吸收光谱,从而研究了位于H(n = 3) + H(n = 1)和H(n = 4) + H(n = 1)阈值之间的激发能级(npσ 1Σu+和npπ 1Πu±)的动力学。当n≤8时,发现电离和解离相互竞争。在大多数情况下,对于n >电离是唯一的衰变通道。在整个能量范围内评价了直接电离、直接解离、自电离和预解离过程的相对重要性。根据不同的检测通道,并通过与理论方法的比较,将负责预解离的主要连续体分配给V和B”B¯状态,并测量了4ppπ和5ppπ 1Πu-水平的解离片段的H(3p)/H(n = 3)比。在一些1Πu-水平上观察到分子荧光,并讨论了其贡献的重要性。
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来源期刊
CiteScore
2.70
自引率
21.40%
发文量
94
审稿时长
29 days
期刊介绍: The Journal of Molecular Spectroscopy presents experimental and theoretical articles on all subjects relevant to molecular spectroscopy and its modern applications. An international medium for the publication of some of the most significant research in the field, the Journal of Molecular Spectroscopy is an invaluable resource for astrophysicists, chemists, physicists, engineers, and others involved in molecular spectroscopy research and practice.
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