HD17O频谱的研究。理论与实验

IF 1.4 4区 物理与天体物理 Q4 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
Leonid N. Sinitsa , Nikolai F. Zobov , Mikhail A. Rogov , Jonathan Tennyson , Oleg L. Polyansky
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引用次数: 0

摘要

报道了在托木斯克记录的5 480 ~ 6 400 cm−1区域的HD17O光谱。该地区共发现7个水同位素组,共4292条,其中H216O - 1019 - HD16O 536条,D2 - 16O 122条,H217O - 458 - HD17O 447条,H218O 151条,HD18O 181条。通过对经验能级的拟合,得到了HD16O的新势能面(PES)。该PES具有对角线Born-Oppenheimer校正(DBOC),用于计算HD17O频谱。采用Polyansky等人(MNRAS 466, 1363(2017))的方法构建HD17O的伪实验同位素外推能级。对测量频谱进行分配:68%的谱线可以使用以前发表的工作分配。其余的线是用伪实验能级程序分配的。我们将计算的伪实验能级值与HD17O现有的1285个实验能级和新确定的152个工作能级进行了比较。在两种情况下,低J水平(J=10以下)的标准偏差约为0.007 cm−1。伪实验和变分计算的能级也比较了新测量的HD17O谱线在10000 cm−1以上的能级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Study of HD17O spectrum. Theory and experiment

Study of HD17O spectrum. Theory and experiment
A spectrum of HD17O in the region between 5 480 and 6 400 cm1 recorded in Tomsk is reported. In this region 4292 lines are observed belonging to 7 water isotopologues: 536 lines – H216O 1019 – HD16O, 122 – D2 16O, 447 – H217O 458 – HD17O, 151 – H218O, 181 – HD18O. A new potential energy surface (PES) of HD16O is obtained by fitting to empirical energy levels. This PES, with a diagonal Born–Oppenheimer correction (DBOC), is used to compute the HD17O spectrum. Pseudo-experimental isotopologue-extrapolation energy levels of HD17O are constructed using the method of Polyansky et al (MNRAS 466, 1363 (2017)). Assignment of the measured spectrum is conducted: 68 % of the lines can be assigned using assignments from previously published work. The remaining lines are assigned using the pseudo-experimental energy levels procedure. We compare the calculated pseudo-experimental values of energy levels with both existing 1285 experimental levels of HD17O and the 152 newly determined in this work energy levels. The standard deviation of levels with low J (up to J=10) is about 0.007 cm1 in both cases. Energy levels from both pseudo-experimental and variationally calculated are also compared with newly measured HD17O lines above 10 000 cm1.
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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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