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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Isotopologue consistency of semi-empirically computed infrared line lists and further improvement for rare isotopologues: CO2 and SO2 case studies
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Isotopologue consistency of semi-empirically computed infrared line lists and further improvement for rare isotopologues: CO2 and SO2 case studies

机译:同位素的半经验计算的红外线列表和罕见同位素的进一步改善:CO2和SO2案例研究

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The semi-empirical molecular rovibrational IR line lists, such as ExoMol, TheoReTs, and Ames, combine the experimental accuracy and theoretical power to reach better than 0.1 cm(-1) accuracy for line positions and better than 80-90% agreement for line intensities. The quality of these existing semi-empirical IR lists allows further improvements of intensity and line positions for those unobserved minor isotopologues. This paper presents our new BTRHE (Best Theory + Reliable High-resolution Experiment) strategy implementation. For line intensity, the isotopologue consistency and the patterns of mass dependence in the Ames-296 K SO2 and CO2 IR lists are quantitatively presented along the mass-inverse coordinates. The consistency and patterns are better than those in existing experimental data. The methodology proposed here can be used to identify inconsistencies, outliers, and mistakes in intensities, and help improve Effective Dipole Model (EDM) and molecular IR databases. We call for an experimental study on the 50006 and 60007 bands of CO2 628. For line position predictions, a simple approach combining the variational IR line lists with Effective Hamiltonian (EH) model may refine the effective rotational constants A(0)/B-0/C-0 and quartic centrifugal distortion constants of minor isotopologues. The prediction accuracy may be improved by two orders of magnitude, i.e. reaching 0-5 MHz prediction accuracy in the range of J < 20-30, K-a < 10-20, and 0.01-0.02MHz accuracy for A(0)/B-0/C-o. Several important factors have been systematically investigated and discussed, e.g. convergence, uncertainties, higher order terms, fixing EH parameters, mass coordinates, etc. A microwave (MW) line set consisting of 644,636 strong transitions (at 296K) for all 30 isotopologues and corresponding refined EH(Ames) parameters are reported in the supplementary material. This approach may be easily extended to rovibrational bands, hot bands, and other molecular systems. (C) 2019 Published by Elsevier Ltd.
机译:半经验分子roviblation红外线列表,例如eNOOMOL,TERERET和AME,将实验准确性和理论功率结合在线位置的0.1cm(-1)精度达到70-90%,优于80-90%的线路强度。这些现有的半实验室IR列表的质量允许进一步改善那些未接受的轻微同因素的强度和线位置。本文提出了我们的新BTRHE(最佳理论+可靠的高分辨率实验)战略实施。对于线强度,同位素一致性和AME-296K SO2和CO2 IR列表中的质量依赖性的模式是沿着质量逆坐标的定量呈现。一致性和模式优于现有实验数据中的一致性和模式。这里提出的方法可用于识别强度的不一致,异常值和错误,并有助于改善有效的偶极模型(EDM)和分子IR数据库。我们呼吁对CO2 628的50006和60007频段进行实验研究。对于线位置预测,将变形红外线列表与有效的Hamiltonian(EH)模型组合的简单方法可以优化有效的旋转常数A(0)/ B- 0 / C-0和次同位素的四分之一离心畸变常数。预测精度可以通过两个数量级,即达到0-5MHz的预测精度,在J <20-30,KA <10-20和0.01-0.02MHz精度的范围内(0)/ B- 0 / co。例如,已经系统地调查并讨论了几个重要因素,例如,讨论。收敛,不确定性,高阶项,固定eh参数,质量坐标等。在补充中报告了由所有30同类和相应的改良EH(AME)参数的644,636强过渡(在296K)中组成的微波(MW)系列。材料。这种方法可以很容易地扩展到振动带,热带和其他分子系统。 (c)2019年由elestvier有限公司出版

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