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首页> 外文期刊>The Journal of Chemical Physics >EVALUATION OF EXISTING POTENTIAL ENERGY SURFACES FOR CO2-AR - PRESSURE BROADENING AND HIGH-RESOLUTION SPECTROSCOPY OF VAN DER WAALS COMPLEXES
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EVALUATION OF EXISTING POTENTIAL ENERGY SURFACES FOR CO2-AR - PRESSURE BROADENING AND HIGH-RESOLUTION SPECTROSCOPY OF VAN DER WAALS COMPLEXES

机译:范德华络合物的CO2-Ar压扩束和高分辨率光谱的现有势能面评价。

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摘要

Nine different potential energy surfaces for CO2-Ar taken from the literature are tested for their ability to reproduce the spectra of the Ar-CO2 van der Waals complex and the pressure broadening of CO2 infrared lines by Ar. None of the potentials give a satisfactory account of all the experimental results. All the potentials are found to give significant discrepancies with at least some of the spectroscopic properties of the van der Waals complex. Coupled-states (CS) and infinite-order sudden (IOS) calculations of the pressure broadening cross sections are compared for a few of the potential energy surfaces. The IOS approximation is found to be seriously inaccurate for some potential surfaces, especially for high-j lines, so that CS calculations are essential when comparing with experimental line-shape data. CS calculations of line-broadening cross sections are therefore carried out on all nine different potential energy surfaces. For the pressure broadening coefficients, there are substantial uncertainties in the experimental results. Nevertheless, the only potential to give a satisfactory account of the pressure broadening is the electron gas potential of Preston and Pack, which is the least satisfactory of all for the spectra of the complex. It is concluded that a new potential that reconciles the different data sets is needed. (C) 1996 American Institute of Physics. [References: 31]
机译:测试了从文献中获取的9种不同的CO2-Ar势能面的复制能力,以再现Ar-CO2范德华配合物的光谱以及Ar对CO2红外线的压力展宽。没有一种潜力可以令人满意地说明所有实验结果。发现所有电位与范德华配合物的至少某些光谱性质存在明显差异。比较了一些势能面的耦合状态(CS)和无限次突然(IOS)计算的压力展宽截面。对于某些潜在表面,尤其是对于高j线,IOS近似严重不准确,因此与实验线形数据进行比较时,CS计算至关重要。因此,在所有九种不同的势能面上进行了线展宽截面的CS计算。对于压力展宽系数,实验结果存在很大的不确定性。然而,唯一能令人满意地说明压力增宽的电势是普雷斯顿和帕克的电子气电势,这对于配合物的光谱而言是最不令人满意的。结论是,需要一种调和不同数据集的新潜力。 (C)1996年美国物理研究所。 [参考:31]

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