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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Comparison of trajectory models in calculations of N _2-broadened half-widths and N _2-induced line shifts for the rotational band of H _2 ~(16)O and comparison with measurements
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Comparison of trajectory models in calculations of N _2-broadened half-widths and N _2-induced line shifts for the rotational band of H _2 ~(16)O and comparison with measurements

机译:H _2〜(16)O旋转带的N _2展宽半宽计算和N _2引起的线位移的轨迹模型比较及与测量的比较

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摘要

In this work, Complex Robert-Bonamy calculations of half-widths and line shifts were done for N _2-broadening of water for 1639 transitions in the rotational band using two models for the trajectories. The first is a model correct to second order in time, the Robert-Bonamy parabolic approximation. The second is the solution of Hamilton's equations. Both models use the isotropic part of the atom-atom potential to determine the trajectories. The present calculations used an intermolecular potential expanded to 20th order to assure the convergence of the half-widths and line shifts. The aim of the study is to assess if the difference in the half-widths and line shifts determined from the two trajectory models is greater than the accuracy requirements of the spectroscopic and remote sensing communities. The results of the calculations are compared with measurements of the half-widths and line shifts. It is shown that the effects of the trajectory model greatly exceed the needs of current remote sensing measurements and that line shape parameters calculated using trajectories determined by solving Hamilton's equations agree better with measurement.
机译:在这项工作中,使用两个轨迹模型对旋转带中1639个过渡点的N _2展宽水进行了半宽度和线位移的复杂Robert-Bonamy计算。第一个模型是时间上正确的模型,即Robert-Bonamy抛物线近似。第二个是汉密尔顿方程的解。两种模型都使用原子-原子势能的各向同性部分来确定轨迹。目前的计算使用了分子间电势扩展到20阶来确保半宽度和线位移的收敛。该研究的目的是评估从两个轨迹模型确定的半角宽度和线偏移的差异是否大于光谱和遥感社区的精度要求。将计算结果与半角宽度和线偏移的测量结果进行比较。结果表明,轨迹模型的效果大大超过了当前遥感测量的需求,并且使用通过求解汉密尔顿方程确定的轨迹计算出的线形参数与测量结果更好地吻合。

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