Simple semi-classical model of pressure-broadened infrared/microwave linewidths in the temperature range 200–3000 K

J. Buldyreva, S. Yurchenko, J. Tennyson
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Abstract

There is a need for line broadening parameters for molecules found in exoplanetary atmospheres for a variety of broadeners and a range of temperatures. The use of an easily handled semi-classical theoretical expression is suggested for the calculation of pressure-broadened linewidths for (vib)rotational transitions over a large temperature range (200–3000 K) starting from a minimal set of input parameters: kinetic molecular properties and the character of the leading term in the intermolecular interaction potential. Applications to NO and OH colliding with rare-gas atoms and non-polar molecules demonstrate good consistency with available measurements over the full indicated temperature range. The procedure therefore can be expected to provide realistic estimates for line broadening of ‘exotic’ molecules and molecular ions present in hot planetary atmospheres.
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200-3000 K温度范围内压力加宽红外/微波线宽的简单半经典模型
对于在系外行星大气中发现的分子,有必要为各种增宽剂和温度范围确定谱线增宽参数。建议使用易于处理的半经典理论表达式来计算在大温度范围(200-3000 K)内(vib)旋转转变的压力加宽线宽,从最小的输入参数集开始:分子动力学性质和分子间相互作用势的主导项的特征。对NO和OH与稀有气体原子和非极性分子碰撞的应用表明,在整个指示温度范围内,与可用的测量结果具有良好的一致性。因此,该程序有望为存在于热行星大气中的“外来”分子和分子离子的谱线展宽提供现实的估计。
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