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An efficient analytical approach for calculating line mixing in atmospheric remote sensing applications

机译:一种用于计算大气遥感应用中的线路混合的有效分析方法

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Collisional coupling between energy states in a molecule undergoing an optical transition can alter the line shape associated with the transition, an effect known as line mixing. Accounting for this effect in the analysis of remote sensing measurements of Earth's atmosphere by the Atmospheric Chemistry Experiment (ACE) yields reduced residuals, which leads to improved performance in the volume mixing ratio retrievals for some molecules. Analytical expressions are presented for the imaginary components of the polynomial ratios from the Humlicek algorithm, which provides approximate solutions to the complex probability function. These imaginary components are employed in the calculation of line mixing using the Rosenkranz first order approximation. Examples of line mixing in ACE measurements are presented, including a set of CH_4 lines that exhibit both line mixing and speed dependence. An efficient, analytical approach is proposed for calculating line shapes with a combination of line mixing and speed dependence. FORTRAN routines for calculating line mixing effects are provided as a supplement to the paper.
机译:经历光学跃迁的分子的能态之间的碰撞耦合可以改变与跃迁相关的线形,这种效应称为线混合。通过大气化学实验(ACE)在对地球大气进行遥感测量的分析中考虑到了这种影响,可以减少残留物,从而提高了某些分子的体积混合比检索的性能。给出了Humlicek算法中多项式比率的虚部的解析表达式,它为复概率函数提供了近似解。这些虚构分量用于使用Rosenkranz一阶逼近的线混合计算中。展示了ACE测量中的线混合示例,包括一组同时显示线混合和速度相关性的CH_4条线。提出了一种有效的分析方法,用于结合线混合和速度相关性来计算线形状。作为本文的补充,提供了用于计算线路混合效果的FORTRAN例程。

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