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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Multi-resolution error analysis of predicted absorption coefficients. Method and application to the infrared spectrum of methane at high temperature
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Multi-resolution error analysis of predicted absorption coefficients. Method and application to the infrared spectrum of methane at high temperature

机译:预测吸收系数的多分辨率误差分析。高温甲烷红外光谱的方法及应用

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摘要

A general method for the estimation of the confidence interval of molecular absorption coefficients is presented. Statistical numerical experiments are implemented to quantify the propagation of errors from line parameters to absorption coefficients as a function of the resolution. The method uses line parameter predictions (position and intensity) with estimated uncertainties derived from global polyad models. This work is especially intended to provide expert information for applications requiring theoretical predictions for which the present state of the art of line by line high-resolution modeling is not accurate enough to meet the desired precision. As an illustration, it is applied to predict the absorption coefficient of methane at high temperature involving simultaneously well known lower energy levels (cold bands) and higher energy levels with much lower precisions (hot bands). Potential extensions are discussed in the context of atmospheric remote sensing of astrophysical objects.
机译:提出了一种估计分子吸收系数置信区间的通用方法。进行统计数值实验以量化从线参数到吸收系数的误差随分辨率的变化。该方法使用线参数预测(位置和强度),并从全局polyad模型得出估计的不确定性。这项工作尤其旨在为需要理论预测的应用提供专家信息,而对于这些理论预测,当前的逐行高分辨率建模技术不够准确,无法满足所需的精度。作为说明,它可用于预测高温下甲烷的吸收系数,同时涉及众所周知的较低能级(冷带)和较高能级,而精度要低得多(热带)。在天体物理物体的大气遥感背景下讨论了潜在的扩展。

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