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An approach to retrieve information on the carbonyl fluoride (COF2) vertical distributions above Jungfraujoch by FTIR multi-spectrum multi-window fitting

机译:利用FTIR多光谱多窗口拟合检索少女峰上方碳酰氟(COF2)垂直分布信息的方法

摘要

We present an original multi-spectrum fitting procedure to retrieve volume mixing ratio (VMR) profiles of carbonyl fluoride (COF2) from ground-based high resolution Fourier transform infrared (FTIR) solar spectra. The multi-spectrum approach consists of simultaneously combining, during the retrievals, all spectra recorded consecutively during the same day and with the same resolution. Solar observations analyzed in this study with the SFIT-2 v3.91 fitting algorithm correspond to more than 2900 spectra recorded between January 2000 and December 2007 at high zenith angles, with a Fourier Transform Spectrometer operated at the high-altitude International Scientific Station of the Jungfraujoch (ISSJ, 46.5° N latitude, 8.0° E longitude, 3580 m altitude), Switzerland. The goal of the retrieval strategy described here is to provide information about the vertical distribution of carbonyl fluoride. The microwindows used are located in the ν4 or in the ν4 COF2 infrared (IR) absorption bands. Averaging kernel and eigenvector analysis indicates that our FTIR retrieval is sensitive to COF2 inversion between 17 and 30 km, with the major contribution to the retrieved information always coming from the measurement. Moreover, there was no significant bias between COF2 partial columns, total columns or VMR profiles retrieved from the two bands. For each wavenumber region, a complete error budget including all identified sources has been carefully established. In addition, comparisons of FTIR COF2 17–30 km partial columns with KASIMA and SLIMCAT 3-D CTMs are also presented. If we do not notice any significant bias between FTIR and SLIMCAT time series, KASIMA COF2 17–30 km partial columns are lower of around 25%, probably due to incorrect lower boundary conditions. For each times series, linear trend estimation for the 2000–2007 time period as well as a seasonal variation study are also performed and critically discussed. For FTIR and KASIMA time series, very low COF2 growth rates (0.4±0.2%/year and 0.3±0.2%/year, respectively) have been derived. However, the SLIMCAT data set gives a slight negative trend (−0.5±0.2%/year), probably ascribable to discontinuities in the meteorological data used by this model. We further demonstrate that all time series are able to reproduce the COF2 seasonal cycle, which main seasonal characteristics deduced from each data set agree quite well.
机译:我们提出了一种原始的多光谱拟合程序,可从地面高分辨率高分辨率傅立叶变换红外(FTIR)太阳光谱中检索碳氟化合物(COF2)的体积混合比(VMR)曲线。多光谱方法包括在检索期间同时合并同一天以相同分辨率连续记录的所有光谱。在这项研究中,使用SFIT-2 v3.91拟合算法分析的太阳观测结果对应于2000年1月至2007年12月之间在高天顶角记录的2900多个光谱,该光谱仪在美国高海拔国际科学站工作。瑞士少女峰(ISSJ,北纬46.5°,东经8.0°,海拔3580 m)。此处描述的检索策略的目标是提供有关碳酰氟垂直分布的信息。使用的微窗口位于ν4或ν4COF2红外(IR)吸收带中。内核和特征向量的平均分析表明,我们的FTIR检索对17至30 km之间的COF2反演很敏感,而对检索到的信息的主要贡献始终来自测量。而且,从这两个谱带检索到的COF2部分色谱柱,总色谱柱或VMR谱图之间没有显着偏差。对于每个波数区域,已经仔细建立了包括所有已识别源的完整误差预算。此外,还介绍了FTIR COF2 17–30 km局部色谱柱与KASIMA和SLIMCAT 3-D CTM的比较。如果我们没有注意到FTIR和SLIMCAT时间序列之间有任何明显的偏差,则KASIMA COF2 17–30 km局部色谱柱会降低约25%,这可能是由于不正确的下边界条件造成的。对于每个时间序列,还对2000-2007年时间段的线性趋势估计以及季节性变化进行了研究并进行了严格的讨论。对于FTIR和KASIMA时间序列,已经得出了非常低的COF2增长率(分别为0.4±0.2%/年和0.3±0.2%/年)。但是,SLIMCAT数据集显示出轻微的负趋势(-0.5±0.2%/年),可能是由于该模型使用的气象数据不连续。我们进一步证明,所有时间序列都能够再现COF2季节周期,从每个数据集推导出的主要季节特征都非常吻合。

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