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A method to derive global O/N-2 ratios from SSUSI/DMSP based on Re-AURIC algorithm

机译:基于RE-Auric算法的SSUSI / DMSP从SSUSI / DMSP获得全局O / N-2比的方法

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摘要

Global thermospheric O/N-2 column density ratios are obtained using the SSUSI/DMSP far-ultraviolet (FUV) dayglow data and the Re-AURIC simulation results. The Re-AURIC is derived from the AURIC algorithm after some old modules are updated. The calculation processes of O/N-2 ratio are then established using the simulations of Re-AURIC to calibrate the ratios of the 01135.6 nm emission and N-2 LBHS emission from SSUSI observations. The standard deviation (1 sigma) and correlation coefficient are 0.045 and 0.769 compared with the O/N-2 ratios provided by the SSUSI EDR data. The statistical errors between the calculated ratios and the EDR references are generally less than 0.2 with 96.40% at 2 sigma (95.44%) and less than 0.1 with 60.51% at about 1 sigma (68.26%). Two global O/N-2 ratio maps are obtained using this method to study its variations when the magnetic storm occurs. The significant O/N-2 depletion can be seen in one O/N-2 ratio map whose Kp index is 6. Also, the depletion is not uniform at different longitudes and the scales extend from high latitude to low latitude during magnetic storm. This proposed method provides us with a simple and useful tool to obtain the global O/N-2 distribution and even the future modeling from the observations on satellites.
机译:使用SSUSI / DMSP远紫外(FUV)DAYGLOW数据和重新敏感仿真结果获得全局热散液O / N-2柱密度比。在更新某些旧模块后,重新验证源自Auric算法。然后使用Re-Auric的模拟建立O / N-2比率的计算过程以校准来自SSUSI观察结果的01135.6nm发射和N-2 LBHS排放的比率。与SSUSI EDR数据提供的O / N-2比相比,标准偏差(1 sigma)和相关系数为0.045和0.769。计算比和EDR参考文献之间的统计误差通常小于0.2,在2 sigma(95.44%),小于0.1,约为60.51%,约为1 sigma(68.26%)。使用该方法获得两个全局O / N-2比率图,以研究磁风暴发生时的变化。在KP指数为6的一个O / N-2比率图中可以看到显着的O / N-2耗尽。此外,耗尽在不同的长尺寸下不均匀,并且尺度在磁风暴期间从高纬度到低纬度延伸到低纬度。这一提出的方法为我们提供了一种简单而有用的工具,可以获得全局O / N-2分布,甚至从卫星的观察结果中的未来建模。

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