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Spectroscopic Diagnostic of Halos and Elves Detected From Space-Based Photometers

机译:从基于空间的光度计检测到的光谱诊断的光谱诊断

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In this work, we develop two spectroscopic diagnostic methods to derive the peak reduced electric field in transient luminous events (TLEs) from their optical signals. These methods could be used to analyze the optical signature of TLEs reported by spacecraft such as Atmosphere-Space Interactions Monitor (European Space Agency) and the future Tool for the Analysis of RAdiations from lightNIngs and Sprites (Centre National d’études Spatiales). As a first validation of these methods, we apply them to the predicted (synthetic) optical signatures of halos and elves, two types of TLEs, obtained from electrodynamical models. This procedure allows us to compare the inferred value of the peak reduced electric field with the value computed by halo and elve models. Afterward, we apply both methods to the analysis of optical signatures of elves and halos reported by Global LIghtning and sprite MeasurementS (Japan Aerospace Exploration Agency) and Imager of Sprites and Upper Atmospheric Lightning (National Space Organization) spacecraft, respectively. We conclude that the best emission ratios to estimate the maximum reduced electric field in halos and elves are the ratio of the second positive system of N_2 to first negative system (FNS) of N_2~+ , the first positive system of N_2 to FNS of N_2~+ and the Lyman-Birge-Hopfield band of N_2 to FNS of N_2~+ . In the case of reduced electric fields below 150 Td, we found that the ratio of the second positive system of N_2 to first positive systemof N_2 can also be used to reasonably estimate the value of the field. Finally, we show that the reported optical signals from elves can be treated following an inversion method in order to estimate some of the characteristics of the parent lightning.
机译:在这项工作中,我们开发了两个光谱诊断方法来导出峰中从它们的光学信号的瞬时发光事件(的TLE)电场减小。这些方法可以使用的TLE报道航天器,如大气,空间相互作用监测器(欧洲航天局),并从闪电和精灵辐射的分析未来的工具(中心法国国家空间)来分析该光学签名。作为这些方法的第一验证,我们将它们应用到预测(合成的)的晕圈和精灵,两种类型的TLE的,从电动力模型获得的光学特征。这个过程使我们能够比较峰值的推断值低电场与光环和elve模型计算出的值。后来,我们采用两种方法分别由全球闪电和雪碧测量(日本宇宙航空研究开发机构)和精灵的成像仪和中高层大气放电(国家太空中心)的航天器,报道精灵和光晕的光学特征的分析。我们的结论是最好的发光率来估计最大在光晕减少电场和精灵N_2的第二正系统的到第一负系统(FNS)N_2的〜+,N_2的第一正系统N_2的FNS的比率〜+和N_2的莱曼 - 伯奇-的Hopfield频带N_2的〜+ FNS。在低于150 Td的减小电场的情况下,我们发现,N_2的到第一正制度的定位N_2第二正系统的比率也可用于合理地估计该字段的值。最后,我们显示,从精灵所报告的光信号可以以下以便估计一些的父闪电的特性的反转方法进行治疗。

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