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Variability of Precipitating Ion Fluxes During the September 2017 Event at Mars

机译:可变性的沉淀离子通量2017年9月在火星

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In this work, we study the influence of the September 2017 solar event on the precipitating heavy ion fluxes toward Mars' atmosphere as seen by Mars Atmosphere and Volatile EvolutioN/Solar Wind Ion Analyzer, an energy and angular ion spectrometer and by Mars Atmosphere and Volatile EvolutioN/Suprathermal and Thermal Ion Composition instrument, an energy, mass, and angular ion spectrometer. After a careful reconstruction of the background induced by the Solar Energetic Particle event in the Mars Atmosphere and Volatile EvolutioN/Solar Wind Ion Analyzer spectrometer, we investigate the precipitating ion flux responses to the space weather events that took place in September 2017. This period is a unique opportunity to analyze the respective role of various possible drivers of heavy ion precipitation into Mars' atmosphere with a wide range of different space weather events occurring during the same month. This study shows an increase in the precipitation flux by more than 1 order of magnitude during the arrival of the September Interplanetary Coronal Mass Ejection compared to the average flux during quiet solar conditions. We also showed that among the possible solar drivers, the solar wind dynamic pressure is the most significant during September 2017.
机译:在这项工作中,我们研究的影响2017年9月太阳能事件沉淀重离子通量对火星的大气火星大气与挥发物演化/太阳能能源和角离子风离子分析仪谱仪和火星大气与挥发物进化/ Suprathermal和热离子组合仪表、能源、质量,和角离子谱仪。重建的背景引发的太阳高能粒子事件火星大气与挥发性演化/太阳风离子分析仪分光计,我们调查沉淀离子通量响应的空间2017年9月天气事件发生。这一时期是一个独特的机会来分析各自的角色的各种可能的驱动程序重离子降水进入火星大气层与各种不同的空间天气在同一个月的事件发生。研究表明沉积通量的增加期间1个数量级以上到来的9月星际日冕质量喷射相比平均通量安静的太阳能的条件。可能的太阳能驱动,太阳风动态压力是最重要的2017年9月。

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