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Solar Effects on the Atmospheric Electric Field During 2010-2015 at Low Latitudes

机译:低纬度地区2010 - 2015年大气电场的太阳能影响

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摘要

Solar phenomena such as flares and solar energetic particles events are potential candidates to affect the global atmospheric electric circuit. One can study these effects using measurements of the atmospheric electric field in fair weather regions. In this paper, we investigate deviations of the atmospheric electric field daily curve during solar disturbances (solar flares and solar proton events) from mean values obtained in fair weather conditions. Using the superposed epoch analysis, in order to enhance the visualization of small effects, we study the atmospheric electric field data observed between January 2010 and December 2015 at the Complejo Astronómico El Leoncito, San Juan, Argentina. The results show no deviation of the atmospheric electric field after solar flares, and an increase of about 10 V/m after solar proton events. The last result suggests possible ionization effects above thunderstorm in disturbed weather regions, which alters the global atmospheric electric circuit. On the other hand, we analyze the variation of the atmospheric electric field during a ground level enhancement on 17 May 2012, which was capable to produce changes on the surface electric field.
机译:耀斑和太阳能粒子的太阳能现象是影响全球大气电路的潜在候选者。人们可以使用公平的气象区域中的大气电场测量来研究这些效果。在本文中,我们研究了在公平天气条件下获得的平均值的太阳能干扰(太阳能耀斑和太阳能质子事件)期间的大气电场日常曲线的偏差。使用叠加的时期分析,为了提高小效果的可视化,我们研究了2010年1月和2015年12月在阿根廷的ComplejoAstronómicoel Leoncito之间观察到的大气电气场数据。结果显示太阳能耀斑后大气电场的偏差,在太阳能质子事件之后增加约10 V / m。最后一个结果表明,在受干扰的天气区域中可能高于雷暴的可能电离效应,这改变了全局大气电路。另一方面,我们分析了2012年5月17日在地面增强过程中的大气电场的变化,其能够在表面电场产生变化。

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