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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >Geomagnetic signatures of sudden ionospheric disturbances during extreme solar radiation events
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Geomagnetic signatures of sudden ionospheric disturbances during extreme solar radiation events

机译:极端太阳辐射事件期间电离层突然干扰的地磁特征

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摘要

We performed a comparative study of geomagnetic variations, which are associated with sudden ionospheric disturbances (SIDs) caused by great X-class solar flares on July 14, 2000 (Bastille flare) and on October 28, 2003 (Halloween flare). Intense fluxes of solar X-rays and EUV radiation as well as solar energetic particles (SEP) were considered as sources of abundant ionization of the ionosphere and upper atmosphere. Flare-initiated SIDs are revealed as transient geomagnetic variations, which are generated by enhanced electric currents flowing mainly in the bottom-side ionosphere. Those so-called solar flare effects (SFEs) were studied by using of geomagnetic data from INTERMAGNET worldwide network of ground-based magnetometers. In subsolar region the SFE is mainly controlled by the flare X-rays and/or EUV radiation. We found that in the Halloween flare the contribution of X-rays was comparable with the EUV, but in the Bastille flare the EUV flux was dominant. The ionization at high latitudes is generated by the SEP, which energy flux is comparable and even exceeds the solar electromagnetic radiation in that region, It was shown that in the Halloween event the pattern of SFE is formed by a two-vortex current system, which is similar to the quiet day Sq current system. However, during the Bastille flare, the pattern of induced currents is quite different: the northern vortex shifts westward and southern vortex shifts eastward such that the electroject is substantially tilted relative to the geomagnetic equator. From numerical estimations we found that at middle latitudes the SEP-initiated geomagnetic effect becomes comparable with the effects of solar electromagnetic radiation. It was also shown that the SEP contribute to the SFE in the nightside hemisphere. The revealed features of the SEP impact to the ionosphere were found in a good agreement with the theory of energetic particle penetration to the bottom-side magnetosphere. (C) 2008 Elsevier Ltd. All rights reserved.
机译:我们对地磁变化进行了对比研究,地磁变化与2000年7月14日(巴士底耀斑)和2003年10月28日(万圣节耀斑)由X级强烈太阳耀斑引起的突然电离层扰动(SID)相关。太阳X射线和EUV辐射的强烈通量以及太阳高能粒子(SEP)被认为是电离层和高层大气大量电离的来源。耀斑引发的SID显示为瞬时地磁变化,这是由主要在底部电离层中流动的增强电流产生的。那些所谓的太阳耀斑效应(SFE)是通过使用来自INTERMAGNET全世界地面磁力计网络的地磁数据进行研究的。在太阳下地区,SFE主要受耀斑X射线和/或EUV辐射控制。我们发现,在万圣节耀斑中,X射线的贡献与EUV相当,但在巴士底耀斑中,EUV通量占主导地位。 SEP产生高纬度的电离,其能量通量相当,甚至超过了该区域的太阳电磁辐射。研究表明,在万圣节事件中,SFE的模式是由两涡流系统形成的,与安静的Sq当前系统相似。然而,在巴士底狱爆发期间,感应电流的模式非常不同:北涡旋向西移动,南涡旋向东移动,因此电注入相对于地磁赤道基本上倾斜。通过数值估算,我们发现在中纬度,SEP引发的地磁效应变得可以与太阳电磁辐射的效应相媲美。还表明,SEP有助于夜半球的SFE。发现SEP对电离层影响的揭示特征与高能粒子渗透到底侧磁层的理论非常吻合。 (C)2008 Elsevier Ltd.保留所有权利。

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