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Comparative analysis of the proton generation efficiency during 17 March 2003 and 11 April 2004 solar flares

机译:2003年3月17日和2004年4月11日的质子发电效率对比分析太阳能耀斑

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We present the comparative analysis of the solar energetic particle (SEP) event properties and the indicators of acceleration processes in solar flares - the hard X-rays (HXR) and radio emission from microwaves to the meter range. We focus our study on the two SEP events associated with solar flares with similar characteristics in HXR emission and the close location on solar disk. The proton flux in the SEP event associated with the weaker flare by GOES class in soft X-ray (SXR) (C9.6/SOL2004-Apr-11) was more than an order higher than in the SEP event associated with the more powerful solar flare (X1.5/SOL2003-Mar-17). At the same time, the electron fluxes in both SEP events were comparable. Both flares were followed by CMEs with speed above 1000 km s(-1). The analysis of SEP fluxes and flare plasma parameters was done taking into account the magnetic topology of the active region (AR) and its evolution before and during the solar flares. The 3D reconstruction of the potential magnetic field showed the existence of an arcade of high loops covering the active region where the more powerful flare occurred. The flare associated with the proton-rich SEP event occurred in the active region where 3D reconstruction revealed a fan of high loops associated with open magnetic field lines. We suppose that the arcade of high loops could be the factor which prevents an escape of the accelerated particles into the interplanetary space (IPS) while the fan of high loops facilitates the production of the more proton-rich SEP events. Results of the analysis show a necessity to use topology of ARs as a parameter in statistical studies of SEP event origins.
机译:我们介绍了太阳能粒子(SEP)事件特性的比较分析和太阳能耀斑的加速过程指标 - 硬X射线(HXR)和从微波到仪表范围的无线电发射。我们专注于我们对与太阳耀斑相关的两个SEP事件的研究,HXR排放中具有相似特征和太阳能盘上的接近位置。与较弱的Flare相关的SEP事件中的质子通量在软X射线(SXR)(C9.6 / SOL2004-APR-11)中超过了比与更强大的SEP事件高的订单太阳耀斑(X1.5 / SOL2003-MAR-17)。与此同时,两个SEP事件中的电子通量可相当。两个喇叭口随后是高于1000公里的CMES(-1)。考虑到太阳耀斑之前和期间的活动区域(AR)的磁性拓扑,完成了对SEP助熔剂和闪光等离子体参数的分析。潜在磁场的3D重建显示了覆盖活动区域的高环的拱廊存在的存在。与质子的SEP事件相关联的耀斑发生在3D重建的有源区中,其中3D重建揭示了与开放磁场线相关的高环的风扇。我们认为高循环的拱廊可能是防止加速粒子逃逸到行星际空间(IPS)的因素,而高循环的风扇有助于生产更丰富的质子的SEP事件。分析结果表明,使用ARS拓扑作为SEP事件统计研究中的参数的必要性。

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