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首页> 外文期刊>The Astrophysical journal >The Role of Successive and Interacting CMEs in the Acceleration and Release of Solar Energetic Particles: Multi-viewpoint Observations
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The Role of Successive and Interacting CMEs in the Acceleration and Release of Solar Energetic Particles: Multi-viewpoint Observations

机译:连续和交互CME在太阳能粒子的加速和释放中的作用:多视点观察

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Gradual and large solar energetic particle (SEP) events (flux of ions with energy >10 MeV above 10 pfu) are primarily produced in shocks driven by fast and wide coronal mass ejections (CMEs). Past research, both in theory and statistics, has found that the situation where a fast primary CME (priCME) is preceded by previous CMEs (preCMEs) is favorable to a more efficient particle acceleration. However, the physical causes of this association is still a matter of debate, including the association of the acceleration and release of SEPs with the interaction of successive CMEs. Taking advantage of the twin Solar TErrestrial RElations Observatory spacecraft, we study 41 large SEP events in solar cycle 24 by multi-viewpoint observations. Although 21 events (~51%) have a preCME identifiable in the Large Angle and Spectrometric Coronagraph, we determine that the priCMEs overlap the preCMEs in three dimension (3D) for only 11 events (~27%). We further investigate the acceleration (using type II radio bursts) and release (using velocity dispersion analysis) of the particles for all potential instances of CME–CME interaction in 3D. We find that, for six of 11 events, the priCME is far away from catching up with the preCME when the particles are released. However, for the limited samples, the SEP peak intensity is significantly higher in the events in which the priCME is closest to impacting the preCME, indicating the potential for the increased seed population or more enhanced turbulence levels occurring closer to the preCME.
机译:逐渐和大的太阳能粒子(SEP)事件(离子磁通量> 10meV以上10mEV)主要由快速且宽冠状大气(CMES)驱动的冲击。在理论和统计中,过去的研究发现,在先前的CMES(PRECME)之前,FAST主CME(PRICME)之前的情况有利于更有效的粒子加速度。然而,这种关联的身体原因仍然是辩论的问题,包括随着连续CMES的相互作用的加速和释放SEP的协会。利用双太阳能关系天文台航天器,通过多视点观察,研究了太阳循环24的41个大型SEP事件。虽然21个事件(〜51%)在大角度和光谱调节件中具有识别的PREDME,但我们确定PRICMES仅在三维(3D)中重叠了11个事件(〜27%)。我们进一步研究了粒子的加速度(使用II型无线电突发)和释放(使用速度色散分析),用于3D中的CME-CME相互作用的所有潜在实例。我们发现,对于11个事件中的六个活动,当颗粒被释放时,Pricme远远远离PREDME。然而,对于有限的样品,镨的峰值强度在其最接近撞击PRODME的情况下,表明种子种群增加或更加靠近PREDME的增强湍流水平的可能性显着升高。

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