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Energy Spectra vs. Element Abundances in Solar Energetic Particles and the Roles of Magnetic Reconnection and Shock Acceleration

机译:能谱与太阳高能粒子元素丰度的关系以及磁重联和激波加速的作用

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摘要

We reexamine the relationship between energy spectral indices and element abundance enhancements in solar energetic particle (SEP) events at energies of a few MeV amu(-1). We find a correlated behavior only in the largest gradual SEP4 events when all ions are accelerated from the ambient coronal plasma by shock waves driven by fast, wide coronal mass ejections (CMEs). This correlated abundance behavior can track complex time variations in the spectral indices during an event. In other (SEP3) events, CME-driven shock waves, days apart, sample seed particles from a single pool of suprathermal impulsive ions contributed earlier. Of the smaller, Fe-rich, impulsive SEP events, previously related to magnetic reconnection in solar jets, over half are subsequently reaccelerated by CME-driven shock waves (SEP2), causing typical ion intensities to have a 64 correlation with shock speeds. In these SEP2 events, the onset of shock acceleration is signaled by a new component in the abundances, large proton excesses. The remaining SEP1 events lack evidence of shock acceleration. However, for all these events (SEP1-SEP3) with abundances determined by magnetic reconnection, energy spectra and abundances are decoupled.
机译:我们重新研究了能量为几MeV amu(-1)的太阳高能粒子(SEP)事件中能谱指数与元素丰度增强之间的关系。我们仅在最大的渐进 SEP4 事件中发现相关行为,当所有离子都被快速、宽冠状物质抛射 (CME) 驱动的冲击波从环境日冕等离子体加速时。这种相关的丰度行为可以跟踪事件期间光谱指数的复杂时间变化。在其他(SEP3)事件中,CME驱动的冲击波相隔数天,来自单个超热脉冲离子池的样本种子颗粒贡献较早。在以前与太阳射流中的磁重联有关的较小的、富含铁的脉冲SEP事件中,超过一半的事件随后被CME驱动的冲击波(SEP2)重新加速,导致典型的离子强度与冲击速度有64%的相关性。在这些 SEP2 事件中,激波加速的开始是由大量质子过量中的新成分发出的信号。其余的SEP1事件缺乏冲击加速的证据。然而,对于所有这些由磁重联确定丰度的事件(SEP1-SEP3),能谱和丰度是解耦的。

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