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THE ROLE OF INTERPLANETARY SCATTERING IN WESTERN HEMISPHERE LARGE SOLAR ENERGETIC PARTICLE EVENTS

机译:行星际散射在西部半球大型太阳能运动中的作用

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摘要

Using high-sensitivity instruments on the ACE spacecraft, we have examined the intensities of O and Fe in 14 large solar energetic particle events whose parent activity was in the solar western hemisphere. Sampling the intensities at low (~273 keV nucleon~(-1)) and high (~12 MeV nucleon~(-1)) energies, we find that at the same kinetic energy per nucleon, the Fe/O ratio decreases with time, as has been reported previously. This behavior is seen in more than 70% of the cases during the rise to maximum intensity and continues in most cases into the decay phase. We find that for most events if we compare the Fe intensity with the O intensity at a higher kinetic energy per nucleon, the two time-intensity profiles are strikingly similar. Examining alternate scenarios that could produce this behavior, we conclude that for events showing this behavior the most likely explanation is that the Fe and O share similar injection profiles near the Sun, and that scattering in the interplanetary medium dominates the profiles observed at 1 AU.
机译:使用ACE航天器上的高灵敏度仪器,我们检查了14个太阳活动高能粒子事件中O和Fe的强度,这些事件的母体活动在太阳西半球。在低(〜273 keV核子〜(-1))和高(〜12 MeV核子〜(-1))能量下进行强度采样,我们发现在每个核子具有相同动能的情况下,Fe / O比随时间降低,如先前所报道。在上升到最大强度的过程中,超过70%的情况都可见到这种现象,并且在大多数情况下一直持续到衰减阶段。我们发现,对于大多数事件,如果我们在每个核子具有较高动能的情况下将Fe强度与O强度进行比较,则这两个时间强度曲线非常相似。检查可能产生此行为的替代方案,我们得出结论,对于显示该行为的事件,最可能的解释是,Fe和O在太阳附近具有相似的注入剖面,并且在行星际介质中的散射占主导地位,在1 AU观测到。

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