English

Statistical Analysis of the Relation between Coronal Mass Ejections and Solar Energetic Particles

Solar and Stellar Astrophysics 2020-09-09 v1 Space Physics

Abstract

To improve the forecasting capability of impactful solar energetic particle (SEP) events, the relation between coronal mass ejections (CMEs) and SEP events needs to be better understood. Here we present a statistical study of SEP occurrences and timescales with respect to the CME source locations and speeds, considering all 257 fast (vCMEv_{CME} \ge 900 km/s) and wide (angular width \ge 60^{\circ}) CMEs that occurred between December 2006 and October 2017. We associate them with SEP events at energies above 10 MeV. Examination of the source region of each CME reveals that CMEs more often accompany a SEP event if they originate from the longitude of E20-W100 relative to the observer. However, a SEP event could still be absent if the CME is << 2000 km/s. For the associated CME-SEP pairs, we compute three timescales for each of the SEP events, following Kahler (2005, 2013); namely the timescale of the onset (TO), the rise time (TR), and the duration (TD). They are correlated with the longitude of the CME source region relative to the footpoint of the Parker spiral (ΔΦ\Delta\Phi) and vCMEv_{CME}. The TO tends to be short for ΔΦ|\Delta\Phi| << 60^{\circ} . This trend is weaker for TR and TD. The SEP timescales are only weakly correlated with vCMEv_{CME}. Positive correlations of both TR and TD with vCMEv_{CME} are seen in poorly connected (large ΔΦ|\Delta\Phi|) events. Additionally, TO appears to be negatively correlated with vCMEv_{CME} for events with small ΔΦ|\Delta\Phi|.

Keywords

Cite

@article{arxiv.2007.08062,
  title  = {Statistical Analysis of the Relation between Coronal Mass Ejections and Solar Energetic Particles},
  author = {Kosuke Kihara and Yuwei Huang and Nobuhiko Nishimura and Nariaki V. Nitta and Seiji Yashiro and Kiyoshi Ichimoto and Ayumi Asai},
  journal= {arXiv preprint arXiv:2007.08062},
  year   = {2020}
}

Comments

23 pages, 10 figures, accepted for publication in ApJ

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