Successive Coronal Mass Ejections Associated with Weak Solar Energetic Particle Events
arXiv:2109.02225 · doi:10.3847/1538-4357/ac17e9
Abstract
The scenario of twin coronal mass ejections (CMEs), i.e., a fast and wide primary CME (priCME) preceded by previous CMEs (preCMEs), has been found to be favorable to a more efficient particle acceleration in large solar energetic particle (SEP) events. Here, we study 19 events during 2007--2014 associated with twin-CME eruptions but without large SEP observations at L1 point. We combine remote-sensing and in situ observations from multiple spacecraft to investigate the role of magnetic connectivity in SEP detection and the CME information in 3-dimensional (3D) space. We study one-on-one correlations of the priCME 3D speed, flare intensity, suprathermal backgrounds, and height of CME-CME interaction with the SEP intensity. Among these, the priCME speed is found to correlate with the SEP peak intensity at the highest level. We use the projection correlation method to analyze the correlations between combinations of these multiple independent factors and the SEP peak intensity. We find that the only combination of two or more parameters that has higher correlation with the SEP peak intensity than the CME speed is the CME speed combined with the propagation direction. This further supports the dominant role of the priCME in controlling the SEP enhancements, and emphasizes the consideration of the latitudinal effect. Overall, the magnetic connectivity in longitude as well as latitude and the relatively lower priCME speed may explain the existence of the twin-CME SEP-poor events. The role of the barrier effect of preCME(s) is discussed for an event on 2013 October 28.
Accepted to ApJ on 27-Jul-2021
References in corpus (11)
- Relationship between Solar Energetic Particles and Properties of Flares and CMEs: Statistical Analysis of Solar Cycle 23 Events
- Statistical Evidence for Contributions of Flares and Coronal Mass Ejections to Major Solar Energetic Particle Events
- CME Propagation Characteristics from Radio Observations
- Scaling Relations in Coronal Mass Ejections and Energetic Proton Events associated with Solar Superflares
- Solar Energetic Particle Events in the 23rd Solar Cycle: Interplanetary Magnetic Field Configuration and Statistical Relationship with Flares and CMEs
- Escape of Flare-accelerated Particles in Solar Eruptive Events
- Properties of a Coronal Shock Wave as A Driver of Early SEP Acceleration
- Seed Population Pre-Conditioning and Acceleration Observed by Parker Solar Probe
- Solar Flare-CME Coupling Throughout Two Acceleration Phases of a Fast CME
- Statistical Analysis of the Relation between Coronal Mass Ejections and Solar Energetic Particles
- Numerical Study of the Longitudinally Asymmetric Distribution of Solar Energetic Particles in the Heliosphere