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May 30, 2026The Astrophysical Journal0 citationsOpen Access

The 3He-rich SEP on Event 2024 April 1 at 27 Solar Radii—Indications of Acceleration by Waves and Implications of Coronal Source Location

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DMD. G. MitchellDLD. LarioNRN. E. Raouafi

Key Points

  • The aim is to analyze the 3He-rich solar energetic particle event on April 1, 2024, and understand its acceleration mechanisms and source.
  • Utilized Parker Solar Probe (PSP) observations focusing on a small dispersive SEP event at 27 solar radii.
  • Analyzed energetic particle composition, onset times, and correlated emissions including radio waves and flares.
  • Estimated particle propagation and energy spectra to infer wave-particle acceleration dynamics.
  • Detected significantly high 3He levels (40–250 keV nucleon −1) suggesting resonant wave–particle acceleration.
  • The 3He energy spectrum exhibited distinct features differing from typical power law shapes observed in H and 4He.
  • Observations indicated complex interactions, including a ~60° longitudinal propagation of energetic particles before reaching open magnetic flux.

Abstract

Abstract Parker Solar Probe (PSP) observations of a small dispersive event on 2024 April 1 reveal highly enriched 3 He abundance in the suprathermal energy range (40–250 keV nucleon −1 ). Time dispersion observed in this impulsive solar energetic particle (SEP) event is consistent with an estimated onset time of 22:50 UT on 2024 March 31. The event occurred during an orbital segment as PSP moved from about 27 R s to about 29 R s while outbound in orbit 19. For this segment of the orbit, PSP’s motion in Carrington coordinates remains within about 1° of the same Carrington longitude. The 3 He content is much larger than the usual SEP abundances, especially in this energy range. Additionally, the 3 He energy spectrum is not power law in shape, unlike the H and 4 He spectra. Heavy ions (O, Fe) are also somewhat enhanced. These compositional signatures suggest that this is an example of resonant wave–particle acceleration, as hypothesized for generating the suprathermal seed particles required to account for the enrichment of various species above solar abundances in shock (or compression) acceleration models of SEP events. Like many previously reported impulsive 3 He-rich events, this event is associated with an energetic electron beam, type III radio emission, and a hard X-ray flare. However, associating the hard X-ray event with this SEP event requires significant (∼60°) prompt longitudinal propagation of energetic particles in the low corona before they access open magnetic flux, complicating its interpretation as part of the source process for this particular event.

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Cite This Study

Mitchell et al. (2026) studied this question.

synapsesocial.com/papers/6a1a7dc00307b78509430ac1https://doi.org/10.3847/1538-4357/ae6589
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