Statistical Study and Live Catalogue of Multi-Spacecraft 3He-Rich Time Periods over Solar Cycles 23, 24, and 25
Samuel T. Hart, Maher A. Dayeh, Radoslav Bu\v{c}\'ik, Mihir I. Desai,, Robert W. Ebert, George C. Ho, Gang Li, Glenn M. Mason

TL;DR
This study analyzes 854 3He-rich periods over solar cycles 23-25 using multi-spacecraft data, revealing correlations in elemental ratios and providing a public live catalogue of these events for further research.
Contribution
It presents a comprehensive statistical analysis of 3He-rich periods across multiple solar cycles and introduces a publicly accessible live catalogue with detailed event parameters.
Findings
Identified 854 3He-rich periods from 1997 to 2021.
Discovered two distinct trends in 3He/4He vs. Fe/O ratios.
Established correlations between elemental abundance ratios across energy ranges.
Abstract
Using ion measurements from Ultra-Low-Energy Isotope Spectrometer (ULEIS) observations onboard Advanced Composition Explorer (ACE) and Solar Isotope Spectrometer (SIS) observations onboard the Solar Terrestrial Observatory (STEREO)-A and STEREO-B spacecraft, we have identified 854 3He-rich time periods between 1997 September and 2021 March. We include all event types with observed 3He enhancements such as corotating interaction regions (CIRs), gradual solar energetic particle (SEP) events, interplanetary shocks, and impulsive SEP events. We employ two different mass separation techniques to obtain 3He, 4He, Fe, and O fluences for each event, and we determine the 3He/4He and Fe/O abundance ratios between 0.32 to 0.45 MeV/nucleon and 0.64 to 1.28 MeV/nucleon. We find a clear correlation in the 3He/4He and Fe/O abundance ratios between both energy ranges. We find two distinct trends in the…
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