Solar Orbiter's 2024 Major Flare Campaigns: An Overview
Daniel F. Ryan, Laura A. Hayes, Hannah Collier, Graham S. Kerr, Andrew R. Inglis, David Williams, Andrew P. Walsh, Miho Janvier, Daniel M\"uller, David Berghmans, Cis Verbeeck, Emil Kraaikamp, Peter R. Young, Therese A. Kucera, S\"am Krucker, Muriel Z. Stiefel, Daniele Calchetti

TL;DR
Solar Orbiter's 2024 flare campaigns utilized high-resolution, multi-instrument observations during perihelia to study solar eruptions, revealing detailed dynamics of magnetic reconnection, energy release, and particle acceleration, providing valuable data for understanding solar energetic phenomena.
Contribution
This paper presents the operational planning, observational strategies, and initial insights of Solar Orbiter's 2024 flare campaigns, highlighting unprecedented multi-instrument observations of solar flares.
Findings
High-cadence EUV imaging revealed fine-scale structures and dynamics.
Simultaneous X-ray and EUV spectroscopy provided insights into energy release processes.
The dataset offers new perspectives on magnetic reconnection and plasma heating.
Abstract
Solar Orbiter conducted a series of flare-optimised observing campaigns in 2024 utilising the Major Flare Solar Orbiter Observing Plan (SOOP). Dedicated observations were performed during two distinct perihelia intervals in March/April and October, during which over 22 flares were observed, ranging from B- to M-class. These campaigns leveraged high-resolution and high-cadence observations from the mission's remote-sensing suite, including the High-Resolution EUV Imager (EUI/HRI_EUV), the Spectrometer/Telescope for Imaging X-rays (STIX), the Spectral Imaging of the Coronal Environment (SPICE) spectrometer, and the High Resolution Telescope of the Polarimetric and Helioseismic Imager (PHI/HRT), as well as coordinated ground-based and Earth-orbiting observations. EUI/HRI_EUV operating in short-exposure modes, provided two-second-cadence, non-saturated EUV images, revealing structures and…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics · Astro and Planetary Science
