Exploring impulsive solar magnetic energy release and particle acceleration with focused hard X-ray imaging spectroscopy
Abstract
How impulsive magnetic energy release leads to solar eruptions and how those eruptions are energized and evolve are vital unsolved problems in Heliophysics. The standard model for solar eruptions summarizes our current understanding of these events. Magnetic energy in the corona is released through drastic restructuring of the magnetic field via reconnection. Electrons and ions are then accelerated by poorly understood processes. Theories include contracting loops, merging magnetic islands, stochastic acceleration, and turbulence at shocks, among others. Although this basic model is well established, the fundamental physics is poorly understood. HXR observations using grazing-incidence focusing optics can now probe all of the key regions of the standard model. These include two above-the-looptop (ALT) sources which bookend the reconnection region and are likely the sites of particle acceleration and direct heating. The science achievable by a direct HXR imaging instrument can be summarized by the following science questions and objectives which are some of the most outstanding issues in solar physics (1) How are particles accelerated at the Sun? (1a) Where are electrons accelerated and on what time scales? (1b) What fraction of electrons is accelerated out of the ambient medium? (2) How does magnetic energy release on the Sun lead to flares and eruptions? A Focusing Optics X-ray Solar Imager (FOXSI) instrument, which can be built now using proven technology and at modest cost, would enable revolutionary advancements in our understanding of impulsive magnetic energy release and particle acceleration, a process which is known to occur at the Sun but also throughout the Universe.
Keywords
Cite
@article{arxiv.1701.00792,
title = {Exploring impulsive solar magnetic energy release and particle acceleration with focused hard X-ray imaging spectroscopy},
author = {Steven Christe and Samuel Krucker and Lindsay Glesener and Albert Shih and Pascal Saint-Hilaire and Amir Caspi and Joel Allred and Marina Battaglia and Bin Chen and James Drake and Brian Dennis and Dale Gary and Szymon Gburek and Keith Goetz and Brian Grefenstette and Mikhail Gubarev and Iain Hannah and Gordon Holman and Hugh Hudson and Andrew Inglis and Jack Ireland and Shinosuke Ishikawa and James Klimchuk and Eduard Kontar and Adam Kowalski and Dana Longcope and Anna-Maria Massone and Sophie Musset and Michele Piana and Brian Ramsey and Daniel Ryan and Richard Schwartz and Marek Stęślicki and Paul Turin and Alexander Warmuth and Colleen Wilson-Hodge and Stephen White and Astrid Veronig and Nicole Vilmer and Tom Woods},
journal= {arXiv preprint arXiv:1701.00792},
year = {2017}
}
Comments
Next Generation Solar Physics Mission white paper, 2 figures