Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE). II. Flares and eruptions

Current state-of-the-art spectrographs cannot resolve the fundamental spatial (subarcseconds) and temporal (less than a few tens of seconds) scales of the coronal dynamics of solar flares and eruptive phenomena. The highest-resolution coronal data to date are based on imaging, which is blind to many of the processes that drive coronal energetics and dynamics. As shown by the Interface Region Imaging Spectrograph for the low solar atmosphere, we need high-resolution spectroscopic measurements with simultaneous imaging to understand the dominant processes. In this paper: (1) we introduce the Multi-slit Solar Explorer (MUSE), a spaceborne observatory to fill this observational gap by providing high-cadence (<20 s), subarcsecond-resolution spectroscopic rasters over an active region size of the solar transition region and corona; (2) using advanced numerical models, we demonstrate the unique diagnostic capabilities of MUSE for exploring solar coronal dynamics and for constraining and discriminating models of solar flares and eruptions; (3) we discuss the key contributions MUSE would make in addressing the science objectives of the Next Generation Solar Physics Mission (NGSPM), and how MUSE, the high-throughput Extreme Ultraviolet Solar Telescope, and the Daniel K Inouye Solar Telescope (and other ground-based observatories) can operate as a distributed implementation of the NGSPM. This is a companion paper to De Pontieu et al., which focuses on investigating coronal heating with MUSE.

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Author Cheung, Mark C. M.
Martínez-Sykora, Juan
Testa, Paola
De Pontieu, Bart
Chintzoglou, Georgios
Rempel, Matthias
Polito, Vanessa
Kerr, Graham S.
Reeves, Katharine K.
Fletcher, Lyndsay
Jin, Meng
Nóbrega-Siverio, Daniel
Danilovic, Sanja
Antolin, Patrick
Allred, Joel
Hansteen, Viggo
Ugarte-Urra, Ignacio
DeLuca, Edward
Longcope, Dana
Takasao, Shinsuke
DeRosa, Marc L.
Boerner, Paul
Jaeggli, Sarah
Nitta, Nariaki V.
Daw, Adrian
Carlsson, Mats
Golub, Leon
Publisher UCAR/NCAR - Library
Publication Date 2022-02-01T00:00:00
Digital Object Identifier (DOI) Not Assigned
Alternate Identifier N/A
Resource Version N/A
Topic Category geoscientificInformation
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Metadata Date 2023-08-18T18:33:18.184463
Metadata Record Identifier edu.ucar.opensky::articles:25160
Metadata Language eng; USA
Suggested Citation Cheung, Mark C. M., Martínez-Sykora, Juan, Testa, Paola, De Pontieu, Bart, Chintzoglou, Georgios, Rempel, Matthias, Polito, Vanessa, Kerr, Graham S., Reeves, Katharine K., Fletcher, Lyndsay, Jin, Meng, Nóbrega-Siverio, Daniel, Danilovic, Sanja, Antolin, Patrick, Allred, Joel, Hansteen, Viggo, Ugarte-Urra, Ignacio, DeLuca, Edward, Longcope, Dana, Takasao, Shinsuke, DeRosa, Marc L., Boerner, Paul, Jaeggli, Sarah, Nitta, Nariaki V., Daw, Adrian, Carlsson, Mats, Golub, Leon. (2022). Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE). II. Flares and eruptions. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7hd806n. Accessed 26 June 2025.

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