A journey of exploration to the polar regions of a star: probing the solar poles and the heliosphere from high helio-latitude
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Author
Harra, LouiseAndretta, Vincenzo
Appourchaux, Thierry
Baudin, Frédéric
Bellot-Rubio, Luis
Birch, Aaron C.
Boumier, Patrick
Cameron, Robert H.
Carlsson, Matts
Corbard, Thierry
Davies, Jackie
Fazakerley, Andrew
Fineschi, Silvano
Finsterle, Wolfgang
Gizon, Laurent
Harrison, Richard
Hassler, Donald M.
Leibacher, John
Liewer, Paulett
Macdonald, Malcolm
Maksimovic, Milan
Murphy, Neil
Naletto, Giampiero
Nigro, Giuseppina
Owen, Christopher
Martínez-Pillet, Valentín
Rochus, Pierre
Romoli, Marco
Sekii, Takashi
Spadaro, Daniele
Veronig, Astrid
Schmutz, W.
Affiliation
Lunar and Planetary Laboratory, University of ArizonaIssue Date
2021-07-31
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Springer Science and Business Media LLCCitation
Harra, L., Andretta, V., Appourchaux, T., Baudin, F., Bellot-Rubio, L., Birch, A. C., Boumier, P., Cameron, R. H., Carlsson, M., Corbard, T., Davies, J., Fazakerley, A., Fineschi, S., Finsterle, W., Gizon, L., Harrison, R., Hassler, D. M., Leibacher, J., Liewer, P., … Schmutz, W. (2021). A journey of exploration to the polar regions of a star: Probing the solar poles and the heliosphere from high helio-latitude. Experimental Astronomy.Journal
Experimental AstronomyRights
© The Author(s) 2021. This article is licensed under a Creative Commons Attribution 4.0 International License.Collection Information
This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.Abstract
A mission to view the solar poles from high helio-latitudes (above 60°) will build on the experience of Solar Orbiter as well as a long heritage of successful solar missions and instrumentation (e.g. SOHO Domingo et al. (Solar Phys. 162(1-2), 1–37 1995), STEREO Howard et al. (Space Sci. Rev. 136(1-4), 67–115 2008), Hinode Kosugi et al. (Solar Phys. 243(1), 3–17 2007), Pesnell et al. Solar Phys. 275(1–2), 3–15 2012), but will focus for the first time on the solar poles, enabling scientific investigations that cannot be done by any other mission. One of the major mysteries of the Sun is the solar cycle. The activity cycle of the Sun drives the structure and behaviour of the heliosphere and of course, the driver of space weather. In addition, solar activity and variability provides fluctuating input into the Earth climate models, and these same physical processes are applicable to stellar systems hosting exoplanets. One of the main obstructions to understanding the solar cycle, and hence all solar activity, is our current lack of understanding of the polar regions. In this White Paper, submitted to the European Space Agency in response to the Voyage 2050 call, we describe a mission concept that aims to address this fundamental issue. In parallel, we recognise that viewing the Sun from above the polar regions enables further scientific advantages, beyond those related to the solar cycle, such as unique and powerful studies of coronal mass ejection processes, from a global perspective, and studies of coronal structure and activity in polar regions. Not only will these provide important scientific advances for fundamental stellar physics research, they will feed into our understanding of impacts on the Earth and other planets’ space environment. © 2021, The Author(s).Note
Open access articleISSN
0922-6435EISSN
1572-9508Version
Final published versionSponsors
ETH Zurichae974a485f413a2113503eed53cd6c53
10.1007/s10686-021-09769-x
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Except where otherwise noted, this item's license is described as © The Author(s) 2021. This article is licensed under a Creative Commons Attribution 4.0 International License.

