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  Magnetospheric Venus Space Explorers (MVSE) mission: A proposal for understanding the dynamics of induced magnetospheres

Albers, R., Andrews, H., Boccacci, G., Pires, V. D. C., Laddha, S., Lundén, V., et al. (2024). Magnetospheric Venus Space Explorers (MVSE) mission: A proposal for understanding the dynamics of induced magnetospheres. Acta Astronautica, 221, 194-205. doi:10.1016/j.actaastro.2024.05.017.

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 Creators:
Albers, Roland, Author
Andrews, Henrik, Author
Boccacci, Gabriele, Author
Pires, Vasco D. C., Author
Laddha, Sunny, Author
Lundén, Ville, Author
Maraqten, Nadim, Author
Matias, João, Author
Krämer, Eva, Author
Schulz, Leonard, Author
Palanca, Ines Terraza, Author
Teubenbacher, Daniel, Author
Baskevitch, Claire, Author
Covella, Francesca, Author
Cressa, Luca, Author
Moreno, Juan Garrido, Author
Gillmayr, Jana, Author
Hollowood, Joshua, Author
Huber, Kilian, Author
Kutnohorsky, Viktoria, Author
Lennerstrand, Sofia, AuthorMalatinszky, Adel, AuthorManzini, Davide, AuthorMaurer, Manuel, AuthorNidelea, Daiana Maria Alessandra, AuthorRigon, Luca, AuthorSinjan, Jonas1, Author           Suarez, Crisel, AuthorViviano, Mirko, AuthorKnutsen, Elise Wright, Author more..
Affiliations:
1Department Sun and Heliosphere, Max Planck Institute for Solar System Research, Max Planck Society, ou_1832289              

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Free keywords: Mission concept; Venus; Multi-spacecraft mission; Space Plasma Physics; Induced magnetosphere; Physics - Space Physics
 Abstract: Induced magnetospheres form around planetary bodies with atmospheres through the interaction of the solar wind with their ionosphere. Induced magnetospheres are highly dependent on the solar wind conditions and have only been studied with single spacecraft missions in the past. Without simultaneous measurements of solar wind variations and phenomena in the magnetosphere, establishing a link between both can only be done indirectly, using statistics over a large set of measurements. This gap in knowledge could be addressed by a multi-spacecraft plasma mission, optimized for studying global spatial and temporal variations in the magnetospheric system around Venus, which hosts the most prominent example of an induced magnetosphere in our solar system. The MVSE mission comprises four satellites, of which three are identical scientific spacecraft, carrying the same suite of instruments probing different regions of the induced magnetosphere and the solar wind simultaneously. The fourth spacecraft is the transfer vehicle which acts as a relay satellite for communications at Venus. In this way, changes in the solar wind conditions and extreme solar events can be observed, and their effects can be quantified as they propagate through the Venusian induced magnetosphere. Additionally, energy transfer in the Venusian induced magnetosphere can be investigated. The scientific payload includes instrumentation to measure the magnetic field, electric field, and ion–electron velocity distributions. This study presents the scientific motivation for the mission as well as requirements and the resulting mission design. Concretely, a mission timeline along with a complete spacecraft design, including mass, power, communication, propulsion and thermal budgets are given. This mission was initially conceived at the Alpbach Summer School 2022 and refined during a week-long study at ESA's Concurrent Design Facility in Redu, Belgium.

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 Dates: 2024
 Publication Status: Issued
 Pages: -
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 Rev. Type: -
 Identifiers: DOI: 10.1016/j.actaastro.2024.05.017
ISSN: 0094-5765
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Title: Acta Astronautica
Source Genre: Journal
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Publ. Info: Elsevier
Pages: - Volume / Issue: 221 Sequence Number: - Start / End Page: 194 - 205 Identifier: -