Pätzold, Martin ORCID: 0000-0003-3479-856X, Andert, Tom P., Cardesín-Moinelo, Alejandro, Cicchetti, Andrea, Duxbury, Thomas, Futaana, Yoshifumi, Godfrey, James, Hegler, Sebastian, Hu, Xuanyu, Lainey, Valéry, Matz, Klaus-Dieter, Oberst, Jürgen, Orosei, Roberto, Plettemeier, Dirk, Rosenblatt, Pascal, Stark, Alexander, Willner, Konrad, Witasse, Olivier and Ziese, Ramona (2025). Investigations of the Moon Phobos by Mars Express and Implications Towards Its Origin. Space Science Reviews, 221 (4). pp. 1-30. Springer Nature. ISSN 0038-6308

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Identification Number:10.1007/s11214-025-01165-7

Abstract

[Artikel-Nr.: 41] Mars Express has opened a new chapter in the exploration of Phobos, thanks to its elliptical orbit that allows for regular flybys, sometimes as close as 50 km. Initially designed for studying Mars’ surface and atmosphere, its instruments have provided a wealth of data, including precise geophysical bulk parameters, insights into Phobos’ interior, high-resolution images, remote sensing data of its surface, and observations of interactions between Phobos and the space environment. This resurgence of interest in the Martian moons revolves around the fundamental question of how they formed. Despite the abundance of data gathered by Mars Express, Phobos’ surface composition remains uncertain with many unresolved questions. This ambiguity prevents a definitive confirmation or refutation of the asteroid capture scenario, which likens Phobos to a D-type asteroid. This scenario contradicts the current orbits of the moons and poses other dynamical challenges. However, an alternative hypothesis suggests that Phobos and Deimos formed through the accretion of a rocky debris disk in Mars’ orbit. Their refined shapes, low mass, and bulk density support this idea. The non-detection of MARSIS echoes implies a porous interior, aligning with the low bulk density, indicative of high porosity. The next phase of Phobos exploration will be led by JAXA’s Mars Moon eXplorer (MMX) mission, set to quasi-orbit Phobos, land on its surface, and return a sample to Earth in 2029.

Item Type: Article
Creators:
Creators
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ORCID
ORCID Put Code
Pätzold, Martin
UNSPECIFIED
UNSPECIFIED
Andert, Tom P.
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Cardesín-Moinelo, Alejandro
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Cicchetti, Andrea
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Duxbury, Thomas
UNSPECIFIED
UNSPECIFIED
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Futaana, Yoshifumi
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Godfrey, James
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Hegler, Sebastian
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Hu, Xuanyu
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Lainey, Valéry
UNSPECIFIED
UNSPECIFIED
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Matz, Klaus-Dieter
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Oberst, Jürgen
UNSPECIFIED
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Orosei, Roberto
UNSPECIFIED
UNSPECIFIED
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Plettemeier, Dirk
UNSPECIFIED
UNSPECIFIED
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Rosenblatt, Pascal
UNSPECIFIED
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Stark, Alexander
UNSPECIFIED
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Willner, Konrad
UNSPECIFIED
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UNSPECIFIED
Witasse, Olivier
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
Ziese, Ramona
UNSPECIFIED
UNSPECIFIED
UNSPECIFIED
URN: urn:nbn:de:hbz:38-809672
Identification Number: 10.1007/s11214-025-01165-7
Journal or Publication Title: Space Science Reviews
Volume: 221
Number: 4
Page Range: pp. 1-30
Number of Pages: 30
Date: 23 April 2025
Publisher: Springer Nature
ISSN: 0038-6308
Language: English
Faculty: External institution
Divisions: Externe Einrichtungen > An-Institute > Associated Institutes of the Faculty of Mathematics and Natural Sciences > Rhenish Institute for Environmental Research - RIU
Subjects: Physics
Uncontrolled Keywords:
Keywords
Language
Mars Express ; Mars ; Phobos
English
['eprint_fieldname_oa_funders' not defined]: Publikationsfonds UzK
Refereed: Yes
URI: http://kups.ub.uni-koeln.de/id/eprint/80967

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