Literature DB >> 31916851

Mawrth Vallis, Mars: A Fascinating Place for Future In Situ Exploration.

François Poulet1, Christoph Gross2, Briony Horgan3, Damien Loizeau1, Janice L Bishop4, John Carter1, Csilla Orgel2.   

Abstract

After the successful landing of the Mars Science Laboratory rover, both NASA and ESA initiated a selection process for potential landing sites for the Mars2020 and ExoMars missions, respectively. Two ellipses located in the Mawrth Vallis region were proposed and evaluated during a series of meetings (three for Mars2020 mission and five for ExoMars). We describe here the regional context of the two proposed ellipses as well as the framework of the objectives of these two missions. Key science targets of the ellipses and their astrobiological interests are reported. This work confirms that the proposed ellipses contain multiple past martian wet environments of a subaerial, subsurface, and/or subaqueous character, in which to probe the past climate of Mars; build a broad picture of possible past habitable environments; evaluate their exobiological potentials; and search for biosignatures in well-preserved rocks. A mission scenario covering several key investigations during the nominal mission of each rover is also presented, as well as descriptions of how the site fulfills the science requirements and expectations of in situ martian exploration. These serve as a basis for potential future exploration of the Mawrth Vallis region with new missions and describe opportunities for human exploration of Mars in terms of resources and science discoveries.

Entities:  

Keywords:  Habitability; Mars; Prebiotic chemistry.; Preservation; Space exploration

Mesh:

Year:  2020        PMID: 31916851     DOI: 10.1089/ast.2019.2074

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  2 in total

1.  Multiple mineral horizons in layered outcrops at Mawrth Vallis, Mars, signify changing geochemical environments on early Mars.

Authors:  Janice L Bishop; Christoph Gross; Jacob Danielsen; Mario Parente; Scott L Murchie; Briony Horgan; James J Wray; Christina Viviano; Frank P Seelos
Journal:  Icarus       Date:  2020-01-17       Impact factor: 3.508

2.  Inhabited subsurface wet smectites in the hyperarid core of the Atacama Desert as an analog for the search for life on Mars.

Authors:  Armando Azua-Bustos; Alberto G Fairén; Carlos González Silva; Daniel Carrizo; Miguel Ángel Fernández-Martínez; Cristián Arenas-Fajardo; Maite Fernández-Sampedro; Carolina Gil-Lozano; Laura Sánchez-García; Carmen Ascaso; Jacek Wierzchos; Elizabeth B Rampe
Journal:  Sci Rep       Date:  2020-11-05       Impact factor: 4.379

  2 in total

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