Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mounds in Oxia Planum: The Burial and Exhumation of the ExoMars Rover Landing Site

View through CrossRef
AbstractOxia Planum, the planned landing site of the ExoMars “Rosalind Franklin” rover, is a low relief clay‐bearing plain, of which approximately 1% is covered by 396 upstanding isolated landforms (“mounds”). The mounds are continuous with a circum‐Chryse mound population representing the remnants of a regionally significant Noachian‐aged deposit. This detailed study suggests that the Oxia Planum mounds are also erosional remnants of this deposit, with little evidence to suggest they are constructional landforms such as sedimentary volcanoes. We calculate that up to 130 m of mound‐forming material has been removed from the landing site through erosion. The mound‐forming layer lies unconformably on the clay‐bearing plains with the upper surface severely truncated by significant erosion resulting in the topography we see today. The mounds themselves comprise at least three members, distinct in color and texture, separated stratigraphically by further unconformities. Calculated minimum erosion/deposition rates of the removed mound material are comparable to previous Noachian estimates, suggesting a more erosive (and probably therefore warmer and/or wetter) environment than today. The clay‐bearing materials which remain buried directly under the mounds have been continually protected from the Martian environment since the Noachian, and are likely to represent some of the most pristine clay‐rich materials in the landing site. By inference, the plains directly adjacent to the mounds are most likely to have been exposed for less time than areas further from the mounds. These are therefore amongst the most likely locations where Rosalind Franklin could sample recently exposed materials and hence detect biosignatures.
Title: Mounds in Oxia Planum: The Burial and Exhumation of the ExoMars Rover Landing Site
Description:
AbstractOxia Planum, the planned landing site of the ExoMars “Rosalind Franklin” rover, is a low relief clay‐bearing plain, of which approximately 1% is covered by 396 upstanding isolated landforms (“mounds”).
The mounds are continuous with a circum‐Chryse mound population representing the remnants of a regionally significant Noachian‐aged deposit.
This detailed study suggests that the Oxia Planum mounds are also erosional remnants of this deposit, with little evidence to suggest they are constructional landforms such as sedimentary volcanoes.
We calculate that up to 130 m of mound‐forming material has been removed from the landing site through erosion.
The mound‐forming layer lies unconformably on the clay‐bearing plains with the upper surface severely truncated by significant erosion resulting in the topography we see today.
The mounds themselves comprise at least three members, distinct in color and texture, separated stratigraphically by further unconformities.
Calculated minimum erosion/deposition rates of the removed mound material are comparable to previous Noachian estimates, suggesting a more erosive (and probably therefore warmer and/or wetter) environment than today.
The clay‐bearing materials which remain buried directly under the mounds have been continually protected from the Martian environment since the Noachian, and are likely to represent some of the most pristine clay‐rich materials in the landing site.
By inference, the plains directly adjacent to the mounds are most likely to have been exposed for less time than areas further from the mounds.
These are therefore amongst the most likely locations where Rosalind Franklin could sample recently exposed materials and hence detect biosignatures.

Related Results

ExoMars/Rosalind Franklin Mission Update
ExoMars/Rosalind Franklin Mission Update
Finding signs of life elsewhere is one of the most important scientific objectives of our time.From the very beginning in 2002, ExoMars was conceived to answer one question:&#1...
Experimental approach to understand mineralogy and aqueous alteration history of Oxia Planum, ExoMars 2020 landing site
Experimental approach to understand mineralogy and aqueous alteration history of Oxia Planum, ExoMars 2020 landing site
<p>In 2020, ESA/ROSCOSMOS will launch ExoMars2020 rover mission to Mars. The selected landing site for the mission is Oxia Planum, a wide Noachian-aged clay mineral-b...
Hydrated silica in Oxia Planum, Mars
Hydrated silica in Oxia Planum, Mars
Oxia Planum, Mars, is the future landing site of ESA’s ExoMars Rosalind Franklin rover (EMRF, launching 2028), which will search for physical and chemical biosignatures a...
ExoMars-2020 Landing Platform scientific payload
ExoMars-2020 Landing Platform scientific payload
<p>ExoMars is a joint project between ESA and Roscosmos to develop and launch two ExoMars missions - in 2016 and 2020. The first mission is currently in progress, stu...
Post Landing Operations of Lander and Rover - In Orbit Experiences
Post Landing Operations of Lander and Rover - In Orbit Experiences
In any lunar landing mission, there comes an opportunity to demonstrate the safe and soft landing of lander on the lunar surface. The Lander module in turn carries the Rover which ...
Rover testing for lunar science and innovation
Rover testing for lunar science and innovation
REMMI,  Rover for EuroMoonMars Investigations has been built at EMMIHS campaign in HI-SEAS Hawaii in 2019 and teleoperated locally and from The Netherlands. For EuroMoonMa...
Illumination conditions on Phobos for the MMX rover mission
Illumination conditions on Phobos for the MMX rover mission
IntroductionIn preparation of the Phobos Rover experiment as part of JAXA’s Mars Moon eXplorer (MMX) mission, we study the illumination conditions on the Martian moon, fo...

Back to Top