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Scientific Value of Including an Atmospheric Sample as Part of Mars Sample Return (MSR)The Perseverance rover is meant to collect samples of the martian surface for eventual return to Earth. The headspace gas present over the solid samples within the sample tubes will be of significant scientific interest for what it reveals about the interactions of the solid samples with the trapped atmosphere and for what it will reveal about the martian atmosphere itself. However, establishing the composition of the martian atmosphere will require other dedicated samples. The headspace gas as the sole atmospheric sample is problematic for many reasons. The quantity of gas present within the sample tube volume is insufficient for many investigations, and there will be exchange between solid samples, headspace gas, and tube walls. Importantly, the sample tube materials and preparation were not designed for optimal Mars atmospheric gas collection and storage as they were not sent to Mars in a degassed evacuated state and have been exposed to both Earth's and Mars' atmospheres. Additionally, there is a risk of unconstrained seal leakage in transit back to Earth, which would allow fractionation of the sample (leak-out) and contamination (leak-in). The science return can be improved significantly (and, in some cases, dramatically) by adding one or more of several strategies listed here in increasing order of effectiveness and difficulty of implementation: (1) Having Perseverance collect a gas sample in an empty sample tube, (2) Collecting gas in a newly-designed, valved, sample-tube-sized vessel that is flown on either the Sample Fetch Rover (SFR) or the Sample Retrieval Lander (SRL), (3) Adding a larger (50-100 cc) dedicated gas sampling volume to the Orbiting Sample container (OS), (4) Adding a larger (50-100 cc) dedicated gas sampling volume to the OS that can be filled with compressed martian atmosphere.
Document ID
20210019067
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
Timothy D. Swindle
(University of Arizona Tucson, Arizona, United States)
Sushil Atreya
(University of Michigan–Ann Arbor Ann Arbor, Michigan, United States)
Henner Busemann ORCID
(ETH Zurich Zurich, Switzerland)
Julia A. Cartwright
(University of Alabama, Tuscaloosa Tuscaloosa, Alabama, United States)
Paul Mahaffy
(Goddard Space Flight Center Greenbelt, Maryland, United States)
Bernard Marty
(University of Lorraine Nancy, France)
Andreas Pack
(University of Göttingen Göttingen, Germany)
Suzanne P. Schwenzer
(The Open University Milton Keynes - United Kingdom)
Date Acquired
July 23, 2021
Publication Date
May 19, 2022
Publication Information
Publication: Astrobiology
Publisher: Mary Ann Liebert, Inc.
Volume: 22
Issue: S1
Issue Publication Date: June 2, 2022
ISSN: 1531-1074
e-ISSN: 1557-8070
Subject Category
Lunar And Planetary Science And Exploration
Exobiology
Funding Number(s)
WBS: 829688.01.03.03
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
Professional Review
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