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A Subsurface Soil Composition and Physical Properties Experiment to Address Mars Regolith StratigraphyPrevious in-situ measurements of soil-like materials on the surface of Mars, in particular during the on-going Mars Exploration Rover missions, have shown complex relationships between composition, exposure to the surface environment, texture, and local rocks. In particular, a diversity in both compositional and physical properties could be established that is interpreted to be diagnostic of the complex geologic history of the martian surface layer. Physical and chemical properties vary laterally and vertically, providing insight into the composition of rocks from which soils derive, and environmental conditions that led to soil formation. They are central to understanding whether habitable environments existed on Mars in the distant past. An instrument the Mole for Soil Compositional Studies and Sampling (MOCSS) - is proposed to allow repeated access to subsurface regolith on Mars to depths of up to 1.5 meters for in-situ measurements of elemental composition and of physical and thermophysical properties, as well as for subsurface sample acquisition. MOCSS is based on the compact PLUTO (PLanetary Underground TOol) Mole system developed for the Beagle 2 lander and incorporates a small X-ray fluorescence spectrometer within the Mole which is a new development. Overall MOCSS mass is approximately 1.4 kilograms. Taken together, the MOCSS science data support to decipher the geologic history at the landing site as compositional and textural stratigraphy if they exist - can be detected at a number of places if the MOCSS were accommodated on a rover such as MSL. Based on uncovered stratigraphy, the regional sequence of depositional and erosional styles can be constrained which has an impact on understanding the ancient history of the Martian near-surface layer, considering estimates of Mars soil production rates of 0.5... 1.0 meters per billion years on the one hand and Mole subsurface access capability of approximately 1.5 meters. An overview of the MOCSS, XRS instrument accomodation and the impact that these instruments have on Mars science is discussed.
Document ID
20040191786
Acquisition Source
Headquarters
Document Type
Conference Paper
Authors
Richter, L.
(Deutsche Forschungsanstalt fuer Luft- und Raumfahrt Cologne, Germany)
Sims, M.
(Leicester Univ. United Kingdom)
Economou, T.
(Chicago Univ. Chicago, IL, United States)
Stoker, C.
(NASA Ames Research Center Moffett Field, CA, United States)
Wright, I.
(Open Univ.)
Tokano, T.
(Cologne Univ. Germany)
Date Acquired
September 7, 2013
Publication Date
January 1, 2004
Publication Information
Publication: Second Conference on Early Mars: Geologic, Hydrologic, and Climatic Evolution and the Implications for Life
Subject Category
Lunar And Planetary Science And Exploration
Distribution Limits
Public
Copyright
Public Use Permitted.
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