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Sample Return from Ancient Hydrothermal SpringsHydrothermal spring deposits on Mars would make excellent candidates for sample return. Molecular phylogeny suggests that that life on Earth may have arisen in hydrothermal settings [1-3], and on Mars, such settings not only would have supplied energy-rich waters in which martian life may have evolved [4-7] but also would have provided warm, liquid water to martian life forms as the climate became colder and drier [8]. Since silica, sulfates, and clays associated with hydrothermal settings are known to preserve geochemical and morphological remains of ancient terrestrial life [9-11], such settings on Mars might similarly preserve evidence of martian life. Finally, because formation of hydrothermal springs includes surface and subsurface processes, martian spring deposits would offer the potential to assess astrobiological potential and hydrological history in a variety of settings, including surface mineralized terraces, associated stream deposits, and subsurface environments where organic remains may have been well protected from oxidation. Previous attempts to identify martian spring deposits from orbit have been general or limited by resolution of available data [12-14]. However, new satellite imagery from HiRISE has a resolution of 28 cm/pixel, and based on these new data, we have interpreted several features in Vernal Crater, Arabia Terra as ancient hydrothermal springs [15, 16].
Document ID
20080013167
Acquisition Source
Johnson Space Center
Document Type
Extended Abstract
Authors
Allen, Carlton C.
(NASA Johnson Space Center Houston, TX, United States)
Oehler, Dorothy Z.
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
August 24, 2013
Publication Date
January 1, 2008
Subject Category
Geophysics
Meeting Information
Meeting: Ground Truth from Mars: Science Payoff
Location: Albuquerque, NM
Country: United States
Start Date: April 21, 2008
End Date: April 23, 2008
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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