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Field Simulation of a Drilling Mission to Mars to Search for Subsurface Life

C. Stoker, L. G. Lemke, Howard Cannon, B. Glass, Stephen E. Dunagan, J. Zavaleta, D.O. Miller, Javier Gómez‐Elvira

Year
2005
Citations
16

Abstract

The discovery of near surface ground ice by the Mars Odyssey mission and the abundant evidence for recent Gulley features observed by the Mars Global Surveyor mission support longstanding theoretical arguments for subsurface liquid water on Mars. Thus, implementing the Mars program goal to search for life points to drilling on Mars to reach liquid water, collecting samples and analyzing them with instrumentation to detect in situ organisms and biomarker compounds. Searching for life in the subsurface of Mars will require drilling, sample extraction and handling, and new technologies to find and identify biomarker compounds and search for living organisms. In spite of its obvious advantages, robotic drilling for Mars exploration is in its technological infancy and has yet to be demonstrated in even a terrestrial field environment.

Keywords

Mars Exploration ProgramLife on MarsAstrobiologyExploration of MarsDrillingExtraterrestrial lifeMars landingLiquid waterEarth scienceGeology

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