An ESA Robotic Package to Search for Life on Mars
Francès Westall, André Brack, Paul Clancy, Beda A. Hofmann, G. Horneck, G. Kurat, Jennifer Maxwell, G. G. Ori, C. T. Pillinger, F. Raulin
Abstract
Francès Westall, André Brack, Paul Clancy, Beda A. Hofmann, G. Horneck, G. Kurat, Jennifer Maxwell, G. G. Ori, C. T. Pillinger, F. Raulin
Abstract
Similarities in the early histories of Mars and Earth suggest that life may have arisen on Mars as it did on Earth. The early life forms on Mars were probably simple organisms, similar to terrestrial prokaryotes. In fact, given the early deterioration of the Martian climate, it is unlikely that life on Mars could ever have reached more sophisticated evolution. Based on the present knowledge of Mars, the possibility of extant life at the surface is small. However, given the adaptability of terrestrial prokaryotes under adverse conditions, it is not excluded. Any extant life is hypothesized to reside in the permafrost in a dormant state until reanimated by impact-caused hydrothermal activity. Using this rationale, a group of European scientists worked together to conceive a hypothetical strategy to search for life on Mars. A possible configuration for a lander/rover is outlined.
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Similarities in the early histories of Mars and Earth suggest that life may have arisen on Mars as it did on Earth. The early life forms on Mars were probably simple organisms, similar to terrestrial prokaryotes. In fact, given the early deterioration of the Martian climate, it is unlikely that life on Mars could ever have reached more sophisticated evolution. Based on the present knowledge of Mars, the possibility of extant life at the surface is small. However, given the adaptability of terrestrial prokaryotes under adverse conditions, it is not excluded. Any extant life is hypothesized to reside in the permafrost in a dormant state until reanimated by impact-caused hydrothermal activity. Using this rationale, a group of European scientists worked together to conceive a hypothetical strategy to search for life on Mars. A possible configuration for a lander/rover is outlined.
Key concepts: Life on Mars, Mars Exploration Program, Astrobiology, Extant taxon, Martian, Adaptability, Exploration of Mars, Early Earth