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Astrobiology of Comets

机译:彗星的天体生物学

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摘要

We review the current state of knowledge concerning microbial extremophiles and comets and the potential significance of comets to Astrobiology. We model the thermal history of a cometary body, regarded as an assemblage of boulders, dust, ices and organics, as it approaches a perihelion distance of~ 1AU. The transfer of incident energy from sunlight into the interior leads to the melting of near surface ices, some under stable porous crust, providing possible habitats for a wide range of microorganisms. We provide data concerning new evidence for indigenous microfossils in CI meteorites, which may be the remains of extinct cometary cores. We discuss the dominant microbial communities of polar sea-ice, Antarctic ice sheet, and cryoconite environments as possible analogs for microbial ecosystems that may grow in sub-crustal pools or in ice/water films in comets.
机译:我们回顾了有关微生物极端微生物和彗星的知识的现状以及彗星对天体生物学的潜在意义。我们模拟了一个彗星体的热历史,当它接近〜1AU的近日点距离时,被认为是巨石,灰尘,冰和有机物的集合。太阳光将入射能量转移到内部会导致近地表冰融化,有些会在稳定的多孔硬壳下融化,从而为多种微生物提供了可能的栖息地。我们提供有关CI陨石中本地微化石的新证据的数据,而这些可能是已灭绝的彗核的遗迹。我们讨论了极地海冰,南极冰盖和冰冻土环境的主要微生物群落,作为微生物生态系统的可能类似物,这些微生物生态系统可能会在亚壳池或彗星的冰/水膜中生长。

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