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Glaciopanspermia: Seeding the terrestrial planets with life?

机译:冰川泛花症:用生命播种陆地行星吗?

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The question whether life originated on Earth or elsewhere in the solar system has no obvious answer, since Earth was sterilized by the Moon-forming impact and possibly also during the LHB, about 700 Ma after the formation of the solar system. Seeding by lithopanspermia has to be considered. Possible sources of life include Earth itself, Mars, Venus (if it had a more benign climate than today) and icy bodies of the solar system. The first step of lithopanspermia is the ejection of fragments of the surface into space, which requires achieving at least escape velocity. As the velocity distribution of impact ejecta falls off steeply, attention is drawn to bodies with lower escape velocities. Ceres has had, or still has, an ocean more than 100 km deep, with hydrothermal activity at its rocky core. The possible presence of life, its relative closeness to the terrestrial planets and Ceres' low escape velocity of 510 m/s suggest that Ceres could well be a parent body for life in the solar system. Icy impact ejecta - hence glaciopanspermia - from Ceres will be subject to evaporation of volatiles. Spores may be loosened by evaporation and enter the atmospheres of the terrestrial planets as micrometeorites. The seeding of the terrestrial planets from Ceres would result in (1) detection of life in the crustal layers of Ceres; (2) a commonality of Cerean life with Terran and possible Martian and Venusian life and (3) biomarkers of Cerean life, which might be found in the ice at the Moon's poles and on the surface of other main belt asteroids.
机译:生命起源于地球还是太阳系中其他地方的问题没有明显的答案,因为地球是由形成月球的撞击以及在LHB期间(太阳系形成后约700 Ma)进行了消毒的。必须考虑由紫草精子播种。可能的生命来源包括地球本身,火星,金星(如果它的气候比今天更温和)和太阳系的冰冷体。精子症的第一步是将表面的碎片喷射到太空中,这至少需要达到逃逸速度。随着撞击弹射的速度分布急剧下降,人们注意到了逃逸速度较低的物体。谷神星已经或仍然有一个深度超过100公里的海洋,其岩心处有热液活动。生命的可能存在,它与陆地行星的相对亲密关系以及谷神星的510 m / s的低逃逸速度表明,谷神星很可能是太阳系生命的母体。来自谷神星的冰冷冲击喷射物-因此是冰川泛精症-将蒸发挥发物。孢子可能会因蒸发而松散,并以微陨石的形式进入地球的大气层。从谷神星播种地球行星将导致(1)在谷神星地壳中发现生命; (2)塞人生命与人族的共性以及可能的火星和金星生命,以及(3)塞人生命的生物标记,可能在月球两极的冰中以及其他主要带小行星的表面上发现。

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