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The astrobiological case for renewed robotic and human exploration of the Moon

机译:重新进行月球机器人和人类探索的天文生物学案例

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An ambitious programme of lunar exploration will reveal much of astrobiological interest. Examples include: (i) better characterization of the impact cratering rate in the Earth–Moon system, with implications for understanding the possible ‘impact frustration’ of the origin of life; (ii) preservation of ancient meteorites blasted off Earth, Mars and Venus, which may preserve evidence of the early surface environments of these planets, as well as constraining models of lithopanspermia; (iii) preservation of samples of the Earth's early atmosphere not otherwise available; (iv) preservation of cometary volatiles and organics in permanently shadowed polar craters, which would help elucidate the importance of these sources in ‘seeding’ the terrestrial planets with pre-biotic materials; and (v) possible preservation of extraterrestrial artefacts on the lunar surface, which may permit limits to be placed on the prevalence of technological civilizations in the Galaxy. Much of this valuable information is likely to be buried below the present surface (e.g. in palaeoregolith deposits) and will require a considerable amount of geological fieldwork to retrieve. This would be greatly facilitated by a renewed human presence on the Moon, and may be wholly impractical otherwise. In the longer term, such lunar operations would pave the way for the human exploration of Mars, which may also be expected to yield astrobiological discoveries not otherwise obtainable.
机译:雄心勃勃的月球探测计划将揭示许多天体生物学兴趣。实例包括:(i)更好地描述月球系统中撞击坑的发生率,对理解生命起源可能造成的“撞击挫败”具有影响; (ii)保护从地球,火星和金星喷出的古代陨石,这些陨石可能保留了这些行星早期表面环境的证据,并限制了石蛇怪的模型; (iii)保存地球早期大气样品,否则无法获得; (iv)在永久阴影的极地环形山中保存彗星挥发物和有机物,这将有助于阐明这些来源在用益生元材料“播种”地球行星中的重要性; (v)可能在月球表面保存外星人工制品,这可能会限制银河系中科技文明的普及。许多有价值的信息很可能被埋藏在目前的地表之下(例如,在古砾岩沉积物中),并且将需要大量的地质野外作业来进行检索。人类重新出现在月球上将大大促进这一点,否则可能是完全不切实际的。从长远来看,这种登月活动将为人类对火星的探索铺平道路,也有望产生其他无法获得的天体生物学发现。

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