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The chances of detecting life on Mars

机译:在火星上发现生命的机会

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摘要

Missions to Mars progressively reveal the past and present habitability of the red planet. The current priority for Mars science is the recognition of definitive biosignatures related to past or present life. Success of life detection missions requires choices of the best mission design, location on Mars and particular sample to be analyzed. It is essential therefore to incorporate as much information as possible into the mission planning stages to maximize the precious opportunities provided by robotic operation on Mars. Bayesian statistics allow us to accommodate the many unknowns associated with a mission that has yet to take place. We have used Bayesian statistics to reveal that although in situ missions are less complex the overall probabilities of a successful mission to detect biosignatures on Mars are higher for sample return. If a mission has been designed with safe landing and operation as a priority, recognizing and avoiding those samples that do not contain the target biosignature is the most important characteristic, while for a mission where the best possible samples have been targeted the probability that the sample contains the target biosignature and that it can be correctly detected is the most dominant issue. Usefully, Bayesian statistics can be used to evaluate the chances of detecting past or present life for missions to different landing sites on Mars. A comparative assessment of Eberswelde Crater and Gale Crater indicates a higher probability of success for the latter and the probabilities of success are consistently higher for the sample return mission variant. Bayesian statistics, therefore, can inform future Mars mission planning steps to help maximize the possibility of success. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:前往火星的任务逐渐揭示了红色星球的过去和现在的可居住性。火星科学目前的优先重点是认识与过去或现在的生活有关的确定性生物特征。成功的生命探测任务需要选择最佳的任务设计,在火星上的位置以及要分析的特定样品。因此,有必要将尽可能多的信息纳入任务计划阶段,以最大限度地利用火星上的机器人操作提供的宝贵机会。贝叶斯统计数据使我们能够适应与尚未执行的任务相关的许多未知数。我们使用贝叶斯统计数据来揭示,尽管原地飞行任务不那么复杂,但是成功完成飞行任务以探测火星上生物特征的总体概率更高,可以返回样品。如果以安全着陆和操作为优先重点设计任务,则识别和避免那些不包含目标生物特征的样本是最重要的特征,而对于以最佳样本为目标的任务,则该样本的概率为包含目标生物特征并且可以正确检测到它是最主要的问题。有用的是,贝叶斯统计数据可用于评估检测前往火星上不同着陆点的任务的过去或现在生活的机会。对Eberswelde Crater和Gale Crater的比较评估表明,后者成功的可能性较高,而样本返回任务的成功概率始终较高。因此,贝叶斯统计数据可以为火星未来的任务计划步骤提供信息,以帮助最大程度地提高成功的可能性。 (C)2015作者。由Elsevier Ltd.发布

著录项

  • 来源
    《Planetary and space science》 |2015年第7期|15-22|共8页
  • 作者单位

    Univ London Imperial Coll Sci Technol & Med, Dept Earth Sci & Engn, Impacts & Astromat Res Ctr, London SW7 2AZ, England;

    Univ London Imperial Coll Sci Technol & Med, Dept Earth Sci & Engn, Impacts & Astromat Res Ctr, London SW7 2AZ, England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mars; Astrobiology; Exobiology; Mars surface;

    机译:火星;天体生物学;外生物学;火星表面;

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