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An Experimental Approach to Inform Venus Astrobiology Mission Design and Science Objectives

机译:为金星天体生物学任务设计和科学目标提供信息的实验方法

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摘要

Exploring how life is distributed in the universe is an extraordinary interdisciplinary challenge, but increasingly subject to testable hypotheses. Biology has emerged and flourished on at least one planet, and that renders the search for life elsewhere a scientific question. We cannot hope to travel to exoplanets in pursuit of other life even if we identify convincing biosignatures, but we do have direct access to planets and moons in our solar system. It is therefore a matter of deep astrobiological interest to study their histories and environments, whether or not they harbor life, and better understand the constraints that delimit the emergence and persistence of biology in any context. In this perspective, we argue that targeted chemistry- and biology-inspired experiments are informative to the development of instruments for space missions, and essential for interpreting the data they generate. This approach is especially useful for studying Venus because if it were an exoplanet we would categorize it as Earth-like based on its mass and orbital distance, but its atmosphere and surface are decidedly not Earth-like. Here, we present a general justification for exploring the solar system from an astrobiological perspective, even destinations that may not harbor life. We introduce the extreme environments of Venus, and argue that rigorous and observation-driven experiments can guide instrument development for imminent missions to the Venusian clouds. We highlight several specific examples, including the study of organic chemistry under extreme conditions, and harnessing the fluorescent properties of molecules to make a variety of otherwise challenging measurements.
机译:探索生命在宇宙中的分布方式是一项非凡的跨学科挑战,但越来越多地受到可检验的假设的影响。生物学至少在一个星球上出现并蓬勃发展,这使得在其他地方寻找生命成为一个科学问题。即使我们确定了令人信服的生物特征,我们也不能指望前往系外行星寻找其他生命,但我们确实可以直接进入太阳系中的行星和卫星。因此,研究它们的历史和环境,无论它们是否孕育生命,并更好地了解在任何情况下界定生物学出现和持续存在的限制因素,都是一个具有深厚天体生物学兴趣的问题。从这个角度来看,我们认为,有针对性的化学和生物学启发的实验对于太空任务仪器的开发是有益的,并且对于解释它们产生的数据至关重要。这种方法对于研究金星特别有用,因为如果它是一颗系外行星,我们会根据它的质量和轨道距离将其归类为类地行星,但它的大气层和表面绝对不像地球。在这里,我们提出了一个从天体生物学角度探索太阳系的一般理由,即使是可能没有生命的目的地。我们介绍了金星的极端环境,并认为严格的观测驱动的实验可以指导即将到来的金星云任务的仪器开发。我们重点介绍了几个具体的例子,包括极端条件下的有机化学研究,以及利用分子的荧光特性进行各种具有挑战性的测量。

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