论文标题

维纳斯生活发现者可居住的使命:动机,科学目标和仪器

Venus Life Finder Habitability Mission: Motivation, Science Objectives, and Instrumentation

论文作者

Seager, Sara, Petkowski, Janusz J., Carr, Christopher E., Saikia, Sarag J., Agrawal, Rachana, Buchanan, Weston P., Grinspoon, David H., Weber, Monika U., Klupar, Pete, Worden, Simon P., Iakubivskyi, Iaroslav, Pajusalu, Mihkel, Kaasik, Laila

论文摘要

半个多世纪以来,科学家一直在考虑金星云中生命的潜在存在。未知的化学作品开放了一种可能性的可能性,即维纳斯气氛的某些区域是可居住的。用一组现代仪器套件可以确定云甲板是否具有支持生活所需的特征,因此可以确定云甲板的原位大气测量。关键的宜居性因子是云颗粒液滴酸度和云层水含量。我们设想了一个仪器套件,不仅可以测量液滴的酸度和水含量(及其可变性),而且还可以确认金属的存在以及生命代谢所需的其他非挥发性元素,还可以验证有机材料的存在,并寻找生物签名气体作为生命的迹象。我们提出了一个以天文学的使命,科学目标和工具,可以在大气探头上使用,降落伞持续约1小时(40至60 km),或者在表面上约52公里处运行的固定空气气球。后者依靠四个可部署的迷你探针来衡量下部云区域的可居住条件。通过确定云颗粒的子集是否非液体以及表征云颗粒的异质性,使任务加倍作为样本返回的准备,从而为返回地球的返回旅程提供了为样本收集和存储方法的通知。

For over half a century, scientists have contemplated the potential existence of life within the clouds of Venus. Unknown chemistry leaves open the possibility that certain regions of the Venusian atmosphere are habitable. In situ atmospheric measurements with a suite of modern instruments can determine whether the cloud decks possess the characteristics needed to support life as we know it. The key habitability factors are cloud particle droplet acidity and cloud-layer water content. We envision an instrument suite to measure not only the acidity and water content of the droplets (and their variability) but additionally to confirm the presence of metals and other non-volatile elements required for life's metabolism, verify the existence of organic material, and search for biosignature gases as signs of life. We present an astrobiology-focused mission, science goals, and instruments that can be used on both a large atmospheric probe with a parachute lasting about one hour in the cloud layers (40 to 60 km) or a fixed-altitude balloon operating at about 52 km above the surface. The latter relies on four deployable mini probes to measure habitability conditions in the lower cloud region. The mission doubles as a preparation for sample return by determining whether a subset of cloud particles is non-liquid as well as characterizing the heterogeneity of the cloud particles, thereby informing sample collection and storage methods for a return journey to Earth.

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