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火星样本返回:从一个宜居世界采集样本到样本管理

Mars Sample Return: From collection to curation of samples from a habitable world.

作者信息

McCubbin Francis M, Farley Kenneth A, Harrington Andrea D, Hutzler Aurore, Smith Caroline L

机构信息

Astromaterials Research and Exploration Science Division, NASA Johnson Space Center, Houston, TX 77058.

Jet Propulsion Laboratory/California Institute of Technology, Pasadena, CA 91109.

出版信息

Proc Natl Acad Sci U S A. 2025 Jan 14;122(2):e2404253121. doi: 10.1073/pnas.2404253121. Epub 2025 Jan 6.

Abstract

NASA's Mars 2020 mission has initiated collection of samples from Mars' Jezero Crater, which has a wide range of ancient rocks and rock types from lavas to lacustrine sedimentary rocks. The Mars Sample Return (MSR) Campaign, a joint effort between NASA and ESA, aims to bring the Perseverance collection back to Earth for intense scientific investigation. As the first return of samples from a habitable world, there are important challenges to overcome for the successful implementation of the MSR Campaign from the point of sample collection on Mars to the long-term curation of the samples on Earth. In particular, the successful execution of planetary protection protocols adds well-warranted complexity to every step of the process from the two MSR Program flight elements to the ground element at the sample receiving facility (SRF). In this contribution, we describe the architecture of the MSR Campaign, with a focus on infrastructure needs for the curation (i.e., the clean storage, processing, and allocation) of pristine Martian samples. Curation is a science-enabling and planetary protection-enabling activity, and the curation practices described in this contribution for the SRF and any long-term curation facility will enable the sample safety assessment, initial scientific investigations of the samples, and establish the MSR collection as a scientific resource that will enable generations of science and discovery through studies of the returned Mars samples. The planetary protection and curation processes established for MSR will provide critical insights into potential future sample return missions from other habitable worlds like Enceladus and Europa.

摘要

美国国家航空航天局(NASA)的“火星2020”任务已开始从火星的杰泽罗陨石坑采集样本,该陨石坑有种类繁多的古老岩石和岩石类型,从熔岩到湖相沉积岩。火星样本返回(MSR)行动是NASA和欧洲航天局(ESA)的一项联合努力,旨在将“毅力号”采集的样本带回地球进行深入的科学研究。作为首次从宜居世界返回样本,从在火星上采集样本到在地球上对样本进行长期管理,要成功实施MSR行动面临着诸多重要挑战需要克服。特别是,行星保护协议的成功执行给从MSR计划的两个飞行元素到样本接收设施(SRF)的地面元素这一过程的每一步都增添了合理的复杂性。在本文中,我们描述了MSR行动的架构,重点关注原始火星样本管理(即清洁存储、处理和分配)所需的基础设施。管理是一项有助于科学研究和行星保护的活动,本文中描述的针对SRF和任何长期管理设施的管理实践将有助于对样本进行安全评估、开展样本的初步科学研究,并将MSR样本集确立为一种科学资源,通过对返回的火星样本进行研究,能够推动几代人的科学研究和发现。为MSR建立的行星保护和管理流程将为未来从其他宜居世界(如土卫二和木卫二)返回样本的潜在任务提供关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1b5/11745348/717403213761/pnas.2404253121fig01.jpg

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