Herd Christopher D K, Bosak Tanja, Hausrath Elisabeth M, Hickman-Lewis Keyron, Mayhew Lisa E, Shuster David L, Siljeström Sandra, Simon Justin I, Weiss Benjamin P, Wadhwa Meenakshi, Zorzano Maria-Paz, Maki Justin N, Farley Kenneth A, Stack Kathryn M
Department of Earth and Atmospheric Sciences, University of Alberta, Edmonton, AB T6G 2E3, Canada.
Department of Earth, Atmospheric, and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, MA 02139.
Proc Natl Acad Sci U S A. 2025 Jan 14;122(2):e2404255121. doi: 10.1073/pnas.2404255121. Epub 2025 Jan 6.
The NASA Mars 2020 Perseverance Rover Mission has collected samples of rock, regolith, and atmosphere within the Noachian-aged Jezero Crater, once the site of a delta-lake system with a high potential for habitability and biosignature preservation. Between sols 109 and 1,088 of the mission, 27 sample tubes have been sealed, including witness tubes. Each sealed sample tube has been collected along with detailed documentation provided by the Perseverance instrument payload, preserving geological and environmental context. Samples representative of the stratigraphy within each of four campaigns have been collected: samples from the Crater Floor Campaign represent a suite of potentially petrogenetically related igneous rocks displaying variable degrees of aqueous alteration; samples from the Fan Front record fluvial to deltaic sediments formed by the transport and deposition of materials from the Jezero watershed; regolith samples from the Fan Front preserve material possibly representative of global dust as well as diverse, locally derived clasts; Upper Fan samples record the latest stages of aqueous activity within Jezero; and samples from the Margin Campaign preserve lacustrine, littoral, or possibly igneous processes that may have occurred early in the history of the crater. Along with anticipated samples from the older rocks within the rim of Jezero Crater, Perseverance promises to deliver a suite of samples preserving a diversity of formation environments and ages. Upon return to Earth and analysis in terrestrial laboratories, these samples would address longstanding questions pertaining to the geologic evolution of Mars, its habitability, and the potential for life outside the Earth.
美国国家航空航天局(NASA)的“火星2020毅力号”漫游车任务在诺亚纪时期的杰泽罗陨石坑内采集了岩石、风化层和大气样本,该陨石坑曾是一个三角洲湖泊系统所在地,具有很高的宜居性和生物特征保存潜力。在该任务的第109个火星日至第1088个火星日期间,包括见证管在内的27个样本管已被密封。每个密封的样本管在采集时都附带了“毅力号”仪器载荷提供的详细文件,以保留地质和环境背景信息。已采集了代表四个采集活动中每个活动地层的样本:来自陨石坑底部采集活动的样本代表了一组可能在成因上相关的火成岩,显示出不同程度的水蚀作用;来自扇前的样本记录了由杰泽罗流域物质的运输和沉积形成的从河流到三角洲的沉积物;来自扇前的风化层样本保存了可能代表全球尘埃以及各种本地来源碎屑的物质;上扇样本记录了杰泽罗内水活动的最后阶段;来自边缘采集活动的样本保存了可能在陨石坑历史早期发生的湖泊、滨海或火成过程。连同预期从杰泽罗陨石坑边缘较古老岩石中采集的样本一起,“毅力号”有望提供一组能够保留多种形成环境和年代的样本。这些样本返回地球并在地面实验室进行分析后,将解决与火星地质演化、宜居性以及地球以外生命可能性相关的长期问题。