Physical materials from planetary bodies are crucial for understanding fundamental processes that constrain the evolution of the solar system, as samples can be analyzed at high precision and accuracy in Earth-based laboratories. Mars is the only planet outside of Earth from which we possess samples in the form of meteorites. Martian meteorites (n > 350) have enabled constraints to be placed on various aspects of the red planet’s formation and evolution, notably: that Mars accreted and differentiated rapidly; that the planet has a complex volatile element evolution; and that it has always been volcanically active with a rich and diverse magmatic history. Meteorites have limitations, however, with lack of field context, restricted lithological diversity compared to the martian surface, and with no sampling of a major portion of Mars’ history between 4.1 and 2.4 billion years ago. Returned samples from Mars have the potential to fill these gaps and answer many open questions driven by the study of meteorites, as well as reveal new fundamental research questions. Key questions that Mars Sample Return is likely to answer regard the basic evolution of the martian interior and surface, its potential for habitability and the possibility of past life, and calibration of age dating of the martian surface. Samples of various lithologies and different ages collected at Jezero crater by the Perseverance rover will aid in better understanding our own planet and will answer outstanding questions regarding Mars’ future geological evolution and habitability.
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机译:来自行星体的物理材料对于理解限制太阳系演化的基本过程至关重要,因为在地球实验室中可以高精度和准确度分析样品。火星是地球之外唯一拥有陨石样本的行星。火星陨石(n > 350)使这颗红色星球的形成和演化的各个方面都受到了限制,特别是:火星迅速吸积和分化;地球具有复杂的挥发性元素演化;它一直都是火山活跃的,岩浆历史丰富多样。然而,陨石有局限性,缺乏现场背景,与火星表面相比,岩性多样性有限,并且没有对 4.1 至 24 亿年前火星历史的主要部分进行采样。从火星返回的样本有可能填补这些空白,回答由陨石研究驱动的许多悬而未决的问题,并揭示新的基础研究问题。火星样本返回可能回答的关键问题涉及火星内部和表面的基本演变、宜居潜力和过去生活的可能性,以及火星表面年龄测年的校准。毅力号火星车在 Jezero 陨石坑收集的各种岩性和不同年龄的样本将有助于更好地了解我们自己的星球,并将回答有关火星未来地质演变和宜居性的悬而未决的问题。
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