火星西耶泽洛扇锋上用于研究巨石起源的浮石多光谱观测

IF 3.9 1区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
B. S. Kathir, M. S. Rice, B. H. N. Horgan, L. Mandon, J. R. Johnson, K. M. Stack, A. P. Broz, N. Williams, N. Mangold, R. C. Wiens, J. I. Simon, C. C. Bedford, A. Bechtold, B. J. Garczynski, A. Vaughan, N. Randazzo, R. A. Yingst, S. A. Theuer, G. Paar, J. Martínez-Frías, J. I. Núñez, T. Fouchet
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引用次数: 0

摘要

在火星的耶泽洛陨石坑,“毅力号”探测车探索了西部扇形陨石坑,并遇到了从露头岩石或“漂浮”岩石中分离出来的松散岩石碎片。将浮岩与野外露头进行比较,可以提供对陨石坑侵蚀历史的关键见解,以及“毅力号”无法实地考察的耶泽罗流域单元的多样性。在这里,我们使用毅力号的mastcamera - z仪器的多光谱观测来研究在耶泽罗扇前缘西部(sols 415-707)发现的浮岩的岩性和起源。我们确定了四种结构类型的浮岩(砾岩、层状、块状和浅色),并研究了它们的物理特征、光谱特性和分布,以解释它们的来源和运输方式。砾岩和层状浮岩很可能来自于当地的沉积扇露头,它们在光谱上具有高度的变化,并具有不同的铁和铁特征。块状浮岩蚀变最小,具有铁元素特征,可能来自Jezero流域的局部露头源或更远的源(~ 50-250 km)。块状浮岩分为块状橄榄石亚类和块状辉石亚类,可能分别来自区域性含橄榄-碳酸盐岩分水岭单元和地壳诺阿契亚基底单元。独特的浅色浮岩水化程度不同,铁丰度较低,但在火山口底或扇前没有类似的局部露头,表明这些岩石是从耶泽罗以外的源区运入盆地的。毅力号在西部扇区没有发现陨石,这意味着扇区沉积物可能是根据陨石坑计数估计的最年轻的年代(Hesperian)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multispectral Observations of Float Rocks Used to Investigate the Origin of Boulders on the Western Jezero Fan Front, Mars

In Jezero crater, Mars, the Perseverance rover has explored the western fan and encountered loose pieces of rock separated from outcrops or “float” rocks. Comparing float rocks to in-place outcrops can provide key insights into the crater's erosional history and the diversity of units in the Jezero watershed that Perseverance cannot visit in situ. Here, we used multispectral observations from Perseverance's Mastcam-Z instrument to investigate the lithology and origin of float rocks found on the western Jezero fan front (sols 415–707). We identified four textural classes of float rocks (conglomerates, layered, massive, and light-toned) and investigated their physical characteristics, spectral properties, and distribution to interpret their source and mode of transport. Likely derived from local sedimentary fan outcrops, conglomerate and layered float rocks are highly spectrally variable and altered with differing ferric and ferrous signatures. Massive float rocks are the least altered with ferrous signatures and likely derived from local outcrop sources or more distal sources (∼50–250 km) in the Jezero watershed. Massive float rocks separate into two subclasses: massive olivine and massive pyroxene, which are likely derived from the regional olivine-carbonate-bearing watershed unit and the crustal Noachian basement unit, respectively. The unique light-toned float rocks have variable hydration and low Fe-abundance, but there is no local outcrop equivalent of these rocks on the crater floor or fan front, suggesting transport into the basin from a source region outside Jezero. Perseverance found no meteorites at the western fan, implying that fan sediments may be in the youngest ages estimated from crater counts (Hesperian).

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来源期刊
Journal of Geophysical Research: Planets
Journal of Geophysical Research: Planets Earth and Planetary Sciences-Earth and Planetary Sciences (miscellaneous)
CiteScore
8.00
自引率
27.10%
发文量
254
期刊介绍: The Journal of Geophysical Research Planets is dedicated to the publication of new and original research in the broad field of planetary science. Manuscripts concerning planetary geology, geophysics, geochemistry, atmospheres, and dynamics are appropriate for the journal when they increase knowledge about the processes that affect Solar System objects. Manuscripts concerning other planetary systems, exoplanets or Earth are welcome when presented in a comparative planetology perspective. Studies in the field of astrobiology will be considered when they have immediate consequences for the interpretation of planetary data. JGR: Planets does not publish manuscripts that deal with future missions and instrumentation, nor those that are primarily of an engineering interest. Instrument, calibration or data processing papers may be appropriate for the journal, but only when accompanied by scientific analysis and interpretation that increases understanding of the studied object. A manuscript that describes a new method or technique would be acceptable for JGR: Planets if it contained new and relevant scientific results obtained using the method. Review articles are generally not appropriate for JGR: Planets, but they may be considered if they form an integral part of a special issue.
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