谷神星:外源起源的富含有机物的地点?

IF 8.3 Q1 GEOSCIENCES, MULTIDISCIPLINARY
AGU Advances Pub Date : 2025-01-27 DOI:10.1029/2024AV001362
R. Sarkar, A. Nathues, M. Hoffmann, E. Cloutis, K. Mengel, P. Singh, G. Thangjam, J. Hernandez, S. Karunatillake, M. Coutelier
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引用次数: 0

摘要

谷神星是小行星带中最大的天体,也是内太阳系中唯一潜在的海洋世界。先前的研究发现,在埃尼特陨石坑及其周围,以及在伊纳玛哈里陨石坑和乌尔瓦拉陨石坑的一小块地方,都有脂肪族有机物的沉积物。在这些新鲜暴露中,有机物的来源,无论是内源性的还是外源性的,仍然存在争议。本研究通过分析有机质的全球分布和地质背景,探讨了有机质的起源。我们的第一步是在全球范围内寻找富含有机物的地方,这些地方可能逃过了以前的探测。我们通过使用深度神经网络,利用黎明号分幅相机的光谱红度多光谱数据来识别潜在的富含有机物的地点,从而实现了这一目标。利用红外光谱仪数据进一步研究了鉴定的位点,推断出具有光谱红度的物质的成分。在新发现的红坡地点中,只有两个可以确定是富含有机物的。我们还发现了光谱发红的地方,但在它们的红外光谱中没有任何有机物的特征。这些位置可归因于磁铁矿的水蚀变成含铁相。在Ernutet, Inamahari和Urvara,富含有机物的物质仅限于近地表。此外,这些地点缺乏构造/火山特征,使其内生成因存疑。可检测有机物的全球稀缺性也支持了这一评估。因此,我们认为这些地点的有机物最初是由来自主带的低速富有机质撞击物带来的,随后被挖掘出来,而不是来自内生过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Ceres: Organic-Rich Sites of Exogenic Origin?

Ceres: Organic-Rich Sites of Exogenic Origin?

Ceres: Organic-Rich Sites of Exogenic Origin?

Ceres: Organic-Rich Sites of Exogenic Origin?

Ceres: Organic-Rich Sites of Exogenic Origin?

Ceres, the largest object in the asteroid belt, is the only potential ocean world in the inner Solar System. Previous studies identified deposits of aliphatic organics in and around the Ernutet crater, and at small locations at Inamahari and Urvara craters. The origin of organics, either endogenic or exogenic, in these fresh exposures is still under debate. This study addresses the origin of the organics by analyzing their global distribution and geologic context. Our first step involved a global search for organic-rich sites that might have escaped previous detections. We achieved this by using a deep neural network, utilizing spectral redness in the Dawn's Framing Camera multispectral data to identify potential organic-rich sites. The identified sites were further studied by using IR spectrometer data to infer the compositions of materials showing spectral redness. Of the newly identified red-sloped sites, only two can be considered certain to be organic-rich. We also identified sites with spectral redness, but without any signature of organics in their infrared spectra. These sites could be attributed to the aqueous alteration of magnetite into ferric-iron bearing phases. At Ernutet, Inamahari, and Urvara, the organic-rich material is confined to the near surface only. Additionally, the absence of tectonic/volcanic features at these sites makes an endogenic origin questionable. The global rarity of detectable organics also supports this assessment. Consequently, we suggest that organics at these sites were originally delivered by low-velocity, organic-rich impactor(s) from the main belt and subsequently excavated, rather than originating from endogenous processes.

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CiteScore
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