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谷神星上的有机物质:来自可见光和红外空间观测的见解。

Organic Material on Ceres: Insights from Visible and Infrared Space Observations.

作者信息

Raponi Andrea, De Sanctis Maria Cristina, Giacomo Carrozzo Filippo, Ciarniello Mauro, Rousseau Batiste, Ferrari Marco, Ammannito Eleonora, De Angelis Simone, Vinogradoff Vassilissa, Castillo-Rogez Julie C, Tosi Federico, Frigeri Alessandro, Formisano Michelangelo, Zambon Francesca, Raymond Carol A, Russell Christopher T

机构信息

Istituto Nazionale di Astrofisica-Istituto di Astrofisica e Planetologia Spaziali, 00133 Rome, Italy.

Agenzia Spaziale Italiana, 00133 Rome, Italy.

出版信息

Life (Basel). 2020 Dec 24;11(1):9. doi: 10.3390/life11010009.

Abstract

The NASA/Dawn mission has acquired unprecedented measurements of the surface of the dwarf planet Ceres, the composition of which is a mixture of ultra-carbonaceous material, phyllosilicates, carbonates, organics, Fe-oxides, and volatiles as determined by remote sensing instruments including the VIR imaging spectrometer. We performed a refined analysis merging visible and infrared observations of Ceres' surface for the first time. The overall shape of the combined spectrum suggests another type of silicate not previously considered, and we confirmed a large abundance of carbon material. More importantly, by analyzing the local spectra of the organic-rich region of the Ernutet crater, we identified a reddening in the visible range, strongly correlated to the aliphatic signature at 3.4 µm. Similar reddening was found in the bright material making up Cerealia Facula in the Occator crater. This implies that organic material might be present in the source of the faculae, where brines and organics are mixed in an environment that may be favorable for prebiotic chemistry.

摘要

美国国家航空航天局(NASA)的“黎明号”任务获取了矮行星谷神星表面前所未有的测量数据。通过包括VIR成像光谱仪在内的遥感仪器测定,谷神星的成分是超碳质材料、层状硅酸盐、碳酸盐、有机物、铁氧化物和挥发物的混合物。我们首次对谷神星表面的可见光和红外观测数据进行了精细分析合并。合成光谱的整体形状表明存在一种此前未被考虑的硅酸盐类型,并且我们证实了大量碳物质的存在。更重要的是,通过分析埃尔努泰特撞击坑富含有机物区域的局部光谱,我们在可见光范围内发现了一种红化现象,这与3.4微米处的脂肪族特征强烈相关。在奥卡托撞击坑构成谷神星亮斑的明亮物质中也发现了类似的红化现象。这意味着亮斑的来源中可能存在有机物质,在那里盐水和有机物在一个可能有利于益生元化学的环境中混合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d349/7823631/393197380bc8/life-11-00009-g001.jpg

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