论文标题

红外有机物在彗星核上的红外检测

Infrared detection of aliphatic organics on a cometary nucleus

论文作者

Raponi, A., Ciarniello, M., Capaccioni, F., Mennella, V., Filacchione, G., Vinogradoff, V., Poch, O., Beck, P., Quirico, E., De Sanctis, M. C., Moroz, L., Kappel, D., Erard, S., Bockelée-Morvan, D., Longobardo, A., Tosi, F., Palomba, E., Combe, J. -P., Rousseau, B., Arnold, G., Carlson, R. W., Pommerol, A., Pilorget, C., Fornasier, S., Bellucci, G., Barucci, A., Mancarella, F., Formisan, M., Rinaldi, G., Istiqomah, I., Leyrat, C.

论文摘要

ESA Rosetta任务已获得了彗星67/p-churyumov-Gerasimenko(以下67p)核表面的前所未有的测量,其组成,由原位和远程感应仪器确定,包括Virtis(包括可见的,红外和热成像仪),似乎是由一个组成的材料和机器人制造的。我们对Virtis-M高光谱成像仪进行的彗星67P核的红外观测进行了精致分析。我们发现,67p红外光谱的整体形状与其他富含碳的外部太阳系对象相似,暗示了可能与它们建立遗传联系。更重要的是,我们还能够确认宽2.8-3.6微米吸收特征的复杂频谱结构,该特征由淡淡的带。其中,我们明确地通过无处不在的3.38、3.42和3.47微米带鉴定出脂肪族有机物的存在。这种新型的红外检测在彗星表面上对原始太阳系的进化历史具有很大的影响,并提供了彗星在星际材料和太阳系体之间提供进化联系的证据。

The ESA Rosetta mission has acquired unprecedented measurements of comet 67/P-Churyumov-Gerasimenko (hereafter 67P) nucleus surface, whose composition, as determined by in situ and remote sensing instruments including VIRTIS (Visible, InfraRed and Thermal Imaging Spectrometer) appears to be made by an assemblage of ices, minerals, and organic material. We performed a refined analysis of infrared observations of the nucleus of comet 67P carried out by the VIRTIS-M hyperspectral imager. We found that the overall shape of the 67P infrared spectrum is similar to that of other carbon-rich outer solar system objects suggesting a possible genetic link with them. More importantly, we are also able to confirm the complex spectral structure of the wide 2.8-3.6 micron absorption feature populated by fainter bands. Among these, we unambiguously identified the presence of aliphatic organics by their ubiquitous 3.38, 3.42 and 3.47 micron bands. This novel infrared detection of aliphatic species on a cometary surface has strong implications for the evolutionary history of the primordial solar system and give evidence that comets provide an evolutionary link between interstellar material and solar system bodies.

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