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ORIGIN OF MOLECULAR OXYGEN IN COMET 67P/CHURYUMOV-GERASIMENKO

机译:COMET 67P / CHURYUMOV-GERASIMENKO中的分子氧起源

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Molecular oxygen has been detected in the coma of comet 67P/Churyumov-Gerasimenko with abundances in the 1%-10% range by the Rosetta Orbiter Spectrometer for Ion and Neutral Analysis-Double Focusing Mass Spectrometer instrument on board the Rosetta spacecraft. Here we find that the radiolysis of icy grains in low-density environments such as the presolar cloud may induce the production of large amounts of molecular oxygen. We also show that molecular oxygen can be efficiently trapped in clathrates formed in the protosolar nebula (PSN), and that its incorporation as crystalline ice is highly implausible, because this would imply much larger abundances of Ar and N-2 than those observed in the coma. Assuming that radiolysis has been the only O-2 production mechanism at work, we conclude that the formation of comet 67P/Churyumov-Gerasimenko is possible in a dense and early PSN in the framework of two extreme scenarios: (1) agglomeration from pristine amorphous icy grains/particles formed in ISM and (2) agglomeration from clathrates that formed during the disk's cooling. The former scenario is found consistent with the strong correlation between O-2 and H2O observed in comet 67P/Churyumov-Gerasimenko's coma while the latter scenario requires that clathrates formed from ISM icy grains that crystallized when entering the PSN.
机译:在Rosetta航天器上,用于离子和中性分析的Rosetta轨道仪,双聚焦质谱仪已在彗星67P / Churyumov-Gerasimenko彗星昏迷中检测到了分子氧,其丰度在1%-10%范围内。在这里,我们发现冰粒在低密度环境(例如前太阳云)中的辐射分解可能会诱导大量分子氧的产生。我们还表明,分子氧可以有效地捕集在原生质云(PSN)中形成的包合物中,并且将其作为结晶冰掺入是高度不可行的,因为这意味着Ar和N-2的丰度比在冰中观测到的大得多。昏迷。假设辐射分解是唯一起作用的O-2产生机制,我们得出结论,在两种极端情况的框架下,在密集和早期的PSN中可能形成67P / Churyumov-Gerasimenko彗星:(1)原始无定形团聚ISM中形成的冰粒/颗粒;(2)磁盘冷却期间形成的包合物形成团聚。发现前一种情况与在67P / Churyumov-Gerasimenko彗星彗星中观察到的O-2和H2O之间的强相关性是一致的,而后一种情况则要求由进入PSN时结晶的ISM冰晶形成的包合物。

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