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Chemistry of the Solar System Revealed in the Interiors of the Giant Planets

机译:太阳系的化学在巨大的行星内部透露

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The giant planets of our solar system contain a record of elemental and isotopic ratios of keen interest for what they tell us about the origin of the planets and in particular the volatile compositions of the solid phases. In situ measurements of the Jovian atmosphere performed by the Galileo Probe during its descent in 1995 demonstrate the unique value of such a record, but limited currently by the unknown abundance of oxygen in the interior of Jupiter-a gap planned to be filled by the Juno mission set to arrive at Jupiter in July of 2016. Our lack of knowledge of the oxygen abundance allows for a number of models for the Jovian interior with a range of C/O ratios. The implications for the origin of terrestrial water are briefly discussed. The complementary data sets for Saturn may be obtained by a series of very close, nearly polar orbits, at the end of the Cassini-Huygens mission in 2016-2017, and the proposed Saturn Probe. This set can only obtain what we have for Jupiter if the Saturn Probe mission carries a microwave radiometer.
机译:我们的太阳系的巨大行星含有元素和同位素比率的记录,对他们告诉我们行星的起源以及实体阶段的挥发性组成来说。原位测量由伽利略探针在1995年下降期间进行的Jovian气氛展示了这种记录的独特价值,但目前由木星内部的未知丰富氧气的有限公司 - 计划被朱诺填补的差距使命设定于2016年7月抵达木星。我们对氧气的缺乏了解允许Jovian内部的许多模型具有一系列C / O比率。简要讨论了对陆地水来源的影响。土星的互补数据集可以通过一系列非常接近的,几乎极性的轨道来获得2016 - 2017年Cassini-Huygens Mission结束,以及所提出的Saturn探测器。如果Saturn探测器任务带有微波辐射计,则此集合只能获取Jupiter的内容。

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