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CARBON MONOXIDE IN COMET 9P/TEMPEL 1 BEFORE AND AFTER THE DEEP IMPACT ENCOUNTER

机译:深撞击之前和之后,COMET 9P / TEMPEL 1中的一氧化碳

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One of the goals of the Hubble Space Telescope program to observe periodic comet 9P/Tempel 1 in conjunction with NASA's Deep Impact mission was to study the generation and evolution of the gaseous coma resulting from the impact. For this purpose, the Solar Blind Channel of the Advanced Camera for Surveys was used with the F140LP filter, which is sensitive primarily to the ultraviolet emission ( ≥ 1400 A) from the CO fourth positive system. Following the impact we detected an increase in brightness, which if all due to CO corresponds to 1.5 x 10~(31) molecules, or a mass of 6.6 x 10~5 kg, an amount that would normally be produced by 7-10 hours of quiescent outgassing from the comet. This number is ≤ 10% of the number of water molecules excavated and suggests that the volatile content of the material excavated by the impact did not differ significantly from the surface or near-subsurface material responsible for the quiescent outgassing of the comet.
机译:哈勃太空望远镜计划与美国国家航空航天局(NASA)的“深撞击”任务一起观测9P / Tempel 1彗星的目标之一,就是研究撞击产生的气态昏迷的产生和演化。为此,F140LP滤光片使用了高级测量相机的太阳盲通道,该滤光片主要对来自CO第四阳性系统的紫外线(≥1400 A)敏感。撞击之后,我们检测到亮度增加,如果全部归因于CO,则亮度增加了1.5 x 10〜(31)分子,或者质量为6.6 x 10〜5 kg,通常在7-10个小时后就会产生彗星的静态排气。该数量≤挖掘出的水分子数量的10%,这表明通过撞击挖掘出的物质的挥发性含量与造成彗星静态脱气的表面或近地下物质没有显着差异。

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