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首页> 外文期刊>The astronomical journal >Probing the Evolutionary History of Comets: An Investigation of the Hypervolatiles CO, CH4, and C2H6 in the Jupiter-family Comet 21P/Giacobini–Zinner
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Probing the Evolutionary History of Comets: An Investigation of the Hypervolatiles CO, CH4, and C2H6 in the Jupiter-family Comet 21P/Giacobini–Zinner

机译:探讨彗星的进化历史:杂草型CO,CH4和C2H6在木偶族彗星21p / giacobini-zinner的研究

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Understanding the cosmogonic record encoded in the parent volatiles stored in cometary nuclei requires investigating whether evolution (thermal or otherwise) has modified the composition of short-period comets during successive perihelion passages.As the most volatile molecules systematically observed in comets, the abundances of CO, CH4, and C2H6 in short-period comets may serve to elucidate the interplay between natal conditions and post-formative evolution in setting present-day composition, yet secure measurements of CO and CH4 in Jupiter-family comets (JFCs) are especially sparse.The highly favorable 2018 apparition of JFC 21P/Giacobini–Zinner enabled a sensitive search for these "hypervolatiles" in a prototypical carbon-chain depleted comet.We observed 21P/Giacobini–Zinner with the iSHELL spectrograph at the NASA Infrared Telescope Facility on four pre-perihelion dates, two dates near-perihelion, and one post-perihelion date.We obtained detections of CO, CH4, and C2H6 simultaneously with H2O on multiple dates.We present rotational temperatures, production rates, and mixing ratios.Combined with previous work, our results may indicate that the hypervolatile coma composition of 21P/Giacobini–Zinner was variable across apparitions as well as within a particular perihelion passage, yet the spread in these measurements is a relatively small fraction of the variation in each molecule from comet to comet.We discuss the implications of our measured hypervolatile content of 21P/Giacobini–Zinner for the evolution of JFCs, and place our results in the context of findings from the Rosetta mission and ground-based studies of comets.
机译:了解储存在组织核中的父挥发物中编码的宇宙动力学记录需要研究进化(热或其他)是否在连续的渐变通道期间改变了短周期彗星的组成。在彗星中系统地观察到最挥发性的分子,CO的丰富在短周期彗星中,CH 4和C2H6可以用于阐明现场条件和形成当天组成的形成后形成的相互作用,但木质酸族彗星(JFCS)中的CO和CH4的CO和CH4的施加测量特别稀疏。 JFC 21P / Giacobini-Zinner的高度优惠2018幻觉使得在原型碳链耗尽彗星中的这些“超挥手”的敏感性搜索.WE观察到的21p / giacobini-zinner,在NASA红外望远镜设施上的ISHELL光谱仪在四个前-perihelion日期,两个近期临近的日期,以及一个临时后的日期。我们获得了CO,CH4和C2H6同步的检测在多个日期上含有H2O .WE呈现旋转温度,生产率和混合比率。通过以前的工作,我们的结果可能表明21p / giacobini-zinner的超型彗态组成在幻影中以及特定的透镜中的变化通过,这些测量中的传播是从彗星到彗星的每个分子中的变化的相对较小的分数。我们讨论了我们测量的21p / giacobini-zinner的测量的超型含量为JFC的演变,并将我们的结果放入罗斯塔特派团的调查结果和彗星地基研究的背景。

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