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The Galactic Center: The Largest Oxygen-bearing Organic Molecule Repository

机译:银河中心:最大的含氧有机分子库

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We present the first detection of complex aldehydes and isomers in three typical molecular clouds located within 200 pc of the center of our Galaxy. We find very large abundances of these complex organic molecules (COMs) in the Central Molecular Zone (CMZ), which we attribute to the ejection of COMs from grain mantles by shocks. The relative abundances of the different COMs with respect to that of CH3OH are strikingly similar for the three sources, which are located in very different environments in the CMZ. The similar relative abundances point toward a unique grain mantle composition in the CMZ. Studying the Galactic center clouds and objects in the Galactic disk having large abundances of COMs, we find that more saturated molecules are more abundant than the nonsaturated ones. We also find differences between the relative abundance between COMs in the CMZ and the Galactic disk, suggesting different chemical histories of the grain mantles between the two regions in the Galaxy for the complex aldehydes. Different possibilities for the grain chemistry on the icy mantles in the GC clouds are briefly discussed. Cosmic rays can play an important role in the grain chemistry. With these new detections, the molecular clouds in the Galactic center appear to be one of the best laboratories for studying the formation of COMs in the Galaxy.
机译:我们展示了首次检测到位于距银河系中心200 pc以内的三种典型分子云中的复杂醛和异构体。我们在中央分子区(CMZ)中发现了这些复杂有机分子(COMs)的大量存在,这归因于COMs通过冲击从谷粒地幔中弹出。相对于CH3OH而言,不同COM的相对丰度对于位于CMZ中非常不同的环境中的三个来源而言极为相似。相似的相对丰度指向CMZ中独特的谷幔组成。研究具有大量COM的银河盘中的银河中心云和物体,我们发现比非饱和分子更丰富的饱和分子。我们还发现CMZ和银河系盘中COM之间的相对丰度之间存在差异,这表明在银河系中两个区域之间,对于复杂的醛而言,地幔的化学历史不同。简要讨论了GC云中冰幔上的谷物化学作用的不同可能性。宇宙射线可以在谷物化学中发挥重要作用。通过这些新发现,银河系中心的分子云似乎是研究银河系中COM形成的最佳实验室之一。

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