【2h】

The prebiotic molecules observed in the interstellar gas

机译:星际气体中观察到的益生元分子

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摘要

Over 130 molecules have been identified in the interstellar gas and circumstellar shells, the largest among them is a carbon chain with 13 atoms and molecular weight of 147 (twice that of the simplest amino acid glycine). The high reliability of astronomical identifications, as well as the fairly accurate quantitative analysis which can often be achieved, is emphasized. Glycine itself has been claimed, but a recent analysis indicates that few, if any, of the astronomical radio lines attributed to glycine are actually from that molecule. Polycyclic aromatic hydrocarbons (PAHs) have long been proposed as the source of the unidentified infrared bands between 3 and 16 μm, but no single PAH has been identified in space, partly because PAHs generally have weak or non-existent radio spectra. A remarkable exception is the non-planar corannulene molecule (C20H10) that has a strong radio spectrum; in the rich molecular cloud TMC-1, it is found that less than 10−5 of the carbon is contained in this molecule, suggesting that PAHs are not the dominant large molecules in the interstellar gas, as has been claimed. Owing to inherent spectroscopic limitations, determining the structures of the large molecules in space may require capture of the dust grains, which are continually entering the outer Solar System.
机译:在星际气体和星际壳中已鉴定出130多个分子,其中最大的分子是碳链,具有13个原子,分子量为147(是最简单的氨基酸甘氨酸的两倍)。强调了天文鉴定的高可靠性以及经常可以实现的相当准确的定量分析。甘氨酸本身已被声称,但最近的分析表明,归因于甘氨酸的天文无线电线很少(如果有的话)实际上来自该分子。长期以来,人们一直提议将多环芳烃(PAH)用作3至16μm之间未识别的红外波段的来源,但在空间中尚未鉴定出单个PAH,部分原因是PAH通常具有弱的或不存在的无线电光谱。一个显着的例外是具有强光谱的非平面氢化萘环分子(C20H10)。在富分子云TMC-1中,发现该分子中所含的碳少于10 −5 ,这表明PAHs不是星际气体中占主导地位的大分子。被要求。由于固有的光谱学限制,确定空间中大分子的结构可能需要捕获不断进入外部太阳系的尘埃颗粒。

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