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首页> 外文期刊>Astronomy and astrophysics >Probing non-polar interstellar molecules through their protonated form: Detection of protonated cyanogen (NCCNH+)
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Probing non-polar interstellar molecules through their protonated form: Detection of protonated cyanogen (NCCNH+)

机译:通过质子化形式探查非极性星际分子:检测质子化氰(NCCNH +)

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摘要

Cyanogen (NCCN) is the simplest member of the series of dicyanopolyynes. It has been hypothesized that this family of molecules can be important constituents of interstellar and circumstellar media, although the lack of a permanent electric dipole moment prevents its detection through radioastronomical techniques. Here we present the first solid evidence of the presence of cyanogen in interstellar clouds by detection of its protonated form toward the cold dark clouds TMC-1 and L483. Protonated cyanogen (NCCNH+) has been identified through the J = 5?4 and J = 10?9 rotational transitions using the 40 m radiotelescope of Yebes and the IRAM 30 m telescope. We derive beam-averaged column densities for NCCNH+ of (8.6 ± 4.4) × 1010 cm-2 in TMC-1 and (3.9 ± 1.8) × 1010 cm-2 in L483, which translate into fairly low fractional abundances relative to H2, in the range (1–10) × 10-12. The chemistry of protonated molecules in dark clouds is discussed, and it is found that, in general terms, the abundance ratio between the protonated and non-protonated forms of a molecule increases with increasing proton affinity. Our chemical model predicts an abundance ratio NCCNH+/NCCN of ~10-4, which implies that the abundance of cyanogen in dark clouds could be as high as (1–10) × 10-8 relative to H2, i.e., comparable to that of other abundant nitriles such as HCN, HNC, and HC3N.
机译:氰基(NCCN)是双氰基聚炔系列中最简单的成员。假设该分子家族可以是星际和星际介质的重要组成部分,尽管缺乏永久的电偶极矩阻止了其通过放射天文技术进行检测。在这里,我们通过检测朝向冷暗云TMC-1和L483的质子化形式,提供了星际云中氰存在的第一个可靠证据。通过使用Yebes的40 m射电望远镜和30 m的IRAM望远镜,通过J = 5?4和J = 10?9旋转跃迁,已经鉴定出质子化的氰化物(NCCNH +)。我们得出NMCNH +在TMC-1中为(8.6±4.4)×1010 cm-2和在L483中为(3.9±1.8)×1010 cm-2的平均束密度,相对于H2,这转化为相当低的分数丰度。范围(1-10)×10-12。讨论了乌云中质子化分子的化学性质,发现,一般而言,分子的质子化形式和非质子化形式之间的丰度比随质子亲和力的增加而增加。我们的化学模型预测NCCNH + / NCCN的丰度比约为10-4,这意味着相对于H2,暗云中氰的丰度可能高达(1-10)×10-8。其他丰富的腈,例如HCN,HNC和HC3N。

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