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首页> 外文期刊>The Astrophysical journal >POLYCYCLIC AROMATIC HYDROCARBONS IN DENSE CLOUD CHEMISTRY
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POLYCYCLIC AROMATIC HYDROCARBONS IN DENSE CLOUD CHEMISTRY

机译:稠密化学中的多环芳烃

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摘要

Virtually all detailed gas-phase models of the chemistry of dense interstellar clouds exclude polycyclic aromatic hydrocarbons (PAHs), This omission is unfortunate because from the few studies that have been done on the subject, it is known that the inclusion of PAHs can affect the gas-phase chemistry strongly. We have added PAHs to our network to determine the role they play in the chemistry of cold dense cores. Initially, only the chemistry of neutral and negatively charged PAH species was considered, since it was assumed that positively charged PAHs are of little importance. Subsequently, this assumption was checked and confirmed. In the models presented here, we include radiative attachment to form PAH~-, mutual neutralization between PAH anions and small positively charged ions, and photo-detachment. We also test the sensitivity of our results to changes in the size and abundance of the PAHs. Our results confirm that the inclusion of PAHs changes many of the calculated abundances of smaller species considerably. In TMC-1, the general agreement with observations is significantly improved, unlike in L134N. This may indicate a difference in PAH properties between the two regions. With the inclusion of PAHs in dense cloud chemistry, high-metal elemental abundances give a satisfactory agreement with observations. As a result, we do not need to decrease the observed elemental abundances of all metals, and we do not need to vary the elemental C/O ratio in order to produce large abundances of carbon species in TMC-1 (CP).
机译:几乎所有关于星际密集云化学的详细气相模型都排除了多环芳烃(PAHs),这一遗漏是不幸的,因为从针对该主题所做的少量研究中,知道PAHs的加入会影响气相化学反应强烈。我们已将PAH添加到我们的网络中,以确定它们在冷致密芯化学中的作用。最初,仅考虑中性和带负电的PAH的化学性质,因为假定带正电的PAH重要性不高。随后,对该假设进行了检查和确认。在此处介绍的模型中,我们包括辐射附着以形成PAH〜-,PAH阴离子与小的带正电的离子之间的相互中和以及光分离。我们还测试了结果对PAHs大小和丰度变化的敏感性。我们的结果证实,PAHs的加入会大大改变许多较小物种的计算丰度。与L134N不同,在TMC-1中,与观察结果的总体一致性得到了显着改善。这可能表明两个区域之间的PAH特性有所不同。通过在密云化学中包含多环芳烃,高金属元素的丰度与观测值令人满意。因此,我们不需要降低所有金属的元素丰度,也不需要改变元素C / O比例即可在TMC-1(CP)中产生大量的碳。

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