Non-LTE modelling of cyanoacetylene: evidence for isomer-specific excitation

IF 4.8 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Monthly Notices of the Royal Astronomical Society Pub Date : 2020-12-14 DOI:10.1093/mnras/staa3821
C. Bop, F. Lique, A. Faure, E. Quintas-Sánchez, R. Dawes
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引用次数: 1

Abstract

Cyanoacetylene molecules are widespread in the interstellar medium (ISM) and several of its isomers have been detected in cold molecular clouds and circumstellar gas. Accurate estimates of the abundance ratio of cyanoacetylene isomers may provide deep insight into their environment. Such knowledge requires rigorous modelling of the emission spectra based on non-local thermodynamic equilibrium (LTE) radiative transfer calculations. To this end, we computed excitation cross-sections of HC2NC and HNC3 induced by collision with para- and ortho-H2, using a quantum mechanical close-coupling method. Then, by thermally averaging these data, we derived rate coefficients for the first 31 low-lying rotational levels of each isomer for temperatures up to 80 K. For the para-H2 collider, the propensity rules are in favour of rotational transitions involving Δj1 = 2 for both isomers, while for the ortho-H2 collider, Δj1 = 2 and Δj1 = 1 rotational transitions are favoured for HC2NC and HNC3, respectively. A comparison of rate coefficients for the HC3N isomers shows differences up to an order of magnitude, especially at low temperatures. Finally, we performed non-LTE radiative transfer calculations to assess the impact of such variations in the analysis of observations. Our simulation suggests that the lack of collisional data specific to each isomer could lead to errors up to a factor of 2–3 in the excitation temperatures. We expect that these data could help in better understanding the cyanoacetylene chemistry and constraining the nitrogen chemistry in the ISM.
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氰乙炔的非lte模型:异构体特异性激发的证据
氰基乙炔分子广泛存在于星际介质(ISM)中,其几种异构体已在冷分子云中和星周气体中被检测到。准确估计氰基乙炔异构体的丰度比可以深入了解其环境。这种知识需要基于非局部热力学平衡(LTE)辐射传输计算对发射光谱进行严格建模。为此,我们使用量子力学紧密耦合方法计算了HC2NC和HNC3与对位和邻位H2碰撞引起的激发截面。然后,通过对这些数据进行热平均,我们得出了每种异构体在高达80℃的温度下前31个低旋转能级的速率系数 K.对于对-H2对撞机,倾向规则有利于涉及两种异构体的Δj1=2的旋转跃迁,而对于正H2对撞机,HC2NC和HNC3分别有利于Δj1=2和Δj1=1的旋转跃迁。HC3N异构体的速率系数的比较显示出高达一个数量级的差异,尤其是在低温下。最后,我们进行了非LTE辐射传输计算,以评估这种变化对观测分析的影响。我们的模拟表明,缺乏每种异构体特有的碰撞数据可能会导致激发温度的误差高达2–3倍。我们希望这些数据有助于更好地理解氰基乙炔化学,并限制ISM中的氮化学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
9.10
自引率
37.50%
发文量
3198
审稿时长
3 months
期刊介绍: Monthly Notices of the Royal Astronomical Society is one of the world''s leading primary research journals in astronomy and astrophysics, as well as one of the longest established. It publishes the results of original research in positional and dynamical astronomy, astrophysics, radio astronomy, cosmology, space research and the design of astronomical instruments.
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