在TMC-1的GOTHAM观测中发现七环多环芳烃氰冠烯(C24H11CN)

Gabi Wenzel, Siyuan Gong, Ci Xue, P. Bryan Changala, Martin S. Holdren, Thomas H. Speak, D. Archie Stewart, Zachary T. P. Fried, Reace H. J. Willis, Edwin A. Bergin, Andrew M. Burkhardt, Alex N. Byrne, Steven B. Charnley, Andrew Lipnicky, Ryan A. Loomis, Christopher N. Shingledecker, Ilsa R. Cooke, Michael C. McCarthy, Anthony J. Remijan, Alison E. Wendlandt and Brett A. McGuire
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引用次数: 0

摘要

利用激光烧蚀辅助腔增强傅里叶变换微波光谱仪合成了七环多环芳烃(PAH)氰冠烯(C24H11CN)并进行了实验室旋转光谱分析。在6.8 GHz和10.6 GHz之间共测量和分配了71个跃迁。利用这些分配,我们在绿岸望远镜(GBT)对TMC-1的观测中寻找了氰冠烯的发射:狩猎芳香分子项目利用100米GBT对冷暗分子云TMC-1的观测。我们在超灵敏的x波段观测中检测到许多单独分辨的跃迁,并执行马尔可夫链蒙特卡罗分析以获得最佳拟合参数,包括温度为k时的总柱密度。光谱叠加和匹配滤波分析为整体检测提供了17.3σ显著性。衍生的柱密度与氰基取代萘、苊和芘相当,与碳链随着分子大小和复杂性的增加而减少丰度的趋势相反。我们讨论了探测对我们理解星际多环芳烃化学的影响,并强调了主要的开放问题和下一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discovery of the Seven-ring Polycyclic Aromatic Hydrocarbon Cyanocoronene (C24H11CN) in GOTHAM Observations of TMC-1
We present the synthesis and laboratory rotational spectroscopy of the seven-ring polycyclic aromatic hydrocarbon (PAH) cyanocoronene (C24H11CN) using a laser-ablation-assisted cavity-enhanced Fourier transform microwave spectrometer. A total of 71 transitions were measured and assigned between 6.8 and 10.6 GHz. Using these assignments, we searched for emission from cyanocoronene in the Green Bank Telescope (GBT) Observations of TMC-1: Hunting Aromatic Molecules project observations of the cold dark molecular cloud TMC-1 using the 100 m GBT. We detect a number of individually resolved transitions in ultrasensitive X-band observations and perform a Markov Chain Monte Carlo analysis to derive best-fit parameters, including a total column density of at a temperature of K. A spectral stacking and matched filtering analysis provides a robust 17.3σ significance to the overall detection. The derived column density is comparable to that of cyano-substituted naphthalene, acenaphthylene, and pyrene, defying the trend of decreasing abundance with increasing molecular size and complexity found for carbon chains. We discuss the implications of the detection for our understanding of interstellar PAH chemistry and highlight major open questions and next steps.
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