molecules:ism:cyanonaphtalin

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molecules:ism:cyanonaphtalin [2021/04/13 12:00] muellermolecules:ism:cyanonaphtalin [2022/03/08 15:18] (current) mueller
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-===== On the Detection of CyanonaphtaleneC11H7CN, in the ISM =====+===== On the Detection of CyanonaphtalenesC<sub>11</sub>H<sub>7</sub>CN, in the ISM =====
  
 B. A. McGuire, R. A. Loomis, A. M. Burkhardt, K. L. K. Lee, C. N. Shingledecker, S. B. Charnley, I. R. Cooke, M. A. Cordiner, E. Herbst, S. Kalenskii, M. A. Siebert, E. R. Willis, C. Xue, A. J. Remijan, M. C. McCarthy\\ B. A. McGuire, R. A. Loomis, A. M. Burkhardt, K. L. K. Lee, C. N. Shingledecker, S. B. Charnley, I. R. Cooke, M. A. Cordiner, E. Herbst, S. Kalenskii, M. A. Siebert, E. R. Willis, C. Xue, A. J. Remijan, M. C. McCarthy\\
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 **[[https://doi.org/10.1126/science.abb7535|Detection of two interstellar polycyclic aromatic hydrocarbons via spectral matched filtering]]**\\ **[[https://doi.org/10.1126/science.abb7535|Detection of two interstellar polycyclic aromatic hydrocarbons via spectral matched filtering]]**\\
 //Science// **371**, 1265−1269 (2021).\\ //Science// **371**, 1265−1269 (2021).\\
-The observations were obtained in the course of the line survey Green Bank Telescope Observations of TMC-1: Hunting for Aromatic Molecules. The data were recorded with very high resolution which resolves, at least in part, the complex velocity structure and the <sup>14</sup>N hyperfine structure splitting. The molecules 1-cyanonaphtalene and 2-cyanonaphtalene were indentified through line-stacking with good signal-to-noise ratios. In fact, after additional observations carried out in the review process, the S/Ns of some lines of 1-cyanonaphtalene were good enough to be identified individually after modest smoothing. Apparently "poly" starts in English with 2. Both molecules are obviously not hydrobarbons, but simple hydrocarbon derivatives.\\+The observations were obtained in the course of the line survey Green Bank Telescope Observations of TMC-1: Hunting for Aromatic Molecules. The data were recorded with very high resolution which resolves, at least in part, the complex velocity structure and the <sup>14</sup>N hyperfine structure splitting. The molecules 1-cyanonaphtalene and 2-cyanonaphtalene were indentified through line-stacking with good signal-to-noise ratios. In fact, after additional observations carried out in the review process, the S/Ns of some lines of 1-cyanonaphtalene were good enough to be identified individually after modest smoothing. Both molecules are obviously not hydrocarbons, but simple hydrocarbon derivatives.\\
  
  
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