molecules:ism:c-c3c2h

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molecules:ism:c-c3c2h [2022/07/19 10:20] muellermolecules:ism:c-c3c2h [2022/07/19 10:38] mueller
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  C. Cabezas, M. Agúndez, R. Fuentetaja, Y. Endo, N. Marcelino, B. Tercero, J. R. Pardo, P. de Vicente, and J. Cernicharo\\  C. Cabezas, M. Agúndez, R. Fuentetaja, Y. Endo, N. Marcelino, B. Tercero, J. R. Pardo, P. de Vicente, and J. Cernicharo\\
 reported on the\\ reported on the\\
-**[[https://doi.org/10.1051/0004-6361/202040013|Space and laboratory discovery of HC<sub>3</sub>S<sup>+</sup>]]**\\+**[[https://doi.org/10.1051/0004-6361/202244063|Discovery of the Cyclic C<sub>5</sub>H Radical in TMC-1]]**\\
 //Astron Astrophys.// **663**, Art. No. L2 (2022).\\ //Astron Astrophys.// **663**, Art. No. L2 (2022).\\
-The //J"// = to 8 transitions between 32.and 49.GHz were detected in the course of a molecular line survey of the prototypical cold dark molecular cloud TMC-1 carried out with the Yebes 40 m radio telescope. The identity was confirmed through laboratory measurements. The C<sub>3</sub>to HC<sub>3</sub>S<sup>+</sup> ratio is 65 ± 20, and the HC<sub>3</sub>O<sup>+</sup> to HC<sub>3</sub>S<sup>+</sup> ratio is 1.0 ± 0.5. The C<sub>3</sub>to C<sub>3</sub>ratio, in contrast, is ~0.11.+Transitions with //J"// = to 6 and //K<sub>a</sub>// = 1 between 33.and 46.GHz were detected in the course of a molecular line survey of the prototypical cold dark molecular cloud TMC-1 carried out with the Yebes 40 m radio telescope. Fine structure splitting was resolved throughout, hyperfine splitting in many cases. The rotational temperature was determined as 6.0 ± 0.5 K. The //c//-C<sub>5</sub>to //l//-C<sub>5</sub>ratio is about 0.07, very different from the //c//-C<sub>3</sub>to //l//-C<sub>3</sub>ratio of ~5.5.
  
  
  • molecules/ism/c-c3c2h.txt
  • Last modified: 2022/07/19 10:39
  • by mueller