PRECISE OBSERVATIONS OF THE 12C/13C RATIOS OF HC3N IN THE LOW-MASS STAR-FORMING REGION L1527

ABSTRACT Using the Green Bank 100 m telescope and the Nobeyama 45 m telescope, we have observed the rotational emission lines of the three 13C isotopic species of HC3N in the 3 and 7 mm bands toward the low-mass star-forming region L1527 in order to explore their anomalous 12C/13C ratios. The column...

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Veröffentlicht in:The Astrophysical journal 2016-12, Vol.833 (2)
Hauptverfasser: Araki, Mitsunori, Takano, Shuro, Sakai, Nami, Yamamoto, Satoshi, Oyama, Takahiro, Kuze, Nobuhiko, Tsukiyama, Koichi
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Sprache:eng
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Zusammenfassung:ABSTRACT Using the Green Bank 100 m telescope and the Nobeyama 45 m telescope, we have observed the rotational emission lines of the three 13C isotopic species of HC3N in the 3 and 7 mm bands toward the low-mass star-forming region L1527 in order to explore their anomalous 12C/13C ratios. The column densities of the 13C isotopic species are derived from the intensities of the J = 5-4 lines observed at high signal-to-noise ratios. The abundance ratios are determined to be 1.00:1.01 0.02:1.35 0.03:86.4 1.6 for [H13CCCN]:[HC13CCN]:[HCC13CN]:[HCCCN], where the errors represent one standard deviation. The ratios are very similar to those reported for the starless cloud Taurus Molecular Cloud-1 Cyanopolyyne Peak (TMC-1 CP). These ratios cannot be explained by thermal equilibrium, but likely reflect the production pathways of this molecule. We have shown the equality of the abundances of H13CCCN and HC13CCN at a high-confidence level, which supports the production pathways of HC3N via C2H2 and . The average 12C/13C ratio for HC3N is 77 4, which may be only slightly higher than the elemental 12C/13C ratio. Dilution of the 13C isotope in HC3N is not as significant as that in CCH or c-C3H2. We have also simultaneously observed the DCCCN and HCCC15N lines and derived the isotope ratios [DCCCN]/[HCCCN] = 0.0370 0.0007 and [HCCCN]/[HCCC15N] = 338 12.
ISSN:0004-637X
1538-4357
DOI:10.3847/1538-4357/833/2/291