首页    期刊浏览 2024年10月06日 星期日
登录注册

文章基本信息

  • 标题:A sensitive λ 3 mm line survey of L483
  • 其他标题:A broad view of the chemical composition of a core around a Class 0 object★★★
  • 本地全文:下载
  • 作者:M. Agúndez ; N. Marcelino ; J. Cernicharo
  • 期刊名称:Astronomy & Astrophysics
  • 印刷版ISSN:0004-6361
  • 电子版ISSN:1432-0746
  • 出版年度:2019
  • 卷号:625
  • DOI:10.1051/0004-6361/201935164
  • 语种:English
  • 出版社:EDP Sciences
  • 摘要:An exhaustive chemical characterization of dense cores is mandatory to our understanding of chemical composition changes from a starless to a protostellar stage. However, only a few sources have had their molecular composition characterized in detail. Here we present aλ3 mm line survey of L483, a dense core around a Class 0 protostar, which was observed with the IRAM 30 m telescope in the 80–116 GHz frequency range. We detected 71 molecules (140 including different isotopologs), most of which are present in the cold and quiescent ambient cloud according to their narrow lines (FWHM~ 0.5 km s−1) and low rotational temperatures (≲10 K). Of particular interest among the detected molecules are thecisisomer of HCOOH, the complex organic molecules HCOOCH3, CH3OCH3, and C2H5OH, a wide variety of carbon chains, nitrogen oxides like N2O, and saturated molecules like CH3SH, in addition to eight new interstellar molecules (HCCO, HCS, HSC, NCCNH+, CNCN, NCO, H2NCO+, and NS+) whose detection has already been reported. In general, fractional molecular abundances in L483 are systematically lower than in TMC-1 (especially for carbon chains), tend to be higher than in L1544 and B1-b, and are similar to those in L1527. Apart from the overabundance of carbon chains in TMC-1, we find that L483 does not have a marked chemical differentiation with respect to starless/prestellar cores like TMC-1 and L1544, although it does chemically differentiate from Class 0 hot corino sources like IRAS 16293−2422. This fact suggests that the chemical composition of the ambient cloud of some Class 0 sources could be largely inherited from the dark cloud starless/prestellar phase. We explore the use of potential chemical evolutionary indicators, such as the HNCO/C3S, SO2/C2S, and CH3SH/C2S ratios, to trace the prestellar/protostellar transition. We also derived isotopic ratios for a variety of molecules, many of which show isotopic ratios close to the values for the local interstellar medium (remarkably all those involving34S and33S), while there are also several isotopic anomalies like an extreme depletion in13C for one of the two isotopologs ofc-C3H2, a drastic enrichment in18O for SO and HNCO (SO being also largely enriched in17O), and different abundances for the two13C substituted species of C2H and the two15N substituted species of N2H+. We report the first detection in space of some minor isotopologs likec-C3D. The exhaustive chemical characterization of L483 presented here, together with similar studies of other prestellar and protostellar sources, should allow us to identify the main factors that regulate the chemical composition of cores along the process of formation of low-mass protostars.
  • 关键词:Key wordsenastrochemistryline: identificationISM: cloudsISM: moleculesradio lines: ISM
国家哲学社会科学文献中心版权所有