English

SMA observations of C2H in High-Mass Star Forming Regions

Solar and Stellar Astrophysics 2015-08-06 v1 Astrophysics of Galaxies

Abstract

C2_2H is a representative hydrocarbon that is abundant and ubiquitous in the interstellar medium (ISM). To study its chemical properties, we present Submillimeter Array (SMA) observations of the C2_2H N=32N=3-2 and HC3_3N J=3029J=30-29 transitions and the 1.1 mm continuum emission toward four OB cluster-forming regions, AFGL 490, ON 1, W33 Main, and G10.6-0.4, which cover a bolometric luminosity range of \sim103^3--106^6 LL_{\odot}. We found that on large scales, the C2_2H emission traces the dense molecular envelope. However, for all observed sources, the peaks of C2_2H emission are offset by several times times 104^4 AU from the peaks of 1.1 mm continuum emission, where the most luminous stars are located. By comparing the distribution and profiles of C2_2H hyperfine lines and the 1.1 mm continuum emission, we find that the C2_2H column density (and abundance) around the 1.1 mm continuum peaks is lower than those in the ambient gas envelope. Chemical models suggest that C2_2H might be transformed to other species owing to increased temperature and density; thus, its reduced abundance could be the signpost of the heated molecular gas in the \sim104^4 AU vicinity around the embedded high-mass stars. Our results support such theoretical prediction for centrally embedded 103\sim10^3--106L10^6L_{\odot} OB star-forming cores, while future higher-resolution observations are required to examine the C2_2H transformation around the localized sites of high-mass star formation.

Keywords

Cite

@article{arxiv.1507.04205,
  title  = {SMA observations of C2H in High-Mass Star Forming Regions},
  author = {Xue-Jian Jiang and Hauyu Baobab Liu and Qizhou Zhang and Junzhi Wang and Zhi-Yu Zhang and Juan Li and Yu Gao and Qiusheng Gu},
  journal= {arXiv preprint arXiv:1507.04205},
  year   = {2015}
}

Comments

10 pages, 6 figures. ApJ accepted. Comments welcome