English

Dynamical timescale of precollapse evolution inferred from chemical distribution in the Taurus Molecular Cloud-1 (TMC-1) filament

Astrophysics of Galaxies 2017-04-26 v1

Abstract

We present observations and analysis of the low-mass star-forming region, Taurus Molecular Cloud-1 (TMC-1). CS (JJ=2-1)/N2_2H+^+ (JJ=1-0) and C17^{17}O (JJ=2-1)/C18^{18}O (JJ=2-1) were observed with FCRAO (Five College Radio Astronomy Observatory) and SRAO (Seoul Radio Astronomy Observatory), respectively. In addition, Spitzer infrared data and 1.2 mm continuum data observed with MAMBO (Max-Planck Millimetre Bolometer) are used. We also perform chemical modeling to investigate the relative molecular distributions of the TMC-1 filament. Based on Spitzer observations, there is no young stellar object along the TMC-1 filament, while five Class II and one Class I young stellar objects are identified outside the filament. The comparison between column densities calculated from dust continuum and C17^{17}O 2-1 line emission shows that CO is depleted much more significantly in the ammonia peak than in the cyanopolyyne peak, while the column densities calculated from the dust continuum are similar at the two peaks. N2_2H+^+ is not depleted much in either peak. According to our chemical calculation, the differential chemical distribution in the two peaks can be explained by different timescales required to reach the same density, i.e., by different dynamical processes.

Keywords

Cite

@article{arxiv.1703.10260,
  title  = {Dynamical timescale of precollapse evolution inferred from chemical distribution in the Taurus Molecular Cloud-1 (TMC-1) filament},
  author = {Yunhee Choi and Jeong-Eun Lee and Tyler L. Bourke and Neal J. Evans},
  journal= {arXiv preprint arXiv:1703.10260},
  year   = {2017}
}

Comments

19 pages, 8 figures, accepted for publication in ApJS