English

Gaseous CO Abundance---An Evolutionary Tracer for Molecular Clouds

Solar and Stellar Astrophysics 2013-10-11 v3 Astrophysics of Galaxies

Abstract

Planck cold clumps are among the most promising objects to investigate the initial conditions of the evolution of molecular clouds. In this work, by combing the dust emission data from the survey of Planck satellite with the molecular data of 12^{12}CO/13^{13}CO (1-0) lines from observations with the Purple Mountain Observatory (PMO) 13.7 m telescope, we investigate the CO abundance, CO depletion and CO-to-H2_{2} conversion factor of 674 clumps in the early cold cores (ECC) sample. The median and mean values of the CO abundance are 0.89×104\times10^{-4} and 1.28×104\times10^{-4}, respectively. The mean and median of CO depletion factor are 1.7 and 0.9, respectively. The median value of XCOtoH2X_{CO-to-H_{2}} for the whole sample is 2.8×10202.8\times10^{20} cm2^{-2}K1^{-1}km1^{-1} s. The CO abundance, CO depletion factor and CO-to-H2_{2} conversion factor are strongly (anti-)correlated to other physical parameters (e.g. dust temperature, dust emissivity spectral index, column density, volume density and luminosity-to-mass ratio). To conclude, the gaseous CO abundance can be used as an evolutionary tracer for molecular clouds.

Keywords

Cite

@article{arxiv.1306.0046,
  title  = {Gaseous CO Abundance---An Evolutionary Tracer for Molecular Clouds},
  author = {Tie Liu and Yuefang Wu and Huawei Zhang},
  journal= {arXiv preprint arXiv:1306.0046},
  year   = {2013}
}

Comments

20 pages, 4 figures, Accepted to ApJL

R2 v1 2026-06-22T00:26:13.036Z