English

The C$^{18}$O core mass function toward Orion A: Single-dish observations

Astrophysics of Galaxies 2021-04-14 v1 Solar and Stellar Astrophysics

Abstract

We have performed an unbiased dense core survey toward the Orion A Giant Molecular Cloud in the C18^{18}O (JJ=1--0) emission line taken with the Nobeyama Radio Observatory (NRO) 45-m telescope. The effective angular resolution of the map is 26", which corresponds to \sim 0.05 pc at a distance of 414 pc. By using the Herschel-Planck H2_2 column density map, we calculate the C18^{18}O fractional abundance and find that it is roughly constant over the column density range of \lesssim 5 ×\times 1022^{22} cm3^{-3}, although a trend of C18^{18}O depletion is determined toward higher column density. Therefore, C18^{18}O intensity can follow the cloud structure reasonably well. The mean C18^{18}O abundance in Orion A is estimated to be 5.7×\times107^{-7}, which is about 3 times larger than the fiducial value. We identified 746 C18^{18}O cores with astrodendro and classified 709 cores as starless cores. We compute the core masses by decomposing the Herschel-Planck dust column density using the relative proportions of the C18^{18}O integrated intensities of line-of-sight components. Applying this procedure, we attempt to remove the contribution of the background emission, i.e., the ambient gas outside the cores. Then, we derived mass function for starless cores and found that it resembles the stellar initial mass function (IMF). The CMF for starless cores, dN/dMdN/dM, is fitted with a power-law relation of MαM^\alpha with a power index of α=\alpha = -2.25±\pm 0.16 at the high-mass slope (\gtrsim 0.44 MM_\odot). We also found that the ratio of each core mass to the total mass integrated along the line of sight is significantly large. Therefore, in the previous studies, the core masses derived from the dust image are likely to be overestimated at least by a factor of a few. Accordingly, such previous studies may underestimate the star formation efficiency of individual cores.

Keywords

Cite

@article{arxiv.2103.08526,
  title  = {The C$^{18}$O core mass function toward Orion A: Single-dish observations},
  author = {Hideaki Takemura and Fumitaka Nakamura and Shun Ishii and Yoshito Shimajiri and Patricio Sanhueza and Takashi Tsukagoshi and Ryohei Kawabe and Tomoya Hirota and Akimasa Kataoka},
  journal= {arXiv preprint arXiv:2103.08526},
  year   = {2021}
}

Comments

66 pages, 15 figures, accepted by PASJ

R2 v1 2026-06-24T00:11:16.210Z