English

Multi-frequency Studies of Massive Cores with Complex Spatial and Kinematic Structures

Astrophysics of Galaxies 2016-10-19 v1

Abstract

Five regions of massive star formation have been observed in various molecular lines in the frequency range 8589\sim 85-89 GHz. The studied regions possess dense cores, which host young stellar objects. The physical parameters of the cores are estimated, including kinetic temperatures (2040\sim 20-40 K), sizes of the emitting regions (0.10.6\sim 0.1-0.6 pc), and virial masses (40500M\sim 40-500 M_{\odot}). Column densities and abundances of various molecules are calculated in the local thermodynamical equilibrium approximation. The core in 99.982+4.17, associated with the weakest IRAS source, is characterized by reduced molecular abundances. Molecular line widths decrease with increasing distance from the core centers (bb). For b\ga0.1b\ga 0.1~pc, the dependences ΔV(b)\Delta V(b) are close to power laws (bp\propto b^{-p}), where pp varies from 0.2\sim 0.2 to 0.5\sim 0.5, depending on the object. In four cores, the asymmetries of the optically thick HCN(1--0) and HCO+^+(1--0) lines indicate systematic motions along the line of sight: collapse in two cores and expansion in two others. Approximate estimates of the accretion rates in the collapsing cores indicate that the forming stars have masses exceeding the solar mass.

Keywords

Cite

@article{arxiv.1608.08446,
  title  = {Multi-frequency Studies of Massive Cores with Complex Spatial and Kinematic Structures},
  author = {L. E. Pirogov and V. M. Shul'ga and I. I. Zinchenko and P. M. Zemlyanukha and O. N. Patoka and M. Thomasson},
  journal= {arXiv preprint arXiv:1608.08446},
  year   = {2016}
}

Comments

18 pages, 7 figures, 6 tables

R2 v1 2026-06-22T15:35:04.471Z