English

Three dimensional projection effects on chemistry in a Planck galactic cold clump

Astrophysics of Galaxies 2020-03-11 v2

Abstract

Offsets of molecular line emission peaks from continuum peaks are very common but frequently difficult to explain with a single spherical cloud chemical model. We propose that the spatial projection effects of an irregular three dimensional (3D) cloud structure can be a solution. This work shows that the idea can be successfully applied to the Planck cold clump G224.4-0.6 by approximating it with four individual spherically symmetric cloud cores whose chemical patterns overlap with each other to produce observable line maps. With the empirical physical structures inferred from the observation data of this clump and a gas-grain chemical model, the four cores can satisfactorily reproduce its 850 μ\mum continuum map and the diverse peak offsets of CCS, HC3_3N and N2_2H+^+ simultaneously at chemical ages of about 8×1053×1068\times 10^5\sim 3\times 10^6 yrs. The 3D projection effects on chemistry has the potential to explain such asymmetrical distributions of chemicals in many other molecular clouds.

Keywords

Cite

@article{arxiv.1909.06004,
  title  = {Three dimensional projection effects on chemistry in a Planck galactic cold clump},
  author = {J. X. Ge and Diego Mardones and J. H. He and Jonathan M C Rawlings and Sheng-Yuan Liu and Jeong-Eun Lee and Ken'ichi Tatematsu and Tie Liu and Lei Zhu and Qiang Chang and Natalia Inostroza and S. Feng},
  journal= {arXiv preprint arXiv:1909.06004},
  year   = {2020}
}

Comments

Accepted for publication in ApJ. 17 pages, 11 figures, 3 tables