English

CH3CCH as a thermometer in warm molecular gas

Astrophysics of Galaxies 2026-01-28 v1 Solar and Stellar Astrophysics

Abstract

Kinetic temperature is a fundamental parameter in molecular clouds. Symmetric top molecules, such as NH3_3 and CH3_3CCH, are often used as thermometers. However, at high temperatures, NH3_3(2,2) can be collisionally excited to NH3_3(2,1) and rapidly decay to NH3_3(1,1), which can lead to an underestimation of the kinetic temperature when using rotation temperatures derived from NH3_3(1,1) and NH3_3(2,2). In contrast, CH3_3CCH is a symmetric top molecule with lower critical densities of its rotational levels than those of NH3_3, which can be thermalized close to the kinetic temperature at relatively low densities of about 104^{4} cm3^{-3}. To compare the rotation temperatures derived from NH3_3(1,1)&\&(2,2) and CH3_3CCH rotational levels in warm molecular gas, we used observational data toward 55 massive star-forming regions obtained with Yebes 40m and TMRT 65m. Our results show that rotation temperatures derived from NH3_3(1,1)&\&(2,2) are systematically lower than those from CH3_3CCH 5-4. This suggests that CH3_3CCH rotational lines with the same JJ+1\rightarrowJJ quantum number may be a more reliable thermometer than NH3_3(1,1)&\&(2,2) in warm molecular gas located in the surroundings of massive young stellar objects or, more generally, in massive star-forming regions.

Keywords

Cite

@article{arxiv.2601.19344,
  title  = {CH3CCH as a thermometer in warm molecular gas},
  author = {Yuqiang Li and Junzhi Wang and Juan Li and Xing Lu and Siqi Zheng and Chao Ou and Qian Huang and Miguel Santander-García and José Jairo Díaz Luis and Seokho Lee and Tie Liu and Zhiqiang Shen},
  journal= {arXiv preprint arXiv:2601.19344},
  year   = {2026}
}

Comments

Accepted for publication in ApJ, 27 pages, 15 figures

R2 v1 2026-07-01T09:21:52.578Z