CH3CCH as a thermometer in warm molecular gas
Abstract
Kinetic temperature is a fundamental parameter in molecular clouds. Symmetric top molecules, such as NH and CHCCH, are often used as thermometers. However, at high temperatures, NH(2,2) can be collisionally excited to NH(2,1) and rapidly decay to NH(1,1), which can lead to an underestimation of the kinetic temperature when using rotation temperatures derived from NH(1,1) and NH(2,2). In contrast, CHCCH is a symmetric top molecule with lower critical densities of its rotational levels than those of NH, which can be thermalized close to the kinetic temperature at relatively low densities of about 10 cm. To compare the rotation temperatures derived from NH(1,1)(2,2) and CHCCH 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 NH(1,1)(2,2) are systematically lower than those from CHCCH 5-4. This suggests that CHCCH rotational lines with the same +1 quantum number may be a more reliable thermometer than NH(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.
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