Head-tail molecular clouds falling onto the Milky Way disk
Abstract
We report discovery of two CO clouds which are likely falling down to the Galactic plane at more than km s. The clouds show head-tail distributions elongated perpendicular to the Galactic plane at and as revealed by an analysis of the Mopra CO 1-0 survey data. We derived the distance of the clouds to be kpc based on the Gaia Data Release 3. The CO clouds have molecular masses of and , respectively, and show kinetic temperature of 30-50 K as derived from the line intensities of the CO =2-1, CO =1-0, and CO =1-0 emission. The temperature in the heads of the clouds is significantly higher than 10 K of the typical molecular clouds, although no radiative heat source is found inside or close to the clouds. Based on the results, we interpret that the present clouds are falling onto the Milky Way disk and are significantly heated up by the strong shock interaction with the disk HI gas. We suggest that the clouds represent part of the HI intermediate velocity clouds falling to the Galactic plane which were converted into molecular clouds by shock compression. This is the first case of falling CO clouds having direct observed signatures of the falling motion including clear directivity and shock heating. Possible implications of the CO clouds in the evolution of the Galactic interstellar medium are discussed.
Cite
@article{arxiv.2510.18399,
title = {Head-tail molecular clouds falling onto the Milky Way disk},
author = {Mikito Kohno and Yasuo Fukui and Takahiro Hayakawa and Yasuo Doi and Rin I. Yamada and Fumika Demachi and Kazuki Tokuda and Hidetoshi Sano and Shinji Fujita and Rei Enokiya and Asao Habe and Kisetsu Tsuge and Atsushi Nishimura and Masato I. N. Kobayashi and Hiroaki Yamamoto and Kengo Tachihara},
journal= {arXiv preprint arXiv:2510.18399},
year = {2025}
}
Comments
13 pages, 9 figures, 2 tables, accepted for Publications of the Astronomical Society of Japan (PASJ)