Distribution and Properties of Molecular Gas Toward the Monoceros OB1 Region
Abstract
We perform a comprehensive CO study toward the Monoceros OB1 (Mon OB1) region based on the MWISP survey at an angular resolution of about . The high-sensitivity data, together with the high dynamic range, shows that molecular gas in the region displays complicated hierarchical structures and various morphology (e.g., filamentary, cavity-like, shell-like, and other irregular structures). Based on Gaussian decomposition and clustering for data, a total of 263 structures are identified in the whole region, and 88% of raw data flux is recovered. The dense gas with relatively high column density from the integrated CO emission is mainly concentrated in the region where multiple structures are overlapped. Combining the results of 32 large structures with distances from Gaia DR3, we estimate an average distance of for the GMC complex. The total mass of the GMC Complex traced by , , and are , , and , respectively. The dense gas fraction shows a clear difference between Mon OB1 GMC East (12.4%) and Mon OB1 GMC West (3.3%). Our results show that the dense gas environment is closely linked to the nearby star-forming regions. On the other hand, star-forming activities have a great influence on the physical properties of the surrounding molecular gas (e.g., greater velocity dispersion, higher temperatures, and more complex velocity structures, etc.). We also discuss the distribution/kinematics of molecular gas associated with nearby star-forming activities.
Keywords
Cite
@article{arxiv.2403.08008,
title = {Distribution and Properties of Molecular Gas Toward the Monoceros OB1 Region},
author = {Zi Zhuang and Yang Su and Shiyu Zhang and Xuepeng Chen and Qing-Zeng Yan and Haoran Feng and Li Sun and Xiaoyun Xu and Yan Sun and Xin Zhou and Hongchi Wang and Ji Yang},
journal= {arXiv preprint arXiv:2403.08008},
year = {2024}
}
Comments
28 pages, 17 figures, match to the version of APJ, 966, 202. The dataset has been released on https://doi.org/10.57760/sciencedb.17451