English

Cloud-to-cloud velocity dispersions across a Local arm segment

Astrophysics of Galaxies 2025-06-17 v1

Abstract

Using a large sample of 9617 molecular clouds (MCs) from the Milky Way Imaging Scroll Painting survey, we mainly measure one-dimensional cloud-to-cloud velocity dispersions across a 450 deg2^{2} segment of the Local arm in the Galactic second quadrant. We define the cloud-to-cloud velocity dispersion using two metrics: the standard deviation (σbin\sigma_{\rm bin}) and flux-weighted root-mean-squared value (σbin,w\sigma_{\rm bin, w}) of the centroid velocities of 12^{12}CO-detected MCs within spatial bins. The typical values of σbin\sigma_{\rm bin} and σbin,w\sigma_{\rm bin, w} are 7.5±\pm0.5 km s1^{-1} and 6.2±\pm0.5 km s1^{-1}, respectively. After categorizing clouds by sizes into three types: Type SS (0.15 - 1.2 pc), Type MM (1.2 - 4.8 pc), and Type L (\gtrsim 4.8 pc), we find that the spatial distribution of Type SS and MM MCs projected onto the Galactic longitude-latitude (l-b) plane is generally uniform. Additionally, the cloud-to-cloud velocity dispersion among Type SS clouds (\sim 7.6 and 7.4 km s1^{-1} for σbin\sigma_{\rm bin} and σbin,w\sigma_{\rm bin, w}, respectively) is systematically greater than that among Type MM clouds (\sim 6.7 and 6.0 km s1^{-1} for σbin\sigma_{\rm bin} and σbin,w\sigma_{\rm bin, w}, respectively), with differences of 0.9 - 1.4 km s1^{-1}. From these measurements, we estimate merger timescales between MCs to be approximately 0.3 to 0.9 Myr, which is shorter than their internal crossing timescales (\sim 1 Myr for Type SS, \sim 2 Myr for Type MM, and \gtrsim 5 Myr for Type LL). This disparity, particularly pronounced for larger Type LL clouds, suggests that MCs are dynamically transient structures, with their gas content changing due to frequent interactions with neighboring clouds.

Keywords

Cite

@article{arxiv.2506.13424,
  title  = {Cloud-to-cloud velocity dispersions across a Local arm segment},
  author = {Lixia Yuan and Ji Yang},
  journal= {arXiv preprint arXiv:2506.13424},
  year   = {2025}
}

Comments

Accepted to ApJ