paper

What role of gravity, turbulence and magnetic fields in high-mass star formation clouds?

arXiv:2405.05063

Abstract

To explore the potential role of gravity, turbulence and magnetic fields in high-mass star formation in molecular clouds, this study revisits the velocity dispersion--size (--) and density--size (--) scalings and the associated turbulent energy spectrum using an extensive data sample. The sample includes various hierarchical density structures in high-mass star formation clouds, across scales of 0.01 to 100 pc. We observe and scalings, converging toward a virial equilibrium state. A nearly flat virial parameter--mass () distribution is seen across all density scales, with values centered around unity, suggesting a global equilibrium maintained by the interplay between gravity and turbulence across multiple scales. Our turbulent energy spectrum () analysis, based on the -- and -- scalings, yields a characteristic . These findings indicate the potential significance of gravity, turbulence, and possibly magnetic fields all in regulating dynamics of molecular clouds and high-mass star formation therein.

15 pages,5 figures, Accepted by RAA