Revisiting The Mass-Size Relation Of Structures In Molecular Clouds
Abstract
We revisit the mass-size relation of molecular cloud structures based on the column density map of the Cygnus-X molecular cloud complex. We extract 135 column density peaks in Cygnus-X and analyze the column density distributions around these peaks. The averaged column density profiles, , around all the peaks can be well fitted with broken power-laws, which are described by an inner power-law index , outer power-law index , and the radius and column density at the transition point. We then explore the relation with different samples of cloud structures by varying the parameters and the column density threshold, , which determines the boundary of a cloud structure. We find that only when has a wide range of values, the relation may largely probe the density distribution, and the fitted power-law index of the relation is related to the power-law index of . On the contrary, with a constant , the relation has no direct connection with the density distribution; in this case, the fitted power-law index of the relation is equal to 2 (when and has a narrow range of values), larger than 2 (when and has a wide range of values), or slightly less than 2 (when ).
Keywords
Cite
@article{arxiv.2205.08279,
title = {Revisiting The Mass-Size Relation Of Structures In Molecular Clouds},
author = {Yuchen Xing and Keping Qiu},
journal= {arXiv preprint arXiv:2205.08279},
year = {2022}
}
Comments
14 pages, 9 figures. Accepted by Research in Astron. Astrophys