English

Evidence of high-mass star formation through multi-scale mass accretion in hub-filament-system clouds

Astrophysics of Galaxies 2023-01-25 v1 Solar and Stellar Astrophysics

Abstract

We present a statistical study of a sample of 17 hub-filament-system (HFS) clouds of high-mass star formation using high-angular resolution (\sim1-2 arcsecond) ALMA 1.3mm and 3mm continuum data. The sample includes 8 infrared (IR)-dark and 9 IR-bright types, which correspond to an evolutionary sequence from the IR-dark to IR-bright stage. The central massive clumps and their associated most massive cores are observed to follow a trend of increasing mass (MM) and mass surface density (Σ\Sigma) with evolution from IR-dark to IR-bright stage. In addition, a mass-segregated cluster of young stellar objects (YSOs) are revealed in both IR-dark and IR-bright HFSs with massive YSOs located in the hub and the population of low-mass YSOs distributed over larger areas. Moreover, outflow feedback in all HFSs are found to escape preferentially through the inter-filamentary diffuse cavities, suggesting that outflows would render a limited effect on the disruption of the HFSs and ongoing high-mass star formation therein. From the above observations, we suggest that high-mass star formation in the HFSs can be described by a multi-scale mass accretion/transfer scenario, from hub-composing filaments through clumps down to cores, that can naturally lead to a mass-segregated cluster of stars.

Keywords

Cite

@article{arxiv.2301.03144,
  title  = {Evidence of high-mass star formation through multi-scale mass accretion in hub-filament-system clouds},
  author = {Hong-Li Liu and Anandmayee Tej and Tie Liu and Patricio Sanhueza and Shengli Qin and Jinhua He and Paul F. Goldsmith and Guido Garay and Sirong Pan and Kaho Morii and Shanghuo Li and Amelia Stutz and Keníchi Tatematsu and Feng-Wei Xu and Leonardo Bronfman and Anindya Saha and Namitha Issac and Tapas Baug and L. Viktor Toth and Lokesh Dewangan and Ke Wang and Jianwen Zhou and Chang Won Lee and Dongting Yang and Anxu Luo and Xianjin Shen and Yong Zhang and Yue-Fang Wu and Zhiyuan Ren and Xun-Chuan Liu and Archana Soam and Siju Zhang and Qiu-Yi Luo},
  journal= {arXiv preprint arXiv:2301.03144},
  year   = {2023}
}

Comments

Accepted for publication in MNRAS; 16 pages, 8 figures, and 3 tables