JCMT 850 $\micron$ continuum observations of density structures in the G35 molecular complex
Abstract
Filaments are believed to play a key role in high-mass star formation. We present a systematic study of the filaments and their hosting clumps in the G35 molecular complex using JCMT SCUBA-2 850 continuum data. We identified five clouds in the complex and 91 filaments within them, some of which form 10 hub-filament systems (HFSs), each with at least 3 hub-composing filaments. We also compiled a catalogue of 350 dense clumps, 183 of which are associated with the filaments. We investigated the physical properties of the filaments and clumps, such as mass, density, and size, and their relation to star formation. We find that the global mass-length trend of the filaments is consistent with a turbulent origin, while the hub-composing filaments of high line masses (\,230\,) in HFSs deviate from this relation, possibly due to feedback from massive star formation. We also find that the most massive and densest clumps (R\,\,0.2\,pc, M\,, ) are located in the filaments and in the hubs of HFS with the latter bearing a higher probability of occurrence of high-mass star-forming signatures, highlighting the preferential sites of HFSs for high-mass star formation. We do not find significant variation in the clump mass surface density across different evolutionary environments of the clouds, which may reflect the balance between mass accretion and stellar feedback.
Cite
@article{arxiv.2409.05492,
title = {JCMT 850 $\micron$ continuum observations of density structures in the G35 molecular complex},
author = {Xianjin Shen and Hong-Li Liu and Zhiyuan Ren and Anandmayee Tej and Di Li and Hauyu Baobab Liu and Gary A. Fuller and Jinjin Xie and Sihan Jiao and Aiyuan Yang and Patrick M. Koch and Fengwei Xu and Patricio Sanhueza and Pham N. Diep and Nicolas Peretto and Ram K. Yadav and Busaba H. Kramer and Koichiro Sugiyama and Mark Rawlings and Chang Won Lee and Ken'ichi Tatematsu and Daniel Harsono and David Eden and Woojin Kwon and Chao-Wei Tsai and Glenn White and Kee-Tae Kim and Tie Liu and Ke Wang and Siju Zhang and Wenyu Jiao and Dongting Yang and Das R. Swagat and Jingwen Wu and Chen Wang},
journal= {arXiv preprint arXiv:2409.05492},
year = {2024}
}
Comments
34 pages, 17 figures. Accepted for publication in ApJ