Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/7982
Title: ATOMS: ALMA three-millimeter observations of massive star-forming regions – VII. A catalogue of SiO clumps from ACA observations
Authors: Liu, Rong
Liu, Tie
Chen, Gang
Liu, Hong-Li
Wang, Ke
Li, Jin-Zeng
Lee, Chang Won
Liu, Xunchuan
Juvela, Mika
Garay, Guido
Dewangan, Lokesh
Archana Soam
Bronfman, Leonardo
He, Jinhua
Eswaraiah, Chakali
Zhang, Si-Ju
Zhang, Yong
Xu, Feng-Wei
Tóth, L. Viktor
Shen, Zhi-Qiang
Li, Shanghuo
Wu, Yue-Fang
Qin, Sheng-Li
Ren, Zhiyuan
Zhang, Guoyin
Tej, Anandmayee
Goldsmith, Paul F
Baug, Tapas
Luo, Qiuyi
Zhou, Jianwen
Zhang, Chang
Keywords: ISM: clouds
ISM: jets and outflows
ISM: molecules
Stars: formation
Stars: massive
Radio lines: ISM
Issue Date: Apr-2022
Publisher: Oxford University Press on behalf of Royal Astronomical Society
Citation: Monthly Notices of the Royal Astronomical Society, Vol. 511, No. 3, pp. 3618–3635
Abstract: To understand the nature of SiO emission, we conducted ACA observations of the SiO (2-1) lines toward 146 massive starforming regions, as part of the ALMA Three-millimeter Observations of Massive Star-forming regions (ATOMS) survey. We detected SiO emission in 128 (87.7 per cent) sources and identified 171 SiO clumps, 105 of which are spatially separated from 3 mm continuum emission. A large amount of the SiO line profiles (60 per cent) are non-Gaussian. The velocity dispersion of the SiO lines ranges from 0.3 to 5.43 km s−1. In 63 sources the SiO clumps are associated with HII regions characterized by H40α emission. We find that 68 per cent (116) of the SiO clumps are associated with strong outflows. The median velocity dispersion of the SiO line for outflow sources and non-outflow sources is 1.91 km s−1 and 0.99 km s−1, respectively. These results indicate that outflow activities could be connected to strongly shocked gas. The velocity dispersion and [SiO]/[H13CO+] intensity ratio do not show any correlation with the dust temperature and particle number density of clumps. We find a positive correlation between the SiO line luminosity and the bolometric luminosity, implying stronger shock activities are associated with more luminous protoclusters. The SiO clumps in associations with HII regions were found to show a steeper feature in Lsio/Lbol. The SiO line luminosity and the fraction of shocked gas have no apparent evidence of correlation with the evolutionary stages traced by luminosity to mass ratio (Lbol/M).
Description: Restricted Access
URI: http://hdl.handle.net/2248/7982
ISSN: 1365-2966
Appears in Collections:IIAP Publications



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