A low-mass line-rich core found in Massive Star-forming Region IRAS 16351-4722
Meizhu Liu, Sheng-Li Qin, Tie Liu, Mengyao Tang, Sheng-Yuan Liu, Li, Chen, ChuanShou Li, HongQiong Shi, Xiaohu Li, Tianwei Zhang, Ken'ichi, Tatematsu, Fengwei Xu, Yuefang Wu

TL;DR
This study uses ALMA observations to identify and analyze a low-mass line-rich core within a massive star-forming region, revealing complex organic molecules and hot core properties in both low- and high-mass cores.
Contribution
First detection of a low-mass line-rich core in a massive star-forming region, expanding understanding of chemical complexity in such environments.
Findings
Detection of 12 dust cores with molecular line emissions
Identification of complex organic molecules in both cores
High temperatures and line widths indicating hot core properties
Abstract
We present ALMA sub-arcsecond-resolution observations of both continuum and molecular lines at 345 GHz towards the massive star-forming region IRAS 16351-4722 (hereafter I16351). A total of 12 dust cores were detected based on high spatial resolution observations of the continuum. Among them, a high-mass core (11.6 Msun) and a low-mass core (1.7 Msun) show abundant molecular line emissions. 164 molecular transitions from 29 species and 104 molecular transitions from 25 species are identified in the high-mass and low-mass cores, respectively. Complex organic molecules (COMs) such as CH3OH, CH3OCHO, CH3OCH3, C2H5OH, and C2H5CN are detected in the two cores. Under the assumption of local thermodynamic equilibrium (LTE), rotational temperatures and column densities of the COMs are derived with the XCLASS software. The maximum rotation temperature values in the low-mass core and the…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astronomy and Astrophysical Research
