Observational studies on S-bearing molecules in massive star forming regions
R. Luo, J. Z. Wang, X. Zhang, D. H. Quan, X. J. Jiang, J. Li, Q. Gou,, Y.Q. Li, Y.N. Xu, S.Q. Zheng, C. Ou, and Y.J. Liu

TL;DR
This study presents observational data on sulfur-bearing molecules in 51 massive star-forming regions, revealing strong chemical links and suggesting shock chemistry influences their abundances, with implications for understanding hot core chemistry.
Contribution
It provides the first comprehensive observational analysis of multiple S-bearing molecules in late-stage massive star-forming regions, highlighting their chemical relationships and the role of shocks.
Findings
Strong correlation between H$_{2}$CS and HCS$^+$ abundances.
Similar line widths suggest these molecules trace similar regions.
Abundances consistent with chemical models at ~2-3×10$^{5}$ years.
Abstract
Aims. We present observational results of HS 1-1, HS 1-1, HCS 5-4, HCS 4-3, SiO 4-3, HCN 19-18 and CO 1-0 toward a sample of 51 late-stage massive star-forming regions, to study relationships among HS, HCS, HCS and SiO in hot cores. Chemical connections of these S-bearing molecules are discussed based on the relations between relative abundances in sources. Results. HS 1-1, HS 1-1, HCS 5-4, HCS 4-3 and HCN 19-18 were detected in 50 of the 51 sources, while SiO 4-3 was detected in 46 sources. CO 1-0 was detected in all sources. The Pearson correlation coefficients between HCS and HCS normalized by H and HS are 0.94 and 0.87, respectively, and a tight linear relationship is found…
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