Sulfur monoxide as a tracer of the Galactic $^{32}$S/$^{34}$S gradient
Yipeng Zou, Jiangshui Zhang, Dingyuan Wei, Yaoting Yan, Donatella Romano, Youxin Wang, Jialiang Chen, Hongzhi Yu, Jieyu Zhao

TL;DR
This study investigates sulfur monoxide (SO) and its isotopologue as tracers for the Galactic sulfur isotope ratio gradient, providing new observational data and analysis that support the use of SO in galactic chemical evolution studies.
Contribution
First systematic observational analysis of SO and $^{34}$SO as tracers of the $^{32}$S/$^{34}$S ratio across many molecular clouds, expanding beyond previous CS-based studies.
Findings
SO/$^{34}$SO ratios show no correlation with distance or temperature.
Lower transition lines of SO and $^{34}$SO may better trace the isotope ratio.
Galactic chemical evolution models need revision in low-metallicity regimes.
Abstract
To date, the Galactic interstellar radial S/S gradient has only been studied with the CS isotopologs, which may be affected by uncertainties due to the use of a single tracer. As another abundant S-bearing molecules, SO and its isotopomer SO could be considered as tracers of the S/S ratio. We present the first systematic observations of SO and SO toward a large sample of molecular clouds with accurate distances, performed with the IRAM 30 m and the 10 m Submillimeter Telescope (SMT). With the IRAM 30 m, SO was detected in 59 of 82 sources (82%), and SO in 8 sources (10%). With the SMT 10 m, SO was detected in 136 of 184 sources (74%), and SO in 55 of 77 strong SO sources (72%). SO/SO ratios were derived for 8 () and 55 () sources. No…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astronomy and Astrophysical Research
