Interstellar detection of O-protonated carbonyl sulfide, HOCS+
arXiv:2402.15405
Abstract
We present the first detection in space of O-protonated carbonyl sulfide (\ch{HOCS+}), in the midst of an ultradeep molecular line survey toward the G+0.693-0.027 molecular cloud. From the observation of all = 0 transitions ranging from = 2 to = 13 of \ch{HOCS+} covered by our survey, we derive a column density of = (9 2)10 cm, translating into a fractional abundance relative to H of 710. Conversely, the S-protonated \ch{HSCO+} isomer remains undetected, and we derive an upper limit to its abundance with respect to H of 310, a factor of 2.3 less abundant than \ch{HOCS+}. We obtain a \ch{HOCS+}/OCS ratio of 2.510, in good agreement with the prediction of astrochemical models. These models show that one of the main chemical routes to the interstellar formation of \ch{HOCS+} is likely the protonation of OCS, which appears to be more efficient at the oxygen end. Also, we find that high values of cosmic-ray ionisation rates (10-10 s) are needed to reproduce the observed abundance of \ch{HOCS+}. In addition, we compare the O/S ratio across different interstellar environments. G+0.693-0.027 appears as the source with the lowest O/S ratio. We find a \ch{HOCO+}/\ch{HOCS+} ratio of 31, in accordance with other O/S molecular pairs detected toward this region and also close to the O/S solar value (37). This fact indicates that S is not significantly depleted within this cloud due to the action of large-scale shocks, unlike in other sources where S-bearing species remain trapped on icy dust grains.
Forthcoming paper in The Astrophysical Journal (in press)